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Bibliography on: Amyotrophic Lateral Sclerosis

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Robert J. Robbins is a biologist, an educator, a science administrator, a publisher, an information technologist, and an IT leader and manager who specializes in advancing biomedical knowledge and supporting education through the application of information technology. More About:  RJR | OUR TEAM | OUR SERVICES | THIS WEBSITE

RJR: Recommended Bibliography 13 Dec 2025 at 01:34 Created: 

Amyotrophic Lateral Sclerosis

Amyotrophic lateral sclerosis (ALS), also known as motor neurone disease (MND) or Lou Gehrig's disease, is a neurodegenerative disease that results in the progressive loss of motor neurons that control voluntary muscles. ALS is the most common form of the motor neuron diseases. Early symptoms of ALS include stiff muscles, muscle twitches, and gradual increasing weakness and muscle wasting. Limb-onset ALS begins with weakness in the arms or legs, while bulbar-onset ALS begins with difficulty speaking or swallowing. Around half of people with ALS develop at least mild difficulties with thinking and behavior, and about 15% develop frontotemporal dementia. Motor neuron loss continues until the ability to eat, speak, move, and finally the ability to breathe is lost. Most cases of ALS (about 90% to 95%) have no known cause, and are known as sporadic ALS. However, both genetic and environmental factors are believed to be involved. The remaining 5% to 10% of cases have a genetic cause, often linked to a history of the disease in the family, and these are known as genetic ALS. About half of these genetic cases are due to disease-causing variants in one of two specific genes. The diagnosis is based on a person's signs and symptoms, with testing conducted to rule out other potential causes.

Created with PubMed® Query: ( ALS*[TIAB] OR "amyotrophic lateral sclerosis"[TIAB] ) NOT pmcbook NOT ispreviousversion

Citations The Papers (from PubMed®)

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RevDate: 2025-12-12
CmpDate: 2025-12-12

Eshak D, M Arumugam (2025)

Integrative analysis of transcriptomics and drug-target networks identifies SMN1 as a novel biomarker and therapeutic target for amyotrophic lateral sclerosis.

Journal, genetic engineering & biotechnology, 23(4):100615.

Amyotrophic lateral sclerosis (ALS) is a prevalent and debilitating neurodegenerative disorder characterized by the selective degeneration of motor neurons. This study aims to unravel the molecular mechanisms underlying ALS through an integrated analysis of drug-target networks and gene expression data. Gene expression datasets related to ALS, including GSE115130 and GSE76220, were retrieved from the GEO database and systematically analyzed. Differential gene expression (DEG) analysis identified key upregulated and downregulated genes, while weighted gene co-expression network analysis (WGCNA) uncovered gene modules associated with ALS pathology. DEG analysis revealed genetic insights into ALS by pinpointing genes potentially involved in disease development and progression. WGCNA provided a systems-level understanding of ALS mechanisms, identifying highly correlated gene clusters and their relationship with clinical ALS characteristics. In the GSE115130 dataset, 6,105 genes were upregulated and 6,069 were downregulated. Conversely, the GSE76220 dataset showed 4,850 upregulated genes and 7,691 downregulated genes. Using the STRING database, a protein-protein interaction (PPI) network was constructed to investigate the functional relationships among ALS-associated genes. The findings highlighted the significant role of the survival motor neuron 1 (SMN1) gene in ALS, particularly in sporadic cases. Additionally, drug-target network mapping identified potential therapeutic targets and candidate drugs, offering valuable insights into the molecular mechanisms of ALS and possible interventions. This integrative approach underscored SMN1 as a novel diagnostic biomarker and potential therapeutic target for ALS, emphasizing its critical role in disease pathogenesis. These findings pave the way for further mechanistic studies and clinical validation, aiming to enhance therapeutic strategies for ALS.

RevDate: 2025-12-12

Andersen CA, Jenssen C, Poppleton A, et al (2025)

Point-of-care ultrasound in primary care - EFSUMB core curriculum and training recommendations, a position paper.

Ultraschall in der Medizin (Stuttgart, Germany : 1980) [Epub ahead of print].

English abstract: Frontline physicians working in primary care increasingly use diagnostic ultrasound examinations and simple ultrasound-guided procedures as part of their daily practice. Primary care is organized in many ways across Europe and as a result, primary care physicians have different qualifications in terms of using and integrating point-of-care ultrasound in patient care. To ensure high quality and standardized practice across Europe, this position paper of the European Federation of Societies for Ultrasound in Medicine and Biology (EFSUMB) describes training recommendations and a generic core curriculum for frontline physicians working in primary care. The core curriculum was developed through a Delphi process and includes basic ultrasound examinations corresponding to the EFSUMB competence level 1 for medical ultrasound practice. The training recommendations are intended to build a common foundation while national adjustments must be made to ensure relevance in the clinical setting and patient population. German abstract: In der Primärversorgung tätige Ärzte setzen zunehmend diagnostische Ultraschalluntersuchungen und einfache ultraschallgesteuerte Verfahren als Teil ihrer täglichen Routine ein. Die Primärversorgung ist in Europa sehr unterschiedlich organisiert, sodass die Qualifikationen der Ärzte, die Point-of-Care-Ultraschall in der primären Patientenversorgung einsetzen und integrieren, sehr unterschiedlich sind. Mit dem Ziel, eine hohe Qualität und standardisierte Ausübungspraxis in ganz Europa zu gewährleisten, stellt dieses Positionspapier der European Federation of Societies for Ultrasound in Medicine and Biology (EFSUMB) Ausbildungsempfehlungen und ein PoCUS Basis-Curriculum für in der Primärversorgung tätige Ärzte vor. Das Basis-Curriculum wurde im Rahmen eines Delphi-Verfahrens entwickelt und umfasst grundlegende Ultraschalluntersuchungen, die dem EFSUMB-Kompetenzniveau 1 für die medizinische Ultraschallpraxis entsprechen. Die Ausbildungsempfehlungen sollen eine gemeinsame Grundlage schaffen, wobei durch nationale Anpassungen die Relevanz für das konkrete klinische Umfeld und die betreuten Patientengruppen sichergestellt werden muss.

RevDate: 2025-12-12

Savasan-Sogut M, Campos-Melo D, MJ Strong (2025)

3'UTR variants of ALS-linked RNAs modify subcellular and cellular phenotypes.

The FEBS journal [Epub ahead of print].

While most human genes express mRNA 3'untranslated region (3'UTR) variants of different lengths, their impact on cell physiology and disease remains largely unknown. Here, we studied 3'UTR length heterogeneity in amyotrophic lateral sclerosis (ALS) and determined that three ALS-linked transcripts exhibit lengthening of their 3'UTRs in patient samples. We investigated phenotypical effects in a neuronal cell line expressing these 3'UTRs and observed that expression of these unique 3'UTRs induces morphological changes at different levels. Among the most expressed 3'UTR variants in ALS, NEFH 3'UTR-Long induces the formation of nuclear RNA clusters, and Superoxide Dismutase 1 3'UTR-Long diminishes filopodia in the plasma membrane. Sequestosome 1 3'UTR-Long did not show major changes in nuclear RNA clusters or filopodia. Our findings provide the first evidence that 3'UTRs can modulate cellular phenotype independent of the coding region, further expanding the impact of alterations in mRNA biogenesis in ALS.

RevDate: 2025-12-12

Myers AK, Sakheim M, Rivell C, et al (2025)

Anxiety-associated behaviors following ablation of Miro1 from cortical excitatory neurons.

eNeuro pii:ENEURO.0436-25.2025 [Epub ahead of print].

Autism spectrum disorder, schizophrenia, and bipolar disorder are neuropsychiatric conditions that manifest early in life with a wide range of phenotypes, including repetitive behavior, agitation, and anxiety (American Psychological Association, 2013). While the etiology of these disorders is incompletely understood, recent data implicate a role for mitochondrial dysfunction (Norkett et al., 2017; Khaliulin et al., 2025). Mitochondria dynamically translocate to intracellular compartments to support energetics and free-radical buffering; failure to achieve this localization results in cellular dysfunction (Picard et al., 2016). Mitochondrial Rho-GTPase 1 (Miro1) resides on the outer mitochondrial membrane and facilitates microtubule-mediated mitochondrial motility and homeostasis (Fransson et al., 2003). The loss of MIRO1 is reported to contribute to the onset/progression of neurodegenerative diseases, including amyotrophic lateral sclerosis, Alzheimer's disease, and Parkinson's disease (Kay et al., 2018). We have hypothesized that MIRO1 also has a role in nervous system development and function (Lin-Hendel et al., 2016). To test this, we ablated Miro1 from cortical excitatory progenitors by crossing floxed Miro1 mice with Emx1-Cre mice and used mice of either sex for experiments. We found that mitochondrial mis-localization in migrating excitatory neurons was associated with reduced brain weight, decreased cortical volume, and subtle cortical disorganization. Adult Miro1 conditional mutants exhibit agitative-like behaviors, including decreased nesting behavior and abnormal home cage activity. The mice exhibited anxiety-like behavior and avoided confined spaces, features that have been linked to several human behavioral disorders. Our data link MIRO1 function with mitochondrial dynamics in the pathogenesis of several neuropsychiatric disorders and implicate intracellular mitochondrial dynamics to some anxiety-like behaviors.Significance Statement Neuropsychological disorders such as autism spectrum disorder, schizophrenia, and bipolar disorder have overlapping endophenotypes. While the mechanisms underlying these disorders are poorly understood, recent evidence implicates mitochondrial dysfunction and cellular mis-localization playing a role. Mitochondria support energy requirements and other physiological functions in cells. Previous research from our lab has shown distinct dynamic localization patterns within migrating excitatory and inhibitory neurons during development. To further examine the importance of mitochondrial localization, we ablated MIRO1, a protein important for coupling mitochondria to motor proteins, in excitatory neurons. The mis-localization of mitochondria in migrating excitatory neurons is associated with diminished motor skills and anxiety-like behavior in post-natal mice.

RevDate: 2025-12-12

eBioMedicine (2025)

The accelerating pace of amyotrophic lateral sclerosis research.

EBioMedicine, 122:106079.

RevDate: 2025-12-12

Ealy A, Serapiglia AM, N Panicker (2025)

Sterile Innate Immune Mechanisms in Neurodegenerative diseases.

The Journal of biological chemistry pii:S0021-9258(25)02891-1 [Epub ahead of print].

Neurodegenerative diseases are characterized by the dysfunction and death of susceptible neuronal populations. Increasing evidence has demonstrated that sustained neuroinflammation and activation of innate immune complexes underlie neurodegeneration, worsening disease progression and outcomes. Sterile inflammation (which occurs in the absence of infection) can be triggered by neurodegenerative disease-associated misfolded proteins. These studies highlight the need to decipher the complexities of innate immune signaling mechanisms and their contribution to neuropathology. In this review, we focus on major neurodegenerative diseases that have a well-documented neuroinflammatory component: Alzheimer's Disease (AD), Parkinson's Disease (PD), Amyotrophic Lateral Sclerosis (ALS), Multiple Sclerosis (MS) and Frontotemporal Dementia (FTD). In the context of these diseases, we discuss recent advances in innate-immune mechanisms that have been demonstrated to partake in disease progression and neurodegeneration. These include evolutionarily conserved innate-immune signaling complexes whose uncontrolled activation amplifies neurodegeneration, damaging lipid droplets that accumulate within myeloid cells and prevent their ability to clear toxic protein aggregates, as well as genome-wide studies implicated genes/proteins. The individual and/or concerted actions of these pathways could be leveraged to rationally target the pathogenesis or progression of neurodegenerative diseases.

RevDate: 2025-12-12

Mitsiadou D, Xirodimas DP, J Polanowska (2025)

NEDD8, stress granules, and amyotrophic lateral sclerosis: unveiling the therapeutic potential of the NEDP1 protease.

Essays in biochemistry pii:236896 [Epub ahead of print].

Protein quality control (PQC) systems are crucial for maintaining cellular proteostasis, particularly under stress that promotes misfolded protein accumulation. A central component of this response is the assembly of stress granules (SGs), cytoplasmic condensates of RNA and proteins that temporarily stall translation. Aberrant SG dynamics, often linked to mutations in SG proteins, contribute to neurodegenerative diseases such as amyotrophic lateral sclerosis (ALS), where persistent protein aggregates are hallmarks. This review examines the emerging role of the ubiquitin-like modifier NEDD8 and its deconjugating enzyme NEDP1 in regulating SG homeostasis. Recent studies identify NEDP1 as a critical factor controlling SG clearance. Inhibition of NEDP1 enhances SG turnover, prevents pathological solidification, and promotes the disassembly of toxic aggregates through hyper-NEDDylation of PARP1, a DNA repair enzyme that also governs SG dynamics. Unlike broad-spectrum PARP1 inhibitors, which can impair DNA repair and cause cytotoxicity, NEDP1 inhibition offers a stress-specific approach that preserves normal cellular functions. Encouragingly, NEDP1 inhibition effectively causes aggregate elimination in ALS patient-derived fibroblasts and restores motility in Caenorhabditis elegans disease models. Altogether, these findings highlight NEDP1 as a key regulator of SG regulation and a promising therapeutic target for ALS and related neurodegenerative disorders.

RevDate: 2025-12-12
CmpDate: 2025-12-12

Kara NS, Ozisik O, Baudot A, et al (2025)

Investigating the Potential Roles of Environmental Exposures on the Pathology of Amyotrophic Lateral Sclerosis by Overlap Analysis.

Neurotoxicity research, 43(6):51.

Amyotrophic Lateral Sclerosis (ALS) is a progressive neurodegenerative disease causing motor neuron loss. 90-95% of ALS cases are sporadic, and the interplay of genetic predispositions and environmental exposures is essential in ALS pathology. Several neurotoxic exposures, such as smoking, pesticides, and organic solvents, have been implicated as affecting the risk of ALS. However, it is unclear how these exposures impact specific cellular mechanisms and influence ALS risk. We investigated the potential mechanisms of toxicity of diesel exhaust, toluene, pesticides, and smoking on ALS pathology through a bioinformatics approach. We retrieved the gene sets targeted by these environmental exposures, and the gene sets involved in ALS-associated biological processes. We performed overlap analysis to assess the statistical significance of the overlap between the gene sets associated with environmental exposures and those linked to ALS. Response to oxidative stress, synaptic signaling, lipid metabolic process, cellular oxidant detoxification, and regulation of gliogenesis significantly overlapped with the gene sets targeted by each of the four environmental exposures. Contrarily, chaperone-mediated autophagy, DNA repair, and regulation of action potential, significantly overlapped only with the gene sets targeted by diesel exhaust, pesticides, and toluene, respectively. Finally, transport across the blood-brain barrier, vesicle-mediated transport, actin filament-based transport, autophagy, transport to the Golgi and subsequent modification of proteins, metabolism of lipids, regulation of neurotransmitter receptor levels, and axon guidance significantly overlapped only with the gene set targeted by tobacco smoke pollution. This study aims to investigate the molecular relationships between neurotoxic exposures and ALS by overlap analysis, providing a framework that can be applied to investigate other exposure-disease interactions.

RevDate: 2025-12-12

Yu H, Zhang X, Liu Z, et al (2025)

Explaining Isoform Selectivity of c-Jun N-Terminal Kinase 3 (JNK3) Inhibitors through Its Development and Structural Insights.

Journal of medicinal chemistry [Epub ahead of print].

c-Jun N-terminal kinase 3 (JNK3), a member of the mitogen-activated protein kinase (MAPK) family, is selectively enriched in the brain. It plays a significant role in the pathogenesis of neurodegenerative disorders, glaucoma, amyotrophic lateral sclerosis, and cancer, which makes it a promising drug target. However, the advancement of JNK3 inhibitors has been challenged by limited isoform selectivity. This article explains the pathway regulated by JNK3 and the unique functions of JNK3. A detailed structural analysis of JNK3 complexes with ligands is presented to uncover the molecular basis of binding interactions. The inhibitors are systematically classified according to their chemical scaffolds, and the reason for their isoform selectivity was discussed, providing a structural rationale for the evolution of JNK3 inhibitor design. The perspective concludes with an exploration of the challenges in the discovery of selective JNK3 inhibitors and proposes innovative strategies to surmount these obstacles.

RevDate: 2025-12-12
CmpDate: 2025-12-12

Gutral J, Cypryańska M, JB Nezlek (2025)

A Polish language version of Wood et al.'s multidimensional Authenticity Scale.

Current issues in personality psychology, 13(4):254-260.

BACKGROUND: There is considerable interest among personality psychologists in authenticity. To provide researchers with a tool to study dispositional authenticity among speakers of Polish, we created a Polish language version of Wood et al.'s multidimensional measure of authenticity. Wood et al.'s measure has 12 items and measures three constructs: four items for selfalienation; authentic living; and accepting external influence.

PARTICIPANTS AND PROCEDURE: Participants were 825 Polish adults (M age = 42.7, SD = 15.4; 50% women) who were recruited by a professional survey company. Participants completed the newly developed measure of authenticity, and for validation purposes, they completed measures of Ryff's model of well-being, self-esteem, satisfaction with life, and stress, the same measures used by Wood et al.

RESULTS: A confirmatory factor analysis found that the Polish version of the scale had the same three factors as the original measure developed by Wood et al., and the loadings of the items on the factors were consistent with those presented by Wood et al. The three scales of the new measure were reliable. Moreover, relationships between the authenticity scales and the validation measures were similar to those reported by Wood et al.

CONCLUSIONS: The present results suggest that our proposed Polish language version of Wood et al.'s multidimensional authenticity scale measures a similar set of constructs to those measured by the original English language scale. Therefore, we believe our new measure should be useful for researchers interested in studying dispositional authenticity among Polish language speakers.

RevDate: 2025-12-12

Hor JH, Ow JR, Ng W, et al (2025)

Depletion of BLOC1S1 with splice-switching oligonucleotides in ALS motor neurons improves mitochondrial respiration and rescues disease phenotypes.

Molecular therapy : the journal of the American Society of Gene Therapy pii:S1525-0016(25)01049-4 [Epub ahead of print].

Amyotrophic Lateral Sclerosis (ALS) is a rapidly progressing and debilitating neurodegenerative disease, yet the mechanisms underlying disease onset and progression remain poorly understood, particularly in sporadic ALS. Emerging evidence suggests that mitochondrial dysfunction and metabolic dysregulation are central to ALS pathophysiology. A key feature of ALS motor neurons (MNs) is hyper-acetylation of mitochondrial proteins, which disrupt mitochondrial respiration and energy homeostasis. In this study, we identify BLOC1S1 (also known as GCN5L1) as a novel regulator of mitochondrial acetylation in ALS. We demonstrate that BLOC1S1 is significantly upregulated in ALS patient-derived MNs, post-mortem motor cortices, and spinal cords of ALS mouse models. Functional studies in induced pluripotent stem cell (iPSC)-derived MNs reveal that BLOC1S1 depletion rescues key disease phenotypes. Therefore, we develop an efficacious splice-switching antisense oligonucleotide (SSO) that induces nonsense-mediated decay of BLOC1S1 transcripts as a potential therapeutic candidate. Besides mitigating ALS-relevant cellular deficits in MN cultures from diverse genetic backgrounds, it was validated to extend disease-free and overall survival that is associated with improved rotarod performance in an ALS mouse model. These findings establish BLOC1S1 as a critical modifier of disease progression in ALS and highlight its potential as a novel therapeutic target.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Soares ÁM, de Paula Cruz ECO, da Silva LG, et al (2025)

Anatomical references for the transopercular approach to the insula: a 1.5 Tesla magnetic resonance study.

Neurosurgical review, 49(1):63.

OBJECTIVE: This study aimed to establish the topographic relation of the limiting sulci of the insula with structures on the brain surface, in addition to determining a new anatomical point to objectively identify the Berger-Sanai quadrants.

METHODS: 1.5 Tesla MRI was used to analyze 100 insulas and their relation to the brain surface. The projection of the anterior (ALS), superior (SLS), and inferior (ILS) limiting sulci of the insula onto the brain surface was determined, together with the relations between these sulci and the anterior Sylvian point (ASP), the inferior frontal sulcus (IFS), and the superior temporal sulcus (STS). The central point of the Berger-Sanai quadrants was identified based on the inferior Rolandic point (IRP). The projection of this central point onto the insula and the brain surface were also identified.

RESULTS: The following measurements were calculated: the mean anteroposterior distance between the ASP and ALS, 3.2 mm ± 0.7 mm; the mean craniocaudal distance from the ASP to the SLS, 10.5 mm ± 1.8 mm; the mean craniocaudal distance between the IFS and SLS, 15.5 mm ± 2.5 mm; the mean craniocaudal distance from the end of the IFS to the SLS, 13.5 mm ± 2.9 mm; the mean craniocaudal distance between the STS and ILS, 4.0 mm ± 1.9 mm; the mean craniocaudal distance from the end of the STS to the ILS, 6.1 mm ± 2.4 mm; and the mean laterolateral distance from the STS to the ILS, 22.7 mm ± 3.5 mm. The central point of the Berger Sanai quadrants was determined to be over the Sylvian fissure, at a mean distance of 7.3 mm ± 1.2 mm anterior to the IRP. This point projected over the precentral gyrus in 79% of cases and the posterior short gyrus of the insula in 68%.

CONCLUSIONS: The data obtained in this study demonstrate a close topographic relationship between easily identifiable structures on the brain surface (ASP, IFS and STS) and the limiting sulci of the insula. We propose a simple, novel way to find the central point of the Berger Sanai quadrants based on their relation with the IRP. The findings determined here can assist neurosurgeons in locating the insula, especially in transopercular approaches.

RevDate: 2025-12-11

Riley S, Nguyen V, Bhattacharjee R, et al (2025)

TMT-based quantitative proteomic assessment of Vicia sativa induced neurotoxicity by β-cyano-L-alanine and γ-glutamyl-β-cyano-L-alanine in SH-SY5Y cells.

Scientific reports pii:10.1038/s41598-025-30121-2 [Epub ahead of print].

β-cyano-L-alanine (BCA) and γ-glutamyl-β-cyano-L-alanine (GBCA) are the primary antinutritional compounds in Vicia sativa, a high-protein, drought-tolerant legume. While their neurotoxicity in monogastric animals has been reported, the molecular basis remains largely unknown. In this study, we optimised a rapid in vitro assay using retinoic acid-differentiated SH-SY5Y human neuroblastoma cells to assess BCA and GBCA toxicity, and then applied Tandem mass tags (TMT)-mass spectrometry (MS)-based quantitative proteomics to identify dysregulated proteins. BCA treatment dysregulated the proteins involved in DNA damage, translation, and oxidative stress, many of which are associated with neurodegenerative diseases such as amyotrophic lateral sclerosis and Alzheimer's disease, as well as various cancers. In contrast, GBCA impacted the proteins linked to mitosis, cell cycle regulation, and apoptosis pathways. Interestingly, the absence of overlapping dysregulated proteins between BCA- and GBCA-treated cells suggested that the two toxins likely induce neurotoxicity via distinct mechanisms. These findings offer new insights into the molecular and cellular alterations caused by V. sativa toxins and their implications for animal feed safety.

RevDate: 2025-12-11

Maas D, Spindler A, Zappi I, et al (2025)

Response to Olsen et al's ''Summation and recommendations for the safe and effective use of topical and oral minoxidil".

RevDate: 2025-12-11
CmpDate: 2025-12-11

Fujioka Y, S Ishigaki (2025)

Decoding ALS from the tail end of RNA.

Cell genomics, 5(12):101102.

In this issue of Cell Genomics, McKeever et al.[1] generate a single-nucleus transcriptomic atlas of ALS/FTLD brain and reveal widespread alternative polyadenylation changes. Their findings highlight 3' end RNA processing as a central integrator of stress responses, cell-type specificity, and disease susceptibility, offering new mechanistic insight and potential therapeutic directions.

RevDate: 2025-12-11

Gu Y, Chen Y, Tang X, et al (2025)

Multi-omics analyses identify potential epigenetic loci associated with survival in amyotrophic lateral sclerosis across diverse populations.

EBioMedicine, 123:106071 pii:S2352-3964(25)00521-3 [Epub ahead of print].

BACKGROUND: Amyotrophic lateral sclerosis (ALS) is a severe motor neuron disease, with highly diverse survival time. However, genetic and epigenetic factors influencing ALS survival across diverse populations remain unclear.

METHODS: We performed whole-genome sequencing (WGS) and DNA methylome array in blood DNA of patients with ALS. For survival analysis, we used Cox proportional hazards model for genetic variants, DNA methylation (DNAm) of CpG sites or CpG-SNPs in Chinese and Canadian cohorts, followed by meta-analysis. We performed pathway enrichment analysis for candidate genes inferred from DNAm events associated with survival. In paired genome and methylome data, we analysed the effect of the candidate CpG-SNP genotypes on DNAm status.

FINDINGS: Genome-wide cross-population meta-analysis of common variants in 511 patients with ALS showed a suggestive association of CAV1/CAV2 rs117002347 genotypes with survival. Epigenome-wide cross-population meta-analysis in 459 patients revealed that ALS survival was significantly linked to DNAm of 88 CpGs on 40 genes, and highlighted the AMPK and cytoskeleton pathways. Epigenome-wide cross-population meta-analysis of CpG-SNPs in 459 patients identified 8 loci on 4 genes, including BAG6 (cg27014438/rs28732154), which was further validated in another 204 patients with ALS. Moreover, analysis of paired genome/epigenome data (n = 454) indicated that BAG6 rs28732154 genotypes may modulate cg27014438 methylation, which is also a cis-eQTM of BAG6 expression in blood.

INTERPRETATION: Our study identified BAG6 cg27014438 methylation as a potential epigenetic modifier of ALS survival. BAG6 cg27014438 methylation is modulated by rs28732154 genotypes, and linked to BAG6 expression. Our findings extended our understanding of epigenetic modifiers in ALS survival.

FUNDING: This work was supported by the National Natural Science Foundation of China (82071430, 82371878) (MZ), Shanghai Municipal Natural Science Foundation General Program (22ZR1466400) (MZ), the Fundamental Research Funds for the Central Universities (MZ), the G. Harry Sheppard Memorial Research Fund, and Canadian Consortium on Neurodegeneration in Aging (ER).

RevDate: 2025-12-11

Dashnaw CM, Gonzalez M, Abdolvahabi A, et al (2025)

Heteroaggregation of Wild-Type and ALS Mutant SOD1.

ACS chemical neuroscience [Epub ahead of print].

The presence of wild-type (WT) Cu, Zn superoxide dismutase-1 (SOD1) can increase the toxicity of mutant SOD1 proteins linked to amyotrophic lateral sclerosis (ALS). The mechanism of synergy is unclear but might involve interactions between WT and mutant SOD1 in native or non-native states. One unanswered question is will the diverse rates of mutant SOD1 homofibrillization converge in the presence of WT SOD1? To answer this question, we assessed the coaggregation of mutant and WT SOD1 in vitro, including (i) how WT SOD1 affected the formation rate and stability of mutant fibrils and (ii) the proximity of WT and mutant SOD1 in heterofibrils. For most mutations studied, the presence of WT SOD1 slowed nucleation and propagation of mutant fibrils while increasing fibril thermostability. The D90A SOD1 protein was one exception: WT SOD1 had a nearly negligible effect on its rate of nucleation. The cross-seeding of soluble mutant SOD1 with WT fibrils (and of soluble WT SOD1 with mutant fibrils) suggests that both proteins can occupy the same fibril. Mass spectrometry of heterofibrils treated with an NHS-ester cross-linker (∼8 Å) suggested that WT and E100G mutant SOD1 are colocalized in heterofibrils, possibly stacked in an alternating configuration.

RevDate: 2025-12-11

Canosa A, Callegaro S, Manera U, et al (2025)

Brain metabolic connectivity in ALS due to C9ORF72 hexanucleotide expansion: a [[18]F]FDG-PET study.

European journal of nuclear medicine and molecular imaging [Epub ahead of print].

PURPOSE: Our aim was to investigate brain metabolic connectivity, as assessed via [[18]F]FDG-PET, in ALS patients carrying the C9ORF72 expansion (C9-ALS).

METHODS: We compared brain metabolism of C9-ALS and patients without mutations of the main ALS-related genes (ctrl-ALS) through the two-sample t-test model of SPM12. Metabolic clusters showing a significant difference between the two groups were used as seed regions for an interregional correlation analysis (IRCA) in each group to evaluate metabolic connectivity.

RESULTS: As compared to ctrl-ALS, C9-ALS showed a relative hypometabolism in bilateral thalamus and left precentral and postcentral gyri, and a relative hypermetabolism in bilateral cerebellum and brainstem. In the IRCA, a positive correlation was found between the thalamic seed region and the cingulate cortex, including its anterior part. This correlation was broader in C9-ALS than in Ctrl-ALS. A negative correlation between the thalamic seed region and the sensorimotor cortex was only found in C9-ALS. In the IRCA, based on the cerebellar/brainstem cluster, positive correlations with the seed region substantially represented autocorrelation in both groups. Negative correlation, which mainly included frontal cortices, was more extensive in C9-ALS than in Ctrl-ALS.

CONCLUSION: In the comparison with ctrl-ALS, C9-ALS showed a relatively lower metabolism in the thalami and a relatively higher metabolism in the brainstem and the cerebellum. As compared to ctrl-ALS, C9-ALS showed a predominant involvement of the salience network, which is related to cognitive and behavioural control. The cerebellum might be recruited to cope with cognitive impairment to a greater extent in C9-ALS than in ctrl-ALS.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Zhang R, Gao B, Li R, et al (2025)

Meta-analysis of the effects of dance- and movement-based kinesthetic games on cognitive function in older adults with cognitive impairment (CI) under different intervention periods.

Aging clinical and experimental research, 37(1):343.

OBJECTIVE: To evaluate the effects of different types and durations of exergame interventions on cognition in elderly individuals with cognitive impairment (CI) through a meta-analysis.

METHODS: A computerized search was conducted in databases including Cochrane Library, PubMed, Web of Science, Embase, and CNKI from database inception to September 2025. Quality assessment and data extraction were performed on the included studies. Results measures included the MoCA , MMSE, etc. The study designs were randomized controlled trials or qua-si-experimental studies. The Cochrane Handbook's risk of bias tool was used for quality assessment, and Rev Man 5.0 software was employed to conduct meta-analyses on the ef-fects of dance-based and movement-based exergames on cognitive function in elderly CI patients.

RESULTS: A total of 13 studies involving 433 CI patients were included. Analysis of the 13 studies showed that dance-based exergaming was significantly superior to exercise-based exergaming in cognitive ability (SMD = 0.73, P < 0.01); interventions lasting ≥8 weeks were more effective than those lasting <8 weeks (SMD = 1.01, P = 0.02).

CONCLUSION: Dance-based exergames significantly improve cognition in elderly individu-als with CI, with better effects observed in long-term interventions. However, more high-quality studies are needed to verify these findings and to supplement analyses on ex-ercise dose effects.

RevDate: 2025-12-11

González-Velasco Ó, Parlato R, Yilmaz R, et al (2025)

Somatic gene mutations in the motor cortex of patients with sporadic amyotrophic lateral sclerosis.

Brain : a journal of neurology pii:8377145 [Epub ahead of print].

Amyotrophic lateral sclerosis (ALS) is characterized by the progressive degeneration of cortical and spinal motor neurons. Mendelian germline mutations often cause familial ALS (fALS) but only approximately ten percent of sporadic ALS cases (sALS). We leveraged DNA and single cell RNA-sequencing data from autopsy tissue to explore the presence of somatic mosaic variants in sALS cases. Deep targeted panel sequencing of known ALS disease genes in motor cortex tissue revealed an enrichment of low allele frequency variants in sALS, but not in fALS with an identified monogenic cause. In silico analysis predicted increased pathogenicity of mosaic mutations in various known ALS mutational hot spots. In particular, we identified the somatic FUS variant p.E516X, located in an established hotspot for germline ALS mutations, which leads to nucleo-cytoplasmic mislocalization and aggregation typical for ALS FUS pathology. Additionally, we performed somatic variant calling on single cell RNA-sequencing data from sALS tissue and revealed a specific accumulation of somatic variants in excitatory neurons, reinforcing a neuron-autonomous disease initiation. Collectively, this study indicates that somatic mutations within the motor cortex, especially in excitatory neurons, may contribute to sALS development.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Khalid YA, Saad MB, ME Nasreddin (2025)

Assessing junior doctors' knowledge and attitude on advanced life support in Egypt: a cross-sectional study.

African journal of emergency medicine : Revue africaine de la medecine d'urgence, 15(4):100927.

INTRODUCTION: Cardiovascular diseases are a leading cause of mortality worldwide, with cardiac arrest survival heavily dependent on timely and effective resuscitation efforts. Junior doctors often serve as first responders in hospitals, yet their advanced life support (ALS) knowledge and training adequacy remain underinvestigated in Egypt. This study assessed the knowledge and attitudes of junior doctors in Egypt regarding basic life support (BLS) and ALS, identified knowledge gaps, and suggests improvements in resuscitation training programs.

METHODS: A cross-sectional survey was conducted among 184 junior doctors, including house officers, general practitioners, and residents, across multiple healthcare centres in Egypt. Data was collected via an online questionnaire based on European Resuscitation Council guidelines, evaluating demographic factors, BLS/ALS knowledge, and attitudes toward cardiac arrest management. Statistical analysis explored associations between knowledge scores and participant characteristics.

RESULTS: Participants demonstrated inadequate knowledge with mean BLS and ALS scores of 59 % and 61.8 %, respectively. Significant deficiencies were noted in pediatric resuscitation, cardiac arrest diagnosis, IV access, and capnography interpretation. Residents and those attending ALS workshops scored significantly higher (p < 0.05), while prior clinical exposure did not correlate with higher knowledge scores. Most participants (91.3%) expressed a need for further ALS training.

DISCUSSION: Junior doctors in Egypt show deficient ALS knowledge with critical gaps that may impact patient outcomes. Structured ALS training and curriculum reforms are urgently needed to enhance emergency preparedness and improve cardiac arrest survival.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Imtiaz E, Mahato RK, Soomro S, et al (2025)

Nanomedicine-enhanced delivery of CRISPR-Cas13 for RNA editing in C9orf72-associated ALS.

Annals of medicine and surgery (2012), 87(12):9167-9168.

RevDate: 2025-12-11

Shi Y, Zhao T, Peng L, et al (2025)

Investigating the shared genetic architecture between post-traumatic stress disorder and neurodegenerative diseases: a large-scale genomewide cross-trait analysis.

International journal of surgery (London, England) pii:01279778-990000000-04086 [Epub ahead of print].

BACKGROUND: Post-traumatic stress disorder (PTSD), the most prevalent psychopathological consequence following traumatic events, profoundly impacts human life amidst global societal pressures. Emerging twin and family studies suggest that individuals with stress-related disorders face an elevated risk of neurodegenerative diseases, yet the genetic underpinnings of this association remain poorly understood.

METHODS: Here, we present a comprehensive framework elucidating this genetic basis. Using bivariate causal mixture models (MiXeR), we quantified polygenic overlap between PTSD (N = 1,280,933) and four neurodegenerative phenotypes (N = 115,803- 487,511), leveraging summary statistics from the largest PTSD genome-wide association study to date. Conditional/conjunction false discovery rate (FDR) analysis identified shared genomic loci.

RESULTS: MiXeR revealed considerable genetic variant sharing between neurodegenerative diseases and PTSD. Subsequent conjunction FDR analysis pinpointed 15 distinct shared loci. ρ-HESS local genetic correlation analysis identified seven significant local genetic correlations, with Chr6: 61,880,512-63,552,888 emerging as the most significant shared locus between PTSD and Alzheimer's disease. Cross-trait analyses using MTAG and CPASSOC identified 174 PTSD risk loci associated with at least one psychiatric disorder. Protein-coding genes mapped to known and novel shared loci exhibited specific spatial developmental trajectories. Through a framework incorporating five fundamental TWAS algorithm models, we identified 27 novel susceptibility genes that passed rigorous screening. Polygenic risk score (PRS) stratification in the UK Biobank cohort revealed dose-dependent relationships between PRS and risks of Alzheimer's disease, multiple sclerosis, and Parkinson's disease, with limited support for ALS and PTSD.

CONCLUSIONS: These findings illuminate the shared genetic architecture between PTSD and neurodegenerative phenotypes, advancing our understanding of their neurobiological interconnections. And enhance statistical power for detecting shared loci, thereby refining the characterization of common genetic mechanisms underlying PTSD and neurodegenerative pathologies.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Ali YY, Fares NV, Ayad MF, et al (2025)

Toward Practical and Sensitive Fluorescence Analysis: Factorial Design-Optimized o-Phthalaldehyde Derivatization for Synchronous Spectrofluorimetric Determination of Modafinil in Plasma and Dosage Form.

Luminescence : the journal of biological and chemical luminescence, 40(12):e70383.

The current research discusses a simple, sensitive, and practical spectrofluorimetric method for Modafinil (MDF) analysis. MDF can improve the fatigue symptoms associated with amyotrophic lateral sclerosis. MDF's aliphatic primary amide moiety can undergo base-catalyzed condensation with o-phthalaldehyde to give a highly fluorescent isoindoline derivative measured at 445 nm using synchronous spectrofluorimetry with Δλ of 110 nm. Different factors were studied using a two-level factorial design to reach the optimum conditions for the analysis. The method validation was carried out following the International Conference on Harmonization guidelines. The calibration curve was established to illustrate how relative fluorescence intensity varies with MDF concentration, and linearity was attained over the range of 10-7000 ng mL[-1], with an average recovery of 100.51% ± 0.91%. The limit of detection (LOD) was determined to be 3.21 ng mL[-1] while the quantitation limit (LOQ) was found to be 9.74 ng mL[-1]. The developed method demonstrated its effectiveness in determining MDF in tablets and spiked human plasma with recoveries of 100.43% ± 0.16 and 96.07% ± 1.55, respectively. MoGAPI, AGREE, and BAGI assessments yielded scores of 72, 0.62, and 70, respectively. The results show that the method is user-friendly and can be used in routine applications.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Sancho J, Ferrer S, J Signes-Costa (2025)

Noninvasive Ventilation Effectiveness in Amyotrophic Lateral Sclerosis.

Journal of clinical medicine, 14(23): pii:jcm14238609.

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disease that affects motor neurons; respiratory problems are the leading cause of death and hospital admissions and are secondary to progressive weakness of the respiratory muscles and upper airway. Noninvasive ventilation (NIV) can increase survival, alleviate symptoms, reduce hospital admissions, and improve the quality of life of these patients. The key factor in respiratory management of patients with ALS is achieving effective NIV; ineffective NIV has a negative impact on survival, with a reduction of up to 50% compared to patients with an effective technique. The most common cause of ineffective NIV is air leaks; other causes include upper airway obstruction events, residual hypoventilation, hyperventilation, and upper airway obstruction secondary to an oronasal mask. Regular monitoring of the effectiveness of NIV is essential given its impact on survival; the key tools that detect the main problems are the presence of hypoventilation symptoms, arterial blood gases, nocturnal oximetry and capnography, and built-in ventilator software. Different measures have been proposed to address the ineffectiveness of NIV, such as fitting the mask to reduce air leaks, increasing ventilatory support for residual hypoventilation, decreasing ventilatory support for hyperventilation, or a trial with a nasal mask to address oronasal interface effects. In the case of obstruction, the most common measure is to increase positive expiratory pressure during NIV. These measures enable NIV to be effective in 58% of cases, achieving a survival rate similar to that of patients who have effective NIV from the outset.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Gratzer A, Gdynia N, Sasse N, et al (2025)

Rehabilitation in Amyotrophic Lateral Sclerosis: Recommendations for Clinical Practice and Further Research.

Journal of clinical medicine, 14(23): pii:jcm14238590.

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative condition characterized by the degeneration of upper and lower motor neurons. This degeneration leads to a gradual muscle weakness, dysarthria, dysphagia, respiratory insufficiency, and, in some patients, alterations in cognitive and behavioral performance. Regardless of advancements made in pharmacological and gene-targeted interventions, a definitive curative treatment remains elusive. Consequently, rehabilitation plays a pivotal role in preserving autonomy, participation, and overall quality of life. This review outlines the current evidence and clinical approaches related to multidisciplinary rehabilitation in ALS. It covers physical and occupational therapy, respiratory, speech and language, psychological, and palliative care domains. Evidence supports moderate tailored exercise programs, early respiratory therapy, and structured management of mobility deficits, spasticity, pain, dysphagia, and communication impairments as key elements of symptomatic treatment. Psychological and social support, which includes the involvement of caregivers and relatives, enhances emotional well-being and coping resilience. Even with progressive development of gene-targeted and disease-modifying therapies, rehabilitation will stay relevant for maintaining long-term motor function. This review highlights the need for standardized, evidence-based rehabilitation protocols and intensified neurorehabilitation research to strengthen clinical outcomes and quality of life as key therapeutic goals in ALS management.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Krysiak D, Ćwiertnia M, Wójcik M, et al (2025)

Analysis of Medical Response Team Interventions and the Impact of Certified Training on the Treatment of Patients with Hypoglycaemia-A Simulation Study.

Journal of clinical medicine, 14(23): pii:jcm14238318.

Background/objectives: The effectiveness of emergency medical procedures administered to a patient in a life-threatening condition depends, to a large degree, on the knowledge and skills of medical response team personnel. Their competencies can be developed through participation in training and then verified during emergency medicine championships. Methods: The research was conducted on the basis of one of the tasks carried out during the '16th International Winter Championships in Emergency Medicine'. The task was completed by 28 Polish emergency response teams from ambulance stations across the country. The teams carried out a simulated scenario related to procedures with a patient with hypoglycaemia. The teams' interventions were assessed in accordance with European Resuscitation Council (ERC) guidelines by judges selected from among academic lecturers and ERC instructors. Results: The research showed that 86% of the teams obtained the maximum number of points for adhering to safety procedures. Further, 61% of the teams obtained the maximum of 6 points for the initial assessment, with the average number of points obtained by the teams being 5.54. The average number of points for the physical examination was 21.04, with only one team obtaining the maximum result of 26 points. Additionally, 57% of the teams obtained the maximum number of 6 points for the medical consultation, with the average obtained by the teams being 5.43. The teams obtained, on average, 8.18 points for the correct treatment of hypoglycaemia, with 68% of the teams obtaining the maximum of 9 points. The research demonstrated a positive correlation between the quality of patient examination and the collection of medical data, and the effectiveness of hypoglycaemia treatment. It was also shown that if the team leader had completed an ALS course, they obtained higher scores for the treatment of hypoglycaemia, although this finding is specific to this scenario. Conclusions: The teams demonstrated generally high performance in a simulated hypoglycaemia scenario. More complete assessment and history-taking were associated with higher treatment scores. Correct treatment was achieved in 79% of ALS-led teams versus 44% of non-ALS teams, although this observation is specific to this simulation and should not be generalised.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Basavarajappa BS, S Subbanna (2025)

From Synaptic Plasticity to Neurotoxicity: Endocannabinoid Influence on Addiction and Neurodegeneration.

International journal of molecular sciences, 26(23): pii:ijms262311632.

The endocannabinoid system (eCBS) is a versatile neuromodulatory network that orchestrates synaptic plasticity, reward processing, and neuronal homeostasis. Increasing evidence implicates eCBS dysregulation in both addiction and neurodegenerative (ND) disorders, suggesting overlapping molecular and cellular mechanisms underlying these conditions. This review synthesizes recent advances in understanding how eCBS components-cannabinoid receptors (CB1 and CB2), endogenous ligands (anandamide and 2-arachidonoylglycerol), and their metabolic enzymes-modulate dopaminergic and glutamatergic signaling within reward and reinforcement circuits. Chronic exposure to drugs of abuse, including alcohol, opioids, cocaine, and methamphetamine, perturbs eCBS homeostasis, promoting oxidative stress, neuroinflammation, excitotoxicity, mitochondrial dysfunction, and protein aggregation-pathological features common to Alzheimer's, Parkinson's, Huntington's, and amyotrophic lateral sclerosis. These overlapping mechanisms disrupt neuronal integrity and contribute to progressive neurotoxicity, highlighting shared pathogenic pathways between addiction and neurodegeneration. Despite these advances, critical gaps remain in delineating how substance-induced eCBS alterations precipitate neurodegenerative cascades. Addressing these gaps will be essential for harnessing the eCBS as a therapeutic target to mitigate addiction-driven neurotoxicity and age-related cognitive decline.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Mukhija S, Hering L, Schreiner SJ, et al (2025)

Multimodal Biomarker Characterization of the ALS/FTD Spectrum: A Real-World Clinical Dataset Analysis.

International journal of molecular sciences, 26(23): pii:ijms262311496.

Diagnosis and prognosis of the amyotrophic lateral sclerosis and frontotemporal dementia (ALS/FTD) spectrum remain largely dependent on clinical assessments due to a lack of established fluid biomarkers. While neurofilaments and the cerebrospinal fluid (CSF) phosphorylated-tau/total-tau ratio (pTau:tTau) have been studied, their limitations, including their lack of clinical implementation and low specificity, necessitate multimodal approaches. This study aimed to characterize the biological features of the ALS/FTD spectrum through integration of clinically available parameters. We conducted a retrospective, single-center, cross-sectional study analyzing routinely collected clinical, neuroimaging, CSF, and serum data from 229 samples, including 45 from patients with ALS, 26 from patients with FTD, 158 from patients with other neurodegenerative diseases, and 29 from cognitively healthy controls. We implemented propensity score-weighted comparisons, an F1 score-based optimal cut-point determination for the pTau:tTau ratio, and a regularized XGBoost-based multimodal feature modeling approach. The biomarker and model performance was evaluated by the area under the precision-recall curve (AUC-PR). Feature importance analysis identified characteristic indicators of the ALS/FTD spectrum. Consistent with the prior literature, the pTau:tTau ratio was significantly reduced in ALS/FTD, but the classification performance was modest (AUC-PR 0.32). A multimodal model integrating clinical, biofluid, and neuroimaging features achieved a notably better performance (AUC-PR 0.75). Feature importance analysis revealed an ALS/FTD signature beyond the pTau:tTau ratio characterized by higher global cognition, younger age, an altered Aβ42/pTau ratio, and immunoglobulin changes (CSF IgG:IgA, serum IgG). Integration of clinical routine data centered on tau, amyloid, and immunological pathophysiology as well as temporal disease dynamics provide a contextualized biological characterization of the ALS/FTD spectrum. This approach offers a foundation for hypothesis generation regarding ALS/FTD pathophysiology and biomarker-supported diagnosis.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Salvany S, Hernández S, Casanovas A, et al (2025)

Chronic Overexpression of Neuronal NRG1-III in Mice Causes Long-Term Detrimental Changes in Lower Motor Neurons, Neuromuscular Synapses and Motor Behaviour.

International journal of molecular sciences, 26(23): pii:ijms262311421.

Neuregulins (NRGs) are ligands of tyrosine kinase receptors from the ErbB family and play multiple developmental roles. NRG1-ErbB signaling regulates myelination and has been associated with amyotrophic lateral sclerosis (ALS) pathology. Given the potential therapeutic relevance of this pathway for motor neuron (MN) diseases, we employed a transgenic (TG) mouse with persistent neuronal overexpression of neuregulin type III (NRG1-III) to investigate its impact on the neuromuscular system. We performed an analysis of phenotypic changes in this TG model, including motor behavior, neuropathological evaluation by immunocytochemistry and ultrastructural examination of the spinal cord, peripheral nerves, and neuromuscular junctions (NMJs). Calcium dynamics in cultured MNs were also examined. We found that cholinergic C-boutons on TG MNs, where NRG1-III typically accumulates, exhibited upregulation of C-bouton-associated proteins and expansion of the subsynaptic cistern (SSC)-associated endoplasmic reticulum. Calcium imaging revealed altered homeostasis in TG MNs, accompanied by the upregulation of molecules linked to axonal plasticity. At NMJs, regressive changes involving autophagic dysregulation were observed. These alterations were accompanied by increased motor activity in behavioral tests. Overall, our findings indicate that persistently elevated NRG1-III signaling compromises MN connectivity and long-term health, a factor to consider when developing therapeutic strategies for neurodegenerative diseases such as ALS.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Apolloni S, Tortoriello S, Milani M, et al (2025)

Extracellular Matrix Remodeling in Motor Neuron Diseases.

International journal of molecular sciences, 26(23): pii:ijms262311376.

The extracellular matrix (ECM) constitutes a dynamic scaffold composed of both cellular and non-cellular elements that not only ensure tissue integrity but also regulate signaling events crucial for development and homeostasis. While its dysregulation has long been investigated in cancer, fibrosis, and autoimmunity, increasing evidence implicates ECM remodeling in neurodegenerative diseases, including motor neuron diseases (MNDs). Amyotrophic lateral sclerosis and spinal muscular atrophy, the most studied MNDs, both exhibit profound ECM alterations that influence synaptic connectivity, glial reactivity, and neuroinflammation. This review outlines recent data on ECM dynamics in MNDs, highlighting shared and disease-specific mechanisms, their potential as biomarkers, and therapeutic opportunities targeting the ECM environment to preserve neuronal function and slow disease progression.

RevDate: 2025-12-11
CmpDate: 2025-12-11

Butcher EL, S Arthur (2025)

Emerging Roles of Bile Acids in Neuroinflammation.

International journal of molecular sciences, 26(23): pii:ijms262311301.

Bile acids, once considered mere digestive detergents, have emerged as multifaceted signaling molecules with systemic influence extending far beyond the gastrointestinal tract. Recent discoveries reveal their capacity to modulate immune responses, cross the blood-brain barrier, and interact with central nervous system (CNS) cells through their receptors. Neuroinflammation, a key driver of neurodegenerative and neuroimmune disorders, is increasingly linked to bile acid signaling pathways that regulate glial activation, cytokine production, and neuronal survival. This review compiles the current evidence connecting bile acids to CNS inflammation, highlighting mechanistic insights, disease-specific alterations, and the gut-microbiome-bile acid-brain axis. It also explores the therapeutic potential of bile acid derivatives and receptor modulators, as well as their emerging role as biomarkers in conditions such as Alzheimer's disease, multiple sclerosis, and hepatic encephalopathy. Despite promising advances, critical gaps remain, including the need for bile receptor mapping in human CNS cells, standardized CNS bile acid profiling, and longitudinal metabolomic studies. Bridging these gaps may unlock new strategies for targeting neuroinflammation through bile acid-immune crosstalk.

RevDate: 2025-12-10

Dalton C, Mojsilovic-Petrovic J, Safren N, et al (2025)

Ubiquitin Proteasome System Components, RAD23A and USP13, Modulate TDP-43 Solubility and Neuronal Toxicity.

The Journal of neuroscience : the official journal of the Society for Neuroscience pii:JNEUROSCI.0906-25.2025 [Epub ahead of print].

At autopsy, >95% of ALS cases display a redistribution of the essential RNA binding protein TDP-43 from the nucleus into cytoplasmic aggregates. The mislocalization and aggregation of TDP-43 is believed to be a key pathological driver in ALS. Due to its vital role in basic cellular mechanisms, direct depletion of TDP-43 is unlikely to lead to a promising therapy. Therefore, we have explored the utility of identifying genes that modify its mislocalization or aggregation. We have previously shown that loss of rad-23 improves locomotor deficits in TDP-43 C. elegans models of disease and increases the degradation rate of TDP-43 in cellular models. To understand the mechanism through which these protective effects occur, we generated an inducible mutant TDP-43 HEK293 cell line. We find that knockdown of RAD23A reduces insoluble TDP-43 levels in this model and primary rat cortical neurons expressing human TDP-43[A315T] Utilizing a discovery-based proteomics approach, we then explored how loss of RAD23A remodels the proteome. Through this proteomic screen, we identified USP13, a deubiquitinase, as a new potent modifier of TDP-43 induced aggregation and cytotoxicity. We find that knockdown of USP13 reduces the abundance of sarkosyl insoluble mTDP-43 in both our HEK293 model and primary rat neurons, reduces cell death in primary rat motor neurons, and improves locomotor deficits in C. elegans ALS models.Significance Statement Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease (NDD) with no effective therapies. The mislocalization and aggregation of TAR DNA binding protein 43 (TDP-43) is a key pathological marker of ALS and other NDDs. Due to its vital functions, targeted therapeutic reduction of TDP-43 could be problematic. Here, we have explored the utility of targeting modifier genes. We find that knockdown of two members of the ubiquitin proteasome system, RAD23A and USP13, enhance TDP-43 solubility and decrease TDP-43 induced neurotoxicity.

RevDate: 2025-12-10

Spindler A, Maas D, Zappi I, et al (2025)

Response to Huang et al's ''Real-world efficacy of ritlecitinib in treating alopecia areata across various anatomical sites: Potential rapid response predictors".

RevDate: 2025-12-10

Ding W, Guo J, Lu Y, et al (2025)

Nocturnal hypoxemia mediates age-related sleep fragmentation in amyotrophic lateral sclerosis: a polysomnographic case-control study.

Acta neurologica Belgica [Epub ahead of print].

OBJECTIVE: To evaluate sleep architecture disruptions in amyotrophic lateral sclerosis (ALS) using polysomnography (PSG) and identify clinical/demographic correlates for targeted interventions.

METHODS: Forty definite/probable ALS patients (revised El Escorial criteria) without primary sleep disorders and 40 age/sex/BMI-matched controls underwent full polysomnography (PSG). Sleep parameters (total sleep time [TST], sleep efficiency [SE], wake after sleep onset [WASO], N1-N3, rapid eye movement [REM] sleep), respiratory indices (AHI, minimum peripheral oxygen saturation (min SpO₂), SpO₂ range/coefficient of variation [CV]), and clinical metrics (Amyotrophic Lateral Sclerosis Functional Rating Scale-Revised [ALSFRS-R], Hospital Anxiety and Depression Scale [HADS]) were compared. Multivariate regression identified independent sleep predictors, and mediation analysis quantified min SpO₂'s role in age-sleep fragmentation relationships.

RESULTS: ALS patients showed significantly reduced TST (371.54 ± 67.62 vs. 495.13 ± 45.69 min, p = 0.004), SE (69.95 ± 13.79 vs. 85.10 ± 7.03%, p = 0.009), N2 sleep (127.33 ± 56.75 vs. 204.28 ± 67.16 min, p = 0.013), N3 sleep (61.70 ± 33.67 vs. 91.90 ± 44.06 min, p = 0.021), and REM sleep (66.09 ± 35.85 vs. 84.66 ± 37.65 min, p = 0.012) alongside elevated WASO (131.70 ± 78.82 vs. 64.26 ± 44.18 min, p = 0.015). Nocturnal oxygenation was impaired (min SpO₂: 89.3 ± 3.1% vs. 93.7 ± 2.4%, p < 0.001; SpO₂ CV: 3.7 ± 1.5% vs. 1.8 ± 0.9%, p < 0.001), though AHI and REM AHI were comparable (AHI: p = 0.087; REM AHI: p = 0.134). Age (β = -0.28, p = 0.02) and min SpO₂ (β = 0.31, p = 0.01) independently predicted TST. Mediation analysis confirmed min SpO₂ partially explains age-related TST reduction (indirect effect: -0.14, 95% CI: -0.28 to - 0.03; accounting for 43.8% of the total effect).

CONCLUSION: Our data confirm profound sleep architecture disruption and nocturnal hypoxemia in ALS independent of primary sleep disorders. Critically, we establish min SpO₂ as a partial mediator of age-related sleep fragmentation, suggesting that early management of hypoxemia may improve sleep quality. Larger prospective studies validating these mechanisms and their impact on disease progression are warranted.

RevDate: 2025-12-10

Correa-Arrieta C, Castellar-Leones S, Ruiz-Ospina E, et al (2025)

Amyotrophic lateral sclerosis in Colombia: a population-based study of incidence and socioeconomic determinants.

Amyotrophic lateral sclerosis & frontotemporal degeneration [Epub ahead of print].

Background and Objectives: Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disorder with variable global incidence. In Latin America, limited population-level data hinder accurate burden estimation and public health planning. This study estimated ALS incidence in Colombia from 1984 to 2024, analyzing regional distribution patterns and the demographic and socioeconomic profiles of affected individuals. Methods: This cross-sectional, population-based study analyzed 2185 clinically confirmed ALS cases reported to the Colombian National Institute of Health. Diagnoses were established using El Escorial or Gold Coast criteria. Annual and cumulative incidence rates were estimated using national population data. Demographic, geographic, and socioeconomic variables were classified under international standards, and all statistical analyses were performed using Python (version 3.12). Results: A total of 2185 ALS cases diagnosed between 1984 and 2024 were included. For the most recent decade (2015-2024), the national cumulative incidence was 41.46 per million inhabitants, with a steady increase in annual incidence. Bogotá and Caldas showed the highest cumulative incidence, whereas Chocó and Casanare reported the lowest. The mean age at diagnosis was 59.9 years, with a slight male predominance (male-to-female ratio 1.11:1). Socioeconomic disparities were evident: 18.0% of patients had no formal education, and over 40% were economically inactive at diagnosis. Conclusions: ALS incidence in Colombia is lower than that reported in high-income regions, but shows pronounced geographic and socioeconomic heterogeneity. These findings underscore the need to strengthen diagnostic capacity, improve equitable access to neurology services, and advance research on environmental and genetic determinants of ALS in Latin America.

RevDate: 2025-12-10
CmpDate: 2025-12-10

Shamsi A, Alrouji M, AlOmeir O, et al (2025)

Correction: CRISPR-Cas9: bridging the gap between aging mechanisms and therapeutic advances in neurodegenerative disorders.

Frontiers in cellular neuroscience, 19:1739705.

[This corrects the article DOI: 10.3389/fncel.2025.1681891.].

RevDate: 2025-12-10
CmpDate: 2025-12-10

Yu L, Yang Z, Ming Z, et al (2025)

Evaluation of ascending aorta and radial artery elasticity in patients with type 2 diabetes mellitus via velocity vector imaging.

Quantitative imaging in medicine and surgery, 15(12):12044-12054.

BACKGROUND: A decrease in arterial elasticity may contribute to accelerated atherosclerosis, the sequelae of which are the most common causes of death in type 2 diabetes mellitus (T2DM) patients. The aim of this study was to assess ascending aorta (AA) and radial artery (RA) elasticity in T2DM patients via velocity vector imaging (VVI).

METHODS: We enrolled 50 patients with T2DM and 52 age- and sex-matched nondiabetic individuals as controls. All the participants underwent echocardiography and RA ultrasound examinations. AA elasticity parameters, i.e., ascending aortic mean longitudinal strain (ALS), ascending aortic global circumferential strain (ACS), ascending aortic fractional area change (FAC), and RA elasticity parameters, i.e., radial arterial mean longitudinal strain (RLS) and radial arterial global circumferential strain (RCS), were evaluated with VVI. The differences in arterial elasticity parameters between diabetic and non-diabetic patients were evaluated by a paired t-test. Spearman correlation coefficients were calculated to demonstrate the relationship between arterial elasticity parameters and clinical risk factors and cardiovascular biometrics in T2DM patients.

RESULTS: We found that the T2DM group presented significantly lower ALS, ACS, FAC, RLS and RCS values than the control group did (all P<0.05). There were significant associations between all arterial elasticity parameters and glycosylated hemoglobin (HbA1c) and diabetes duration (ALS and HbA1c: r=-0.36, ALS and diabetes duration: r=-0.52, ACS and HbA1c: r=-0.32, ACS and diabetes duration: r=-0.38, FAC and HbA1c: r=-0.36, FAC and diabetes duration: r=-0.32, RLS and HbA1c: r=-0.39, RLS and diabetes duration: r=-0.46, RCS and HbA1c: r=-0.31, RCS and diabetes duration: r=-0.39, respectively; P<0.01). Additionally, the ALS was significantly negatively correlated with fasting plasma glucose (FPG) (r=-0.30, P<0.05).

CONCLUSIONS: The elasticity of the AA and RA in T2DM patients was impaired. Decreased arterial elasticity was associated with poor blood glucose control and a longer duration of diabetes. Further studies are needed to assess the clinical value of VVI findings for predicting future cardiac events.

RevDate: 2025-12-10
CmpDate: 2025-12-10

Barahona-López C, Plans-Beriso E, Diez-Echave P, et al (2025)

Personalized prevention of neurodegenerative diseases: scoping review and evidence gap map.

Alzheimer's & dementia : the journal of the Alzheimer's Association, 21(12):e70980.

Neurodegenerative diseases represent a major public health challenge due to their high prevalence and poor prognosis. Identifying biomarkers to stratify individuals by their risk of developing these diseases may help to define new personalized prevention interventions. The objective of this study was to conduct a scoping review of biomarkers for primary and secondary personalized prevention of neurodegenerative diseases. The search targeted biomarkers in adults or high-risk subpopulations in clinical or public health settings for Alzheimer's disease, vascular dementia, Lewy body disease, frontotemporal dementia, Parkinson's disease, multiple sclerosis, and amyotrophic lateral sclerosis. Ultimately, 286 papers were included in the review and the interactive gap map. There is a strong focus on Alzheimer's disease, and most papers included -omics-based biomarkers and/or used artificial intelligence. Genetics/genomics are at the forefront of current scientific research, although there is a notable gap in studying gene-environment interactions, and studies in clinical settings are still scarce. HIGHLIGHTS: Research indicates a strong focus on Alzheimer´s disease and limited research in other diseases. Genetics and genomics are at the forefront of current scientific research. We found biomarkers for predicting progression in mild cognitive decline. There is a notable gap in studying gene-environment interactions. Studies investigating biomarkers in a clinical context are still scarce.

RevDate: 2025-12-10
CmpDate: 2025-12-10

Saracino D, Cipriano L, Houot M, et al (2025)

Quantifying multimodal longitudinal brain changes in presymptomatic C9orf72 disease.

Alzheimer's & dementia : the journal of the Alzheimer's Association, 21(12):e70902.

INTRODUCTION: The presymptomatic phase of frontotemporal dementia and amyotrophic lateral sclerosis associated with C9orf72 repeat expansion features widespread structural brain changes. We aimed at fulfilling the unmet need of quantitative magnetic resonance imaging (MRI)-derived measures suitable for disease tracking.

METHODS: We compared the profile of longitudinal gray (GM) and white matter (WM) changes in 66 presymptomatic carriers and 52 controls over 3-year follow-up and appraised their annualized rate of change (ARC).

RESULTS: Both putamen (p < 0.01) and left insula (p = 0.005) volumes declined the most in carriers over 40, with an ARC up to four-fold higher than in controls. Increases in mean diffusivity occurred first in the left uncinate fasciculus, followed by thalamo-cortical bundles (p < 0.05), associated with higher neurofilament levels.

DISCUSSION: Our study highlighted the GM and WM structures showing the greatest longitudinal decline during the preclinical stage, whose ARC may serve as an MRI-derived biomarker for longitudinal surveillance and therapeutic outcome.

CLINICAL TRIAL REGISTRATION: NCT02590276 and NCT05358431.

HIGHLIGHTS: We studied longitudinal multimodal MRI changes in presymptomatic C9orf72 disease. Carriers displayed faster atrophy in putamen, insula and cerebellar regions. Mean diffusivity increased mainly in uncinate and thalamo-cortical tracts. These differences were even more significant in older (> 40) participants. We proposed targeted annualized rate of change as a quantitative biomarker.

RevDate: 2025-12-10

Huang J, Liu Y, Li M, et al (2025)

Safety and efficacy of botulinum toxin injection for sialorrhea in amyotrophic lateral sclerosis: a systematic review and meta-analysis.

BMC neurology, 25(1):496.

RevDate: 2025-12-09

Kulappu Arachchige SN, Abeykoon AMH, Stevenson MA, et al (2025)

Assessment of tracheal mucosal thicknesses is a preferable method for evaluation of the immunogenicity of Mycoplasma gallisepticum vaccines in poultry.

Vaccine, 72:128063 pii:S0264-410X(25)01361-1 [Epub ahead of print].

Live-attenuated vaccines are commonly used to control chronic respiratory disease (CRD) caused by Mycoplasma gallisepticum in poultry. A previous review found that measures of tracheal lesions are better indicators of the validity of a vaccine efficacy test than air sac lesions. Here we extend those observations by comparing the raw tracheal mucosal thickness (TMT) and gross air sac lesion score (ALS) data from published vaccine efficacy studies to provide insights into standardising methods for evaluation of M. gallisepticum vaccine efficacy by identifying the most discriminative and reproducible parameter to demonstrate the efficacy of vaccines and the validity of immunogenicity tests. Our analyses revealed that a higher proportion of trials detected a ≥ 80 % effectiveness of challenge based on TMT, with a significantly lower number of biological replicates, than ALS. Furthermore, a significantly higher proportion of vaccinated-and-challenged groups had a proportion protected of ≥80 %, a reduction in lesions of ≥30 % and a mitigated fraction of ≥0.80, with a significantly lower number of biological replicates, compared to the positive-control group when analyses were based on TMT rather than ALSs. These findings indicate that TMT is a more discriminative and reproducible parameter to assess the efficacy of a vaccine and the validity of an efficacy test, and hence that this should be the primary outcome variable used to evaluate M. gallisepticum vaccine efficacy studies. Furthermore, the ability of TMT to discriminate these groups with fewer biological replicates enhances animal welfare by reducing the number of animals needed for efficacy studies.

RevDate: 2025-12-09

Svendsen O, Stevens MWR, Hamamura T, et al (2025)

Reporting quality standards in gaming disorder treatment evidence: A systematic review.

Acta psychologica, 262:106063 pii:S0001-6918(25)01377-0 [Epub ahead of print].

BACKGROUND: The treatment evidence base for gaming disorder (GD) has grown steadily over the past two decades. A systematic review by King et al. (2017) of 30 studies reported that GD treatment studies tended to favor psychotherapy approaches, but the research was limited by poor reporting standards as assessed by the Consolidated Standards of Reporting Trials (CONSORT) framework. This systematic review aimed to conduct a follow up evaluation of the reporting quality of subsequent GD treatment studies.

METHODS: A literature search of six databases yielded 51,056 records, which resulted in 31 eligible studies after screening. Each study's reporting quality was assessed using the CONSORT statement, and then these assessments were compared to King et al.'s (2017) review.

RESULTS: This review identified several methodological improvements since 2017: 61 % of studies were randomized controlled trials (vs. 40 % in 2017), 90 % included control groups (vs. 63 %), and follow-up duration increased to 6.1 months (vs. 3.5 months; p = .032). Reporting improved for participant flow (87.1 % vs. 43.3 %; p = .001) and group-level statistics (74.2 % vs. 36.7 %; p = .003), but some areas showed no improvement.

DISCUSSION: There have been several improvements in GD treatment study design and reporting, including controls, randomization and follow up, reflecting an increasing number of higher quality trials for the condition. Most of the studies with higher reporting quality (i.e., scoring ≥30/46 on the CONSORT framework) were psychotherapy-based. Future research should employ designs with longer follow-ups, broader assessment of outcomes, and standardized ICD-11-aligned tools. Pharmacological treatments, including novel pharmacotherapies for other addictions (e.g., Naltrexone), are underexplored and lack high quality evidence.

RevDate: 2025-12-09

Hamzeloo M, Bogenschütz L, Hackländer RPM, et al (2025)

Evaluating the generalizability of the normative odor rating across cultures: Evidence from a German-speaking sample.

Acta psychologica, 262:106056 pii:S0001-6918(25)01370-8 [Epub ahead of print].

Olfactory perception varies across cultures, yet the cross-cultural generalizability of normative odor ratings remains underexplored. This study investigates the generalizability of normative odor ratings to a German-speaking sample by assessing 24 odors across eight dimensions-familiarity, frequency, pleasantness, irritability, context availability, discriminability, age of acquisition, and verbalizability-in 124 German-speaking participants (Mage = 22.36, SD = 3.24). Building on Moss et al.'s (2016) methodology with English-speaking participants, we examined the consistency of these dimensions, the influence of odor familiarity, and the role of odor-specific properties versus individual differences. Results revealed significant intercorrelations among the dimensions, except for age of acquisition, which negatively correlated with others, confirming the importance of early exposure in olfactory perceptual saliency and linguistic accessibility. For high-familiar odors, strong correlations with Moss et al.'s ratings were found for familiarity (r = 0.805), frequency (r = 0.799), pleasantness (r = 0.792), context availability (r = 0.794), discriminability (r = 0.967), and verbalizability (r = 0.844), and age of acquisition (r = 0.750), but not for irritability (r = 0.495). Low-familiar odors showed only a moderate correlation for verbalizability (r = 0.530), highlighting the role of exposure in cross-cultural consistency. Variance across odors significantly exceeded variance across participants, indicating reliable differentiation by odor properties. These findings suggest that normative odor ratings show strong cross-sample consistency across the two samples, particularly for familiar odors. This study supports the utility of normative ratings in olfactory research while highlighting the role of familiarity and context in cross-cultural perception.

RevDate: 2025-12-09

Matur Z, Deveci Ş, Y Erdal (2025)

Correlations of cerebrospinal fluid neurofilament light chain levels with clinical and electromyography findings in amyotrophic lateral sclerosis.

Irish journal of medical science [Epub ahead of print].

BACKGROUND: This study aimed to examine correlations between cerebrospinal fluid neurofilament light chain (CSF NfL) levels, and clinical and electrophysiological findings in amyotrophic lateral sclerosis (ALS). Compare CSF NfL and total protein levels between ALS and other central nervous system (CNS) neurodegenerative disorders.

METHODS: This retrospective study analyzed 46 ALS patients (Gold Coast criteria) and 33 non-ALS neurodegenerative controls. We documented time from symptom onset to diagnosis, revised ALS Functional Rating Scale (ALSFRS-R) scores at CSF sampling, initial involvement regions (bulbar/cervical/lumbosacral), and extent of lower motor neuron (LMN) involvement.

RESULTS: ALS patients had significantly higher CSF NfL levels than non-ALS controls (4221 ± 2585 vs. 3004 ± 2788 pg/mL, p = 0.025). In the ALS group, CSF NfL levels showed significant inverse correlation with ALSFRS-R scores (r = -0.332, p = 0.024), and patients demonstrating involvement in all four-region on needle electromyography exhibited the highest CSF NfL levels. Among the ALS cohort 18 patients (39%) had died by the last follow-up, and patients who died during the study exhibited significantly higher baseline CSF NfL levels (median: 5115 pg/mL) compared to surviving patients (median: 3276 pg/mL; p = 0.007).

CONCLUSIONS: Our study demonstrated that CSF NFL levels were significantly elevated in ALS compared to other neurodegenerative disorders. Higher CSF NFL concentrations correlated with more rapid functional decline, more extensive LMN degeneration, and poorer survival outcomes.

RevDate: 2025-12-09

Levine AA, Rucker JA, Cockerham A, et al (2025)

U.S. health plan coverage of Neuromuscular Disease Therapies: An assessment of policy availability and restrictions.

Journal of neuromuscular diseases [Epub ahead of print].

BACKGROUND: Health plan policies managing neuromuscular disease (NMD) therapies may impose burdensome requirements on patients and providers. While prior research has explored payer restrictions for rare NMD treatments, limited evidence exists on policies specifically governing therapy initiation and reauthorization.

OBJECTIVES: To examine initial and reauthorization coverage policies for therapies targeting five NMDs-Duchenne muscular dystrophy, amyotrophic lateral sclerosis, spinal muscular atrophy, generalized myasthenia gravis, and Lambert-Eaton myasthenic syndrome-across all U.S. state Medicaid programs and leading commercial health plans.

METHODS: We constructed a database of coverage decisions issued by 50 states and DC Medicaid programs and 35 major commercial insurers, including both fee-for-service and managed care organizations. We analyzed (1) policy availability and coverage frequency, (2) initial coverage requirements (e.g., subgroup restrictions, step therapy, prescriber type), (3) reauthorization criteria, and (4) approval durations.

RESULTS: Of 1204 potential decisions, 908 (75%) had publicly available policies. Of these, 558 (46%) included reauthorization criteria. Among covered therapies, 96% imposed restrictions beyond FDA label indications. Requirements varied by payer type, NMD, and therapy. Average approval durations were 6 months for initial coverage and 10 months for reauthorization.

CONCLUSIONS: Many plans lacked publicly accessible policies, and most covered therapies were subject to restrictive requirements. These barriers-such as step therapy, narrow prescriber criteria, and short approval periods-may delay treatment and disrupt care continuity. Findings underscore the need for greater transparency and reform in prior authorization and pharmacy benefit design to support timely access to NMD therapies.

RevDate: 2025-12-09

Ma T, Zhu H, Zhu J, et al (2025)

Evaluation of pathogenicity, host resistance, biological properties and chemical control of Xanthomonas fragariae Strain JD1 causing angular leaf spot on strawberry.

Plant disease [Epub ahead of print].

Angular leaf spot (ALS), caused by the quarantine pathogen Xanthomonas fragariae, is a major bacterial disease threatening global strawberry production. In China, its continued spread across multiple regions poses a significant and persistent epidemiological threat to the strawberry industry. Recently, ALS has emerged as a great threat to strawberry industry in the Jiande, Zhejiang province (located at 29°N, 119°E). This study reports the first isolation and characterization of X. fragariae strain JD1 from symptomatic strawberry leaves in Jiande, Zhejiang Province. The identification of strain JD1 was confirmed through species-specific PCR, analysis of colony characteristics, and phylogenetic clustering based on 16S rRNA and HrpB gene sequences. Pathogenicity assays revealed strain JD1 resulted in water-soaked lesions progressing to necrotic patches on leaves, along with systemic colonization of crown tissues showing water-soaked, reddish-brown lesions without cavity formation. Additionally, resistance evaluation across six strawberry cultivars revealed that 'Yue Xiu' was the most susceptible, followed closely by 'Jiande Hong', 'Hong Yu', 'Li Fen', and 'Hong Yan', while 'Fen Yu' exhibited the highest resistance. Biological characterization showed that strain JD1 grows optimally at 25°C and pH 7.0, with significant inhibition observed at 35°C and under acidic (pH 4) or alkaline (pH 9) conditions. In bactericide screening, tetramycin and benziothiazolinone were identified as highly effective against JD, followed by sintracin acetate aqueous with minor efficacy, whereas kasugamycin and quinoline copper showed limited or no efficacy. Collectively, these findings not only emphasize the threat posed by X. fragariae strain JD1 to strawberry production but also provide critical insights that inform integrated management strategies, including the use of resistant cultivars, environmental controls, and targeted bactericides, for controlling ALS.

RevDate: 2025-12-09

Rosenfeld J, Abrahams S, McHutchinson C, et al (2025)

Utility of patient subgrouping in ALS clinical trials: a World Federation of Neurology white paper.

Amyotrophic lateral sclerosis & frontotemporal degeneration [Epub ahead of print].

The heterogeneity among the amyotrophic lateral sclerosis (ALS)/MND patient population is well recognized but not well understood. Such heterogeneity may represent a significant confound in our current and prior clinical trials as certain subgroups of patients might have a selective response (or resistance) to a novel therapeutic. The basis on which to segregate the patient population is, however, unclear. The ALS/MND Committee of the World Federation of Neurology (WFN) convened a symposium to discuss various strategies that might be considered for separating (stratifying) the population to further study. The results of that conference are presented here as a white paper, reflecting current understanding of several of the various criteria that could be implemented to divide the patient population as presented and discussed at that meeting. Consideration of grouping patients based on phenotype, cognitive involvement, imaging, or electrophysiology is presented here.

RevDate: 2025-12-09

Anonymous (2025)

Erratum.

Neuro-degenerative diseases, 25(4):227.

<p>In the article "Characteristics of Neuromuscular Ultrasound in Patients with Amyotrophic Lateral Sclerosis" [Neurodegener Dis. 2025; <ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="https://doi.org/10.1159/000546425">https://doi.org/10.1159/000546425</ext-link>] by Wu et al., the wrong copyright license was displayed. It has been corrected to a CC-BY 4.0 license.</p><p>The original online article has been updated to reflect this.</p></sec></body>. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41191543</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1159/000548749"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41191543%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41191543"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41191543"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Erratum."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-10_01-34-59-8" class="bibtex-switch" onClick="showBlock('citation-2025-12-10_01-34-59-8'); showBlock('bibtex-hide-2025-12-10_01-34-59-8'); hideBlock('bibtex-show-2025-12-10_01-34-59-8'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-10_01-34-59-8" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-10_01-34-59-8'); hideBlock('bibtex-hide-2025-12-10_01-34-59-8'); showBlock('bibtex-show-2025-12-10_01-34-59-8');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-10_01-34-59-8" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41191543,<br> year = {2025},<br> author = {},<br> title = {Erratum.},<br> journal = {Neuro-degenerative diseases},<br> volume = {25},<br> number = {4},<br> pages = {227},<br> doi = {10.1159/000548749},<br> pmid = {41191543},<br> issn = {1660-2862},<br> abstract = {<body><sec id="s1"><title /><p>In the article "Characteristics of Neuromuscular Ultrasound in Patients with Amyotrophic Lateral Sclerosis" [Neurodegener Dis. 2025; <ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="doi" xlink:href="https://doi.org/10.1159/000546425">https://doi.org/10.1159/000546425</ext-link>] by Wu et al., the wrong copyright license was displayed. It has been corrected to a CC-BY 4.0 license.</p><p>The original online article has been updated to reflect this.</p></sec></body>.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08<br>CmpDate: 2025-12-08 </p> <p class="ESP-citation-author"> Zhao R, Bai Y, Zhang S, et al (2025) </p> <p class="ESP-citation-title"> <b>An open dataset of multidimensional signals based on different speech patterns in pragmatic Mandarin.</b> </p> <p class="ESP-citation-data"> <i>Scientific data</i>, <b>12(1):</b>1934. </p> <p class="ESP-citation-abstract"> Speech is essential for human communication, but millions of people lose the ability to speak due to conditions such as amyotrophic lateral sclerosis (ALS) or stroke. Assistive technologies like brain-computer interfaces (BCIs), can convert brain signals into speech. However, these technologies still face challenges in decoding accuracy. This issue is especially challenging for tonal languages like Mandarin Chinese. Furthermore, most existing speech datasets are based on Indo-European languages, which hinders our understanding of how tonal information is encoded in the brain. To address this, we introduce a comprehensive open dataset, which includes multimodal signals from 30 subjects using Mandarin Chinese across overt, silent, and imagined speech modes, covering electroencephalogram (EEG), surface electromyogram (sEMG), and speech recordings. This dataset lays a valuable groundwork for exploring the neural encoding of tonal languages, investigating tone-related brain dynamics, and improving assistive communication strategies. It supports cross-linguistic speech processing research and contributes to data-driven neural speech decoding technology innovations. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41361196</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41361196%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41361196"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41361196"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=An+open+dataset+of+multidimensional+signals+based+on+different+speech+patterns+in+pragmatic+Mandarin."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-1" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-1'); showBlock('bibtex-hide-2025-12-09_01-35-11-1'); hideBlock('bibtex-show-2025-12-09_01-35-11-1'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-1" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-1'); hideBlock('bibtex-hide-2025-12-09_01-35-11-1'); showBlock('bibtex-show-2025-12-09_01-35-11-1');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-1" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41361196,<br> year = {2025},<br> author = {Zhao, R and Bai, Y and Zhang, S and Zhu, J and Liu, H and Ni, G},<br> title = {An open dataset of multidimensional signals based on different speech patterns in pragmatic Mandarin.},<br> journal = {Scientific data},<br> volume = {12},<br> number = {1},<br> pages = {1934},<br> pmid = {41361196},<br> issn = {2052-4463},<br> mesh = {Humans ; *Speech ; Electroencephalography ; *Language ; Brain-Computer Interfaces ; Electromyography ; China ; Brain/physiology ; },<br> abstract = {Speech is essential for human communication, but millions of people lose the ability to speak due to conditions such as amyotrophic lateral sclerosis (ALS) or stroke. Assistive technologies like brain-computer interfaces (BCIs), can convert brain signals into speech. However, these technologies still face challenges in decoding accuracy. This issue is especially challenging for tonal languages like Mandarin Chinese. Furthermore, most existing speech datasets are based on Indo-European languages, which hinders our understanding of how tonal information is encoded in the brain. To address this, we introduce a comprehensive open dataset, which includes multimodal signals from 30 subjects using Mandarin Chinese across overt, silent, and imagined speech modes, covering electroencephalogram (EEG), surface electromyogram (sEMG), and speech recordings. This dataset lays a valuable groundwork for exploring the neural encoding of tonal languages, investigating tone-related brain dynamics, and improving assistive communication strategies. It supports cross-linguistic speech processing research and contributes to data-driven neural speech decoding technology innovations.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-09_01-35-11-1" class="mesh-switch" onClick="showBlock('mesh-2025-12-09_01-35-11-1'); showBlock('mesh-hide-2025-12-09_01-35-11-1'); hideBlock('mesh-show-2025-12-09_01-35-11-1'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-09_01-35-11-1" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-09_01-35-11-1'); hideBlock('mesh-hide-2025-12-09_01-35-11-1'); showBlock('mesh-show-2025-12-09_01-35-11-1');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-09_01-35-11-1" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">Humans</span><br> <span class="mesh-term">*Speech</span><br> <span class="mesh-term">Electroencephalography</span><br> <span class="mesh-term">*Language</span><br> <span class="mesh-term">Brain-Computer Interfaces</span><br> <span class="mesh-term">Electromyography</span><br> <span class="mesh-term">China</span><br> <span class="mesh-term">Brain/physiology</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08<br>CmpDate: 2025-12-08 </p> <p class="ESP-citation-author"> Taquet M, Todd JA, PJ Harrison (2025) </p> <p class="ESP-citation-title"> <b>Reply to: Methodological Issues in Taquet et al.'s analysis preclude any conclusions regarding AS01 adjuvant's specific role in dementia prevention.</b> </p> <p class="ESP-citation-data"> <i>NPJ vaccines</i>, <b>10(1):</b>256. </p> <p class="ESP-citation-abstract"> </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41361184</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41361184%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41361184"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41361184"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Reply+to:+Methodological+Issues+in+Taquet+et+al.'s+analysis+preclude+any+conclusions+regarding+AS01+adjuvant's+specific+role+in+dementia+prevention."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-2" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-2'); showBlock('bibtex-hide-2025-12-09_01-35-11-2'); hideBlock('bibtex-show-2025-12-09_01-35-11-2'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-2" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-2'); hideBlock('bibtex-hide-2025-12-09_01-35-11-2'); showBlock('bibtex-show-2025-12-09_01-35-11-2');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-2" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41361184,<br> year = {2025},<br> author = {Taquet, M and Todd, JA and Harrison, PJ},<br> title = {Reply to: Methodological Issues in Taquet et al.'s analysis preclude any conclusions regarding AS01 adjuvant's specific role in dementia prevention.},<br> journal = {NPJ vaccines},<br> volume = {10},<br> number = {1},<br> pages = {256},<br> pmid = {41361184},<br> issn = {2059-0105},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08 </p> <p class="ESP-citation-author"> Ma JY, Wang X, Cai Y, et al (2025) </p> <p class="ESP-citation-title"> <b>Anionic Liposomes as Optimal Membrane Fusion Carriers Enabling in Situ Multiplexed Detection of Extracellular Vesicle MicroRNAs.</b> </p> <p class="ESP-citation-data"> <i>Advanced science (Weinheim, Baden-Wurttemberg, Germany)</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Extracellular vesicle (EV) microRNAs (miRNAs) are promising liquid biopsy biomarkers for non-invasive diagnosis, monitoring, and therapeutic evaluation of cancer. However, sensitive EV miRNA detection is hindered by complex pre-analytical processing. Here, the authors present an anionic liposome (AL) assisted membrane fusion strategy enabling one-step multiplexed quantification of EV miRNAs directly from plasma without EV isolation or RNA extraction, termed EValarm (Anionic Liposome Assisted miRNAs Monitoring for Extracellular Vesicles). Liposomes encapsulating probes are prepared using a microfluidic chip, achieving catalytic signal amplification after target recognition of miRNA. Systematic lipid screening identified ALs as optimal carriers, exhibiting minimal background and superior sensitivity compared to cationic and neutral liposomes. The AL-based assay delivered accuracy comparable to quantitative PCR with a streamlined workflow. Applied to 106 clinical samples from lymphoma patients and healthy controls, integration with artificial intelligence achieved high accuracy (AUC > 0.99). In summary, this study demonstrates a platform enabling direct and sensitive plasma EV miRNA detection, offering strong potential for clinical translation in cancer liquid biopsy. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41360752</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1002/advs.202519758"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41360752%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41360752"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41360752"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Anionic+Liposomes+as+Optimal+Membrane+Fusion+Carriers+Enabling+in+Situ+Multiplexed+Detection+of+Extracellular+Vesicle+MicroRNAs."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-3" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-3'); showBlock('bibtex-hide-2025-12-09_01-35-11-3'); hideBlock('bibtex-show-2025-12-09_01-35-11-3'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-3" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-3'); hideBlock('bibtex-hide-2025-12-09_01-35-11-3'); showBlock('bibtex-show-2025-12-09_01-35-11-3');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-3" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41360752,<br> year = {2025},<br> author = {Ma, JY and Wang, X and Cai, Y and Wang, G and Lu, M and Feng, K and Zhao, Y and Wu, X and Zhang, X and Wu, H and Yu, W and Ma, M and Ge, Z and Zhang, Y},<br> title = {Anionic Liposomes as Optimal Membrane Fusion Carriers Enabling in Situ Multiplexed Detection of Extracellular Vesicle MicroRNAs.},<br> journal = {Advanced science (Weinheim, Baden-Wurttemberg, Germany)},<br> volume = {},<br> number = {},<br> pages = {e19758},<br> doi = {10.1002/advs.202519758},<br> pmid = {41360752},<br> issn = {2198-3844},<br> support = {2022YFA1205802//National Key Research and Development Program of China/ ; 2022YFC2406504//National Key Research and Development Program of China/ ; 82572399//National Natural Science Foundation of China/ ; 82302370//National Natural Science Foundation of China/ ; BF2024062//Frontier Technologies R&D Program of Jiangsu/ ; BK20230836//Natural Science Foundation of Jiangsu Province/ ; KYCX24_0471//Postgraduate Research & Practice Innovation Program of Jiangsu Province/ ; CXJH_SEU 25140//SEU Innovation Capability Enhancement Plan for Doctoral Students/ ; },<br> abstract = {Extracellular vesicle (EV) microRNAs (miRNAs) are promising liquid biopsy biomarkers for non-invasive diagnosis, monitoring, and therapeutic evaluation of cancer. However, sensitive EV miRNA detection is hindered by complex pre-analytical processing. Here, the authors present an anionic liposome (AL) assisted membrane fusion strategy enabling one-step multiplexed quantification of EV miRNAs directly from plasma without EV isolation or RNA extraction, termed EValarm (Anionic Liposome Assisted miRNAs Monitoring for Extracellular Vesicles). Liposomes encapsulating probes are prepared using a microfluidic chip, achieving catalytic signal amplification after target recognition of miRNA. Systematic lipid screening identified ALs as optimal carriers, exhibiting minimal background and superior sensitivity compared to cationic and neutral liposomes. The AL-based assay delivered accuracy comparable to quantitative PCR with a streamlined workflow. Applied to 106 clinical samples from lymphoma patients and healthy controls, integration with artificial intelligence achieved high accuracy (AUC > 0.99). In summary, this study demonstrates a platform enabling direct and sensitive plasma EV miRNA detection, offering strong potential for clinical translation in cancer liquid biopsy.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08 </p> <p class="ESP-citation-author"> Chis-Ciure R (2025) </p> <p class="ESP-citation-title"> <b>The unbearable hardness of inferring being: Comment on "preliminaries to artificial consciousness" by Evers et al.</b> </p> <p class="ESP-citation-data"> <i>Physics of life reviews</i>, <b>56:</b>87-90 pii:S1571-0645(25)00180-0 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> This commentary commends Evers et al.'s multidimensional heuristic for structuring artificial consciousness research while arguing it cannot, as stated, adjudicate the nomological possibility of phenomenal consciousness, which is at stake in current debates. Behavioral-cognitive "profiles" lack a justified principle linking function to experience, and the awareness case study illustrates how externally specified goals can just as well underwrite as-if (pseudo-intentional) control rather than original intentionality. Moreover, the proposed heuristic overlooks that substrate similarity is currently indispensable for justifiably inferring the presence of consciousness beyond the validated case of the adult human brain. Given all this, the framework seems to provide a blueprint for building a more sophisticated philosophical zombie; it does not-and cannot-tell us whether anyone is there. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41360043</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.plrev.2025.12.004"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41360043%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41360043"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41360043"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=The+unbearable+hardness+of+inferring+being:+Comment+on+"preliminaries+to+artificial+consciousness"+by+Evers+et+al."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-4" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-4'); showBlock('bibtex-hide-2025-12-09_01-35-11-4'); hideBlock('bibtex-show-2025-12-09_01-35-11-4'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-4" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-4'); hideBlock('bibtex-hide-2025-12-09_01-35-11-4'); showBlock('bibtex-show-2025-12-09_01-35-11-4');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-4" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41360043,<br> year = {2025},<br> author = {Chis-Ciure, R},<br> title = {The unbearable hardness of inferring being: Comment on "preliminaries to artificial consciousness" by Evers et al.},<br> journal = {Physics of life reviews},<br> volume = {56},<br> number = {},<br> pages = {87-90},<br> doi = {10.1016/j.plrev.2025.12.004},<br> pmid = {41360043},<br> issn = {1873-1457},<br> abstract = {This commentary commends Evers et al.'s multidimensional heuristic for structuring artificial consciousness research while arguing it cannot, as stated, adjudicate the nomological possibility of phenomenal consciousness, which is at stake in current debates. Behavioral-cognitive "profiles" lack a justified principle linking function to experience, and the awareness case study illustrates how externally specified goals can just as well underwrite as-if (pseudo-intentional) control rather than original intentionality. Moreover, the proposed heuristic overlooks that substrate similarity is currently indispensable for justifiably inferring the presence of consciousness beyond the validated case of the adult human brain. Given all this, the framework seems to provide a blueprint for building a more sophisticated philosophical zombie; it does not-and cannot-tell us whether anyone is there.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08 </p> <p class="ESP-citation-author"> Bollen C, J van Grunsven (2025) </p> <p class="ESP-citation-title"> <b>In defense of the double empathy problem hypothesis: An urgently needed alternative to fallacies and injustices in mainstream autism research.</b> </p> <p class="ESP-citation-data"> <i>Psychological review</i> pii:2027-00755-001 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> In their theoretical note, "The Double Empathy Problem: A Derivation Chain Analysis and Cautionary Note," Livingston et al. (2024) took a critical look at the double empathy problem hypothesis (DEPH). While they acknowledge that the DEPH offers promising insights, and while their critical note seems, at times, to be written with an eye to furthering and expanding DEPH, the main point they ultimately drive home is that DEPH has a "precarious theoretical and evidence base" and that, given this (allegedly) shaky foundation, applying DEPH "into real-world applications may have unintended and potentially harmful consequences for autistic people and those with similar conditions" (Livingston et al., 2024, p. 10). In this theoretical note, we take a critical look at Livingston et al.'s critique of DEPH, arguing that their warning note is problematic both from an ethical and philosophy of science point of view. (PsycInfo Database Record (c) 2025 APA, all rights reserved). </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41359535</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1037/rev0000605"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41359535%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41359535"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41359535"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=In+defense+of+the+double+empathy+problem+hypothesis:+An+urgently+needed+alternative+to+fallacies+and+injustices+in+mainstream+autism+research."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-5" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-5'); showBlock('bibtex-hide-2025-12-09_01-35-11-5'); hideBlock('bibtex-show-2025-12-09_01-35-11-5'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-5" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-5'); hideBlock('bibtex-hide-2025-12-09_01-35-11-5'); showBlock('bibtex-show-2025-12-09_01-35-11-5');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-5" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41359535,<br> year = {2025},<br> author = {Bollen, C and van Grunsven, J},<br> title = {In defense of the double empathy problem hypothesis: An urgently needed alternative to fallacies and injustices in mainstream autism research.},<br> journal = {Psychological review},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1037/rev0000605},<br> pmid = {41359535},<br> issn = {1939-1471},<br> support = {//Netherlands Organisation for Scientific Research/ ; },<br> abstract = {In their theoretical note, "The Double Empathy Problem: A Derivation Chain Analysis and Cautionary Note," Livingston et al. (2024) took a critical look at the double empathy problem hypothesis (DEPH). While they acknowledge that the DEPH offers promising insights, and while their critical note seems, at times, to be written with an eye to furthering and expanding DEPH, the main point they ultimately drive home is that DEPH has a "precarious theoretical and evidence base" and that, given this (allegedly) shaky foundation, applying DEPH "into real-world applications may have unintended and potentially harmful consequences for autistic people and those with similar conditions" (Livingston et al., 2024, p. 10). In this theoretical note, we take a critical look at Livingston et al.'s critique of DEPH, arguing that their warning note is problematic both from an ethical and philosophy of science point of view. (PsycInfo Database Record (c) 2025 APA, all rights reserved).},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08 </p> <p class="ESP-citation-author"> Rees L, Lam CF, Du QS, et al (2025) </p> <p class="ESP-citation-title"> <b>Exploring the duality of voice habit: Testing and extending theory and measurement.</b> </p> <p class="ESP-citation-data"> <i>The Journal of applied psychology</i> pii:2026-99582-001 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Scholars increasingly recognize the existence of voice habit, wherein employees speak up automatically without considering relevant situational factors, being able to control their impulse to voice, and exerting effort in deciding whether to voice. However, a lack of theory testing and an absence of a psychometrically valid measure have called into question its theoretical usefulness as well as its construct validity. Moreover, contrary to Lam et al.'s (2018) theorizing on the interpersonal costs and intrapersonal benefits of voice habit, research on the reticence bias suggests the opposite: Habitual voicers may gain interpersonal benefits by experiencing higher supervisor liking, but they may also suffer intrapersonal costs by experiencing voice regret. Integrating these divergent insights with theorizing on voice habit, we predict that voice habit may elicit supervisor liking when supervisors perceive habitual voicers as having higher prosocial motives or behavioral integrity, even though habitual voicers may experience regret in work units with a weaker voice climate. Results from a multiwave, multisource field study with 435 employees and 135 supervisors using a 12-item validated scale of voice habit support our hypotheses. Our work provides a direct test and extension of the recently proposed theorizing on voice habit and introduces a psychometrically valid measure for future research use. Our findings also empirically support the dual nature of voice habit, highlighting both its potential functional interpersonal outcomes in relation to supervisors and its potential dysfunctional intrapersonal outcomes for habitual voicers. (PsycInfo Database Record (c) 2025 APA, all rights reserved). </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41359530</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1037/apl0001326"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41359530%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41359530"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41359530"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Exploring+the+duality+of+voice+habit:+Testing+and+extending+theory+and+measurement."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-6" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-6'); showBlock('bibtex-hide-2025-12-09_01-35-11-6'); hideBlock('bibtex-show-2025-12-09_01-35-11-6'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-6" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-6'); hideBlock('bibtex-hide-2025-12-09_01-35-11-6'); showBlock('bibtex-show-2025-12-09_01-35-11-6');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-6" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41359530,<br> year = {2025},<br> author = {Rees, L and Lam, CF and Du, QS and Yu, A and Wong, MN and Xie, H},<br> title = {Exploring the duality of voice habit: Testing and extending theory and measurement.},<br> journal = {The Journal of applied psychology},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1037/apl0001326},<br> pmid = {41359530},<br> issn = {1939-1854},<br> support = {//National Natural Science Foundation of China/ ; //Hong Kong General Research Fund/ ; },<br> abstract = {Scholars increasingly recognize the existence of voice habit, wherein employees speak up automatically without considering relevant situational factors, being able to control their impulse to voice, and exerting effort in deciding whether to voice. However, a lack of theory testing and an absence of a psychometrically valid measure have called into question its theoretical usefulness as well as its construct validity. Moreover, contrary to Lam et al.'s (2018) theorizing on the interpersonal costs and intrapersonal benefits of voice habit, research on the reticence bias suggests the opposite: Habitual voicers may gain interpersonal benefits by experiencing higher supervisor liking, but they may also suffer intrapersonal costs by experiencing voice regret. Integrating these divergent insights with theorizing on voice habit, we predict that voice habit may elicit supervisor liking when supervisors perceive habitual voicers as having higher prosocial motives or behavioral integrity, even though habitual voicers may experience regret in work units with a weaker voice climate. Results from a multiwave, multisource field study with 435 employees and 135 supervisors using a 12-item validated scale of voice habit support our hypotheses. Our work provides a direct test and extension of the recently proposed theorizing on voice habit and introduces a psychometrically valid measure for future research use. Our findings also empirically support the dual nature of voice habit, highlighting both its potential functional interpersonal outcomes in relation to supervisors and its potential dysfunctional intrapersonal outcomes for habitual voicers. (PsycInfo Database Record (c) 2025 APA, all rights reserved).},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08 </p> <p class="ESP-citation-author"> Zulhairy-Liong NA, Edgar S, Ellis M, et al (2025) </p> <p class="ESP-citation-title"> <b>Novel and rare variants in amyotrophic lateral sclerosis genes identified in Malaysian patients.</b> </p> <p class="ESP-citation-data"> <i>Amyotrophic lateral sclerosis & frontotemporal degeneration</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> There is limited information on the genetic architecture of amyotrophic lateral sclerosis (ALS) in Southeast Asian populations. To address this knowledge gap, we performed 1) SOD1 (exon 1-4), FUS (exon 13-15), TARDBP (exon 6) and ATXN2 repeat expansion screening in 201 multi-ethnic Malaysian (Malay, Chinese, Indian and others) ALS patients, 2) C9orf72 repeat expansion testing in 179 subset patients, and 3) a panel of 61 ALS-associated genes screening in 112 subset cases using either whole genome (n = 21) or exome (n = 91) sequencing datasets. Among the patients, the observed mutational frequencies in key ALS genes were: SOD1 3.0% (6/201), C9orf72 2.2% (4/179), ATXN2 2.0% (4/201), FUS 1.5% (3/201), and TARDBP 1.5% (3/201). Of the 112 cases that underwent WGS/WES, 6.3% (7/112) comprised of pathogenic and likely pathogenic variants in FIG4 (p.Lys657Serfs*2), FUS (p.Arg485Profs*32), TARDBP (p.Ile383del), NEK1 (p.Ile633Asnfs*28), GRN (c.599-1G > C), CYP27A1 (p.Met1Thr) and SPAST (p.Glu449Gly). Additionally, 42.9% (48/112) had at least one variant of uncertain significance (VUS) in 34 genes. Notably, in the 24 genes classified as 'definitive' by the ClinGen ALS Spectrum Disorders Gene Curation Expert Panel, five patients (4.5%, 5/112) harbored more than one likely pathogenic variant and/or VUS. However, burden analysis revealed no significant differences in clinical characteristics between patients with varying numbers of variants. Our findings highlight the utility of next-generation sequencing in elucidating the genetic basis of ALS in Malaysian and Southeast Asian ethnic groups, including the identification of several novel variants of clinical interest as well as increasing diagnostic yield up to 47.7%. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41359433</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1080/21678421.2025.2582832"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41359433%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41359433"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41359433"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Novel+and+rare+variants+in+amyotrophic+lateral+sclerosis+genes+identified+in+Malaysian+patients."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-7" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-7'); showBlock('bibtex-hide-2025-12-09_01-35-11-7'); hideBlock('bibtex-show-2025-12-09_01-35-11-7'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-7" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-7'); hideBlock('bibtex-hide-2025-12-09_01-35-11-7'); showBlock('bibtex-show-2025-12-09_01-35-11-7');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-7" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41359433,<br> year = {2025},<br> author = {Zulhairy-Liong, NA and Edgar, S and Ellis, M and Zhu, D and Lai, K and Capelle, DP and Sabirin, S and Pek, EW and Nair, P and Ang, CM and Kennerson, ML and Shahrizaila, N and Ahmad-Annuar, A},<br> title = {Novel and rare variants in amyotrophic lateral sclerosis genes identified in Malaysian patients.},<br> journal = {Amyotrophic lateral sclerosis & frontotemporal degeneration},<br> volume = {},<br> number = {},<br> pages = {1-10},<br> doi = {10.1080/21678421.2025.2582832},<br> pmid = {41359433},<br> issn = {2167-9223},<br> abstract = {There is limited information on the genetic architecture of amyotrophic lateral sclerosis (ALS) in Southeast Asian populations. To address this knowledge gap, we performed 1) SOD1 (exon 1-4), FUS (exon 13-15), TARDBP (exon 6) and ATXN2 repeat expansion screening in 201 multi-ethnic Malaysian (Malay, Chinese, Indian and others) ALS patients, 2) C9orf72 repeat expansion testing in 179 subset patients, and 3) a panel of 61 ALS-associated genes screening in 112 subset cases using either whole genome (n = 21) or exome (n = 91) sequencing datasets. Among the patients, the observed mutational frequencies in key ALS genes were: SOD1 3.0% (6/201), C9orf72 2.2% (4/179), ATXN2 2.0% (4/201), FUS 1.5% (3/201), and TARDBP 1.5% (3/201). Of the 112 cases that underwent WGS/WES, 6.3% (7/112) comprised of pathogenic and likely pathogenic variants in FIG4 (p.Lys657Serfs*2), FUS (p.Arg485Profs*32), TARDBP (p.Ile383del), NEK1 (p.Ile633Asnfs*28), GRN (c.599-1G > C), CYP27A1 (p.Met1Thr) and SPAST (p.Glu449Gly). Additionally, 42.9% (48/112) had at least one variant of uncertain significance (VUS) in 34 genes. Notably, in the 24 genes classified as 'definitive' by the ClinGen ALS Spectrum Disorders Gene Curation Expert Panel, five patients (4.5%, 5/112) harbored more than one likely pathogenic variant and/or VUS. However, burden analysis revealed no significant differences in clinical characteristics between patients with varying numbers of variants. Our findings highlight the utility of next-generation sequencing in elucidating the genetic basis of ALS in Malaysian and Southeast Asian ethnic groups, including the identification of several novel variants of clinical interest as well as increasing diagnostic yield up to 47.7%.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08 </p> <p class="ESP-citation-author"> Guerra-Hernández J, Mauro-Gutiérrez F, Rodríguez-Puerta F, et al (2025) </p> <p class="ESP-citation-title"> <b>Scaling and sampling dependencies of forest canopy height mapping towards jurisdictional biomass reporting using airborne LiDAR and small-area estimation.</b> </p> <p class="ESP-citation-data"> <i>Carbon balance and management</i> pii:10.1186/s13021-025-00370-9 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Consolidated airborne laser scanning (ALS) programs, satellite imagery and spaceborne structural measurements have enabled major advances in canopy height mapping that translate towards the forest carbon biomass arena. However, we must carefully evaluate the cost of using fine-grained canopy height products to predict biomass under calibration models scoped at the scale of inventory plots. In this study, we estimated biomass using field plots and ALS metrics before predicting biomass over a jurisdiction of ~ 15,500 km[2] in Spain using 10 m, 25 m, 44 m, and 100 m as prediction scales. We altered the scale of ALS-based biomass predictors in 10 sub-jurisdictions intensively surveyed by the Spanish National Forest Inventory (NFI) before estimating mean and total biomass using three options: (i) traditional NFI design-based (DB) estimation, (ii) a model-based (MB) approach using scale-varying canopy height metrics from ALS and NFI plots, and (iii) an small-area estimation (SAE) implemntation designed for sub-jurisdictional domains. Higher uncertainties - relative standard errors (SE) - were found for DB, particularly at sub-jurisdictional and stratum levels. We observed a consistent increase in uncertainty for MB estimation from the finest 10 m scale up to 100 m. In MB estimation, the maximum relative bias reached 11% for 10-m predictions compared to the baseline estimate at the NFI sampling native resolution. The bias associated with the prediction scale ranged from + 5% (25 m) to -8% (100 m). The mean biomass estimates for SAE generally ranged between DB and MB but at lower uncertainty to the former, especially as the NFI sampling becomes scarcer and not enough for solid inference of biomass mean. The SEA statistics helped to disentangle biomass comparisons between ALS-based inference and the traditional NFI estimation that do not incorporate remote sensing data. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41359202</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1186/s13021-025-00370-9"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41359202%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41359202"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41359202"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Scaling+and+sampling+dependencies+of+forest+canopy+height+mapping+towards+jurisdictional+biomass+reporting+using+airborne+LiDAR+and+small-area+estimation."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-8" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-8'); showBlock('bibtex-hide-2025-12-09_01-35-11-8'); hideBlock('bibtex-show-2025-12-09_01-35-11-8'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-8" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-8'); hideBlock('bibtex-hide-2025-12-09_01-35-11-8'); showBlock('bibtex-show-2025-12-09_01-35-11-8');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-8" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41359202,<br> year = {2025},<br> author = {Guerra-Hernández, J and Mauro-Gutiérrez, F and Rodríguez-Puerta, F and Pascual, A},<br> title = {Scaling and sampling dependencies of forest canopy height mapping towards jurisdictional biomass reporting using airborne LiDAR and small-area estimation.},<br> journal = {Carbon balance and management},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1186/s13021-025-00370-9},<br> pmid = {41359202},<br> issn = {1750-0680},<br> support = {2023.15225.TENURE.008//Fundação para a Ciência e a Tecnologia/ ; PID2022-140104OA-I00//Spanish Ministry of Science and Innovation/ ; },<br> abstract = {Consolidated airborne laser scanning (ALS) programs, satellite imagery and spaceborne structural measurements have enabled major advances in canopy height mapping that translate towards the forest carbon biomass arena. However, we must carefully evaluate the cost of using fine-grained canopy height products to predict biomass under calibration models scoped at the scale of inventory plots. In this study, we estimated biomass using field plots and ALS metrics before predicting biomass over a jurisdiction of ~ 15,500 km[2] in Spain using 10 m, 25 m, 44 m, and 100 m as prediction scales. We altered the scale of ALS-based biomass predictors in 10 sub-jurisdictions intensively surveyed by the Spanish National Forest Inventory (NFI) before estimating mean and total biomass using three options: (i) traditional NFI design-based (DB) estimation, (ii) a model-based (MB) approach using scale-varying canopy height metrics from ALS and NFI plots, and (iii) an small-area estimation (SAE) implemntation designed for sub-jurisdictional domains. Higher uncertainties - relative standard errors (SE) - were found for DB, particularly at sub-jurisdictional and stratum levels. We observed a consistent increase in uncertainty for MB estimation from the finest 10 m scale up to 100 m. In MB estimation, the maximum relative bias reached 11% for 10-m predictions compared to the baseline estimate at the NFI sampling native resolution. The bias associated with the prediction scale ranged from + 5% (25 m) to -8% (100 m). The mean biomass estimates for SAE generally ranged between DB and MB but at lower uncertainty to the former, especially as the NFI sampling becomes scarcer and not enough for solid inference of biomass mean. The SEA statistics helped to disentangle biomass comparisons between ALS-based inference and the traditional NFI estimation that do not incorporate remote sensing data.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08 </p> <p class="ESP-citation-author"> Gondim FAA, Fernandes JMA, Dutra Junior AM, et al (2025) </p> <p class="ESP-citation-title"> <b>Four families with slowly progressive ALS due to p.Val120Leu SOD1 variant in Northeast Brazil.</b> </p> <p class="ESP-citation-data"> <i>Amyotrophic lateral sclerosis & frontotemporal degeneration</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Objective: SOD1 mutations are the second most prevalent variants in amyotrophic lateral sclerosis (ALS). Epidemiological data about SOD1 mutations are scarce in Brazil. Here, we report the clinical and genetic findings of four Brazilian families with p.Val120Leu SOD1 variant. Methods: This study is part of an epidemiological study of the prevalence of ALS conducted in the State of Ceará, Brazil. We reviewed the medical records of families with p.Val120Leu (c.358G > C, exon 5) SOD1 variant seen at the Walter Cantídio University Hospital, Federal University of Ceará, Brazil. Results: We identified 15 patients from 4 families with p.Val120Leu SOD1 variant among 251 ALS patients. Of these, six were personally examined and had ALS confirmed and five had confirmatory genetic testing (four homozygous and one heterozygous). C9orf72 testing was normal in the heterozygous patient. In two families, three older heterozygous patients (genetically tested) had no signs or symptoms of ALS. The mean age of symptom onset was 46.7 ± 13.4 years. Features of ALS in the four families were very similar, with prolonged disease duration and upper and lower motor neuron involvement, fulfilling the Revised El Escorial, Awaji, and Gold Coast diagnostic criteria. All examined living patients had limb onset and a few bulbar symptoms. Conclusion: p.Val120Leu SOD1 variant leads to slowly progressive ALS with incomplete penetrance. Our findings are similar to a previous report of ALS due to p.Asp90Ala SOD1 variant. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41359166</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1080/21678421.2025.2597943"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41359166%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41359166"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41359166"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Four+families+with+slowly+progressive+ALS+due+to+p.Val120Leu+SOD1+variant+in+Northeast+Brazil."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-9" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-9'); showBlock('bibtex-hide-2025-12-09_01-35-11-9'); hideBlock('bibtex-show-2025-12-09_01-35-11-9'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-9" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-9'); hideBlock('bibtex-hide-2025-12-09_01-35-11-9'); showBlock('bibtex-show-2025-12-09_01-35-11-9');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-9" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41359166,<br> year = {2025},<br> author = {Gondim, FAA and Fernandes, JMA and Dutra Junior, AM and Thomas, FP},<br> title = {Four families with slowly progressive ALS due to p.Val120Leu SOD1 variant in Northeast Brazil.},<br> journal = {Amyotrophic lateral sclerosis & frontotemporal degeneration},<br> volume = {},<br> number = {},<br> pages = {1-5},<br> doi = {10.1080/21678421.2025.2597943},<br> pmid = {41359166},<br> issn = {2167-9223},<br> abstract = {Objective: SOD1 mutations are the second most prevalent variants in amyotrophic lateral sclerosis (ALS). Epidemiological data about SOD1 mutations are scarce in Brazil. Here, we report the clinical and genetic findings of four Brazilian families with p.Val120Leu SOD1 variant. Methods: This study is part of an epidemiological study of the prevalence of ALS conducted in the State of Ceará, Brazil. We reviewed the medical records of families with p.Val120Leu (c.358G > C, exon 5) SOD1 variant seen at the Walter Cantídio University Hospital, Federal University of Ceará, Brazil. Results: We identified 15 patients from 4 families with p.Val120Leu SOD1 variant among 251 ALS patients. Of these, six were personally examined and had ALS confirmed and five had confirmatory genetic testing (four homozygous and one heterozygous). C9orf72 testing was normal in the heterozygous patient. In two families, three older heterozygous patients (genetically tested) had no signs or symptoms of ALS. The mean age of symptom onset was 46.7 ± 13.4 years. Features of ALS in the four families were very similar, with prolonged disease duration and upper and lower motor neuron involvement, fulfilling the Revised El Escorial, Awaji, and Gold Coast diagnostic criteria. All examined living patients had limb onset and a few bulbar symptoms. Conclusion: p.Val120Leu SOD1 variant leads to slowly progressive ALS with incomplete penetrance. Our findings are similar to a previous report of ALS due to p.Asp90Ala SOD1 variant.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08<br>CmpDate: 2025-12-08 </p> <p class="ESP-citation-author"> Liu HR, JL Weng (2025) </p> <p class="ESP-citation-title"> <b>Interpreting fractional flow reserve-guided percutaneous coronary intervention vs coronary artery bypass grafting outcomes.</b> </p> <p class="ESP-citation-data"> <i>World journal of cardiology</i>, <b>17(11):</b>113225. </p> <p class="ESP-citation-abstract"> Kataveni et al's meta-analysis offers an important contemporary synthesis of randomized evidence comparing fractional flow reserve-guided percutaneous coronary intervention and coronary artery bypass grafting (CABG) in multivessel coronary artery disease (CAD). The pooled analysis found no significant difference in all-cause mortality or stroke, yet CABG was superior in reducing myocardial infarction, major adverse cardiac events, and repeat revascularization. These results confirm CABG's durability even in the era of physiological lesion assessment and second-generation drug-eluting stents. From a traditional Chinese medicine (TCM) perspective, multivessel CAD corresponds to syndromes such as "heart vessel obstruction" and "Qi and blood stagnation", in which local blockage is compounded by systemic imbalance. While revascularization addresses the structural impediment to blood flow, TCM approaches, including herbal medicine, acupuncture, and lifestyle therapy, aim to improve microcirculation, reduce inflammation, and support recovery, potentially mitigating recurrent ischemic events. This commentary argues that future research should integrate optimal revascularization strategies with rigorously evaluated TCM interventions to address both the anatomical and systemic dimensions of CAD and improve long-term patient outcomes. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41356587</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41356587%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41356587"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41356587"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Interpreting+fractional+flow+reserve-guided+percutaneous+coronary+intervention+vs+coronary+artery+bypass+grafting+outcomes."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-10" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-10'); showBlock('bibtex-hide-2025-12-09_01-35-11-10'); hideBlock('bibtex-show-2025-12-09_01-35-11-10'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-10" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-10'); hideBlock('bibtex-hide-2025-12-09_01-35-11-10'); showBlock('bibtex-show-2025-12-09_01-35-11-10');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-10" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41356587,<br> year = {2025},<br> author = {Liu, HR and Weng, JL},<br> title = {Interpreting fractional flow reserve-guided percutaneous coronary intervention vs coronary artery bypass grafting outcomes.},<br> journal = {World journal of cardiology},<br> volume = {17},<br> number = {11},<br> pages = {113225},<br> pmid = {41356587},<br> issn = {1949-8462},<br> abstract = {Kataveni et al's meta-analysis offers an important contemporary synthesis of randomized evidence comparing fractional flow reserve-guided percutaneous coronary intervention and coronary artery bypass grafting (CABG) in multivessel coronary artery disease (CAD). The pooled analysis found no significant difference in all-cause mortality or stroke, yet CABG was superior in reducing myocardial infarction, major adverse cardiac events, and repeat revascularization. These results confirm CABG's durability even in the era of physiological lesion assessment and second-generation drug-eluting stents. From a traditional Chinese medicine (TCM) perspective, multivessel CAD corresponds to syndromes such as "heart vessel obstruction" and "Qi and blood stagnation", in which local blockage is compounded by systemic imbalance. While revascularization addresses the structural impediment to blood flow, TCM approaches, including herbal medicine, acupuncture, and lifestyle therapy, aim to improve microcirculation, reduce inflammation, and support recovery, potentially mitigating recurrent ischemic events. This commentary argues that future research should integrate optimal revascularization strategies with rigorously evaluated TCM interventions to address both the anatomical and systemic dimensions of CAD and improve long-term patient outcomes.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08<br>CmpDate: 2025-12-08 </p> <p class="ESP-citation-author"> Seyam MK, Shaik RA, Miraj M, et al (2025) </p> <p class="ESP-citation-title"> <b>Effect of mobile phone applications on medication adherence among patients with coronary artery diseases: A scoping review.</b> </p> <p class="ESP-citation-data"> <i>World journal of cardiology</i>, <b>17(11):</b>114140. </p> <p class="ESP-citation-abstract"> Patients with cardiovascular disease rely on medication to achieve favorable long-term clinical results. Poor adherence has been linked to a relative increase in mortality of 50%-80% as well as higher health care costs. This scoping review thus aimed to explore the evidence of the effects of mobile health care apps on medication adherence in patients with cardiovascular diseases. A comprehensive data search and extraction was done in line with the updated Preferred Reporting Items for Systematic Reviews and Meta-Analyses Extension for Scoping Reviews checklist. A total of 10 studies were included for the review. The mean pooled improvement in adherence was found to be 18% and the most effective tool was the digital therapeutics app discussed in Li et al's study. Smartphones and apps enhance coronary artery disease management by promoting medication compliance. Challenges include data security and smartphone usage among the elderly. Tailored apps or voice assistants offer potential solutions. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41356579</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41356579%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41356579"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41356579"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Effect+of+mobile+phone+applications+on+medication+adherence+among+patients+with+coronary+artery+diseases:+A+scoping+review."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-11" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-11'); showBlock('bibtex-hide-2025-12-09_01-35-11-11'); hideBlock('bibtex-show-2025-12-09_01-35-11-11'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-11" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-11'); hideBlock('bibtex-hide-2025-12-09_01-35-11-11'); showBlock('bibtex-show-2025-12-09_01-35-11-11');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-11" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41356579,<br> year = {2025},<br> author = {Seyam, MK and Shaik, RA and Miraj, M and Alzahrani, NS and Shaik, AR and Ajmera, P and Kalra, S and Miraj, SA and Shawky, GM and Nurani, KM and A, P},<br> title = {Effect of mobile phone applications on medication adherence among patients with coronary artery diseases: A scoping review.},<br> journal = {World journal of cardiology},<br> volume = {17},<br> number = {11},<br> pages = {114140},<br> pmid = {41356579},<br> issn = {1949-8462},<br> abstract = {Patients with cardiovascular disease rely on medication to achieve favorable long-term clinical results. Poor adherence has been linked to a relative increase in mortality of 50%-80% as well as higher health care costs. This scoping review thus aimed to explore the evidence of the effects of mobile health care apps on medication adherence in patients with cardiovascular diseases. A comprehensive data search and extraction was done in line with the updated Preferred Reporting Items for Systematic Reviews and Meta-Analyses Extension for Scoping Reviews checklist. A total of 10 studies were included for the review. The mean pooled improvement in adherence was found to be 18% and the most effective tool was the digital therapeutics app discussed in Li et al's study. Smartphones and apps enhance coronary artery disease management by promoting medication compliance. Challenges include data security and smartphone usage among the elderly. Tailored apps or voice assistants offer potential solutions.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08<br>CmpDate: 2025-12-08 </p> <p class="ESP-citation-author"> Pal P, Carrer M, Weiss L, et al (2025) </p> <p class="ESP-citation-title"> <b>Antisense oligonucleotides targeting valosin-containing protein ameliorate muscle pathology and molecular defects in cell and mouse models of multisystem proteinopathy.</b> </p> <p class="ESP-citation-data"> <i>Clinical and translational medicine</i>, <b>15(12):</b>e70530. </p> <p class="ESP-citation-abstract"> BACKGROUND: Valosin-containing protein (VCP) related disease, also known as multisystem proteinopathy 1 (MSP1), is an autosomal dominant disease caused by gain-of-function pathogenic variants of the VCP gene. The disease presents with variable combinations of inclusion body myopathy, early-onset Paget's disease of bone, frontotemporal dementia and may also overlap with familial amyotrophic lateral sclerosis. There is currently no treatment for this progressive disease associated with early demise resulting from proximal limb girdle and respiratory muscle weakness. We hypothesise that regulating VCP hyperactivity to normal levels can reduce the disease pathology.<br><br>MAIN TOPICS COVERED: In this study, we assessed the effect of antisense oligonucleotides (ASOs) specifically targeting the human VCP gene in the patient (R155H) iPSC-derived skeletal muscle progenitor cells (SMPCs). ASOs were well tolerated up to a concentration of 5 µM and significantly reduced VCP protein expression in the SMPCs by 48% (95% CI [39-56]). We also treated the transgenic mouse model of VCP disease with the overexpressed humanised VCP severe A232E pathogenic gene variant (VCP A232E mice) with weekly subcutaneous ASO injections starting from 6 months of age for 3 months. In the skeletal muscle of transgenic mice, ASOs resulted in 30% (95% CI [27-32]) knockdown of VCP protein compared with control ASO. The ASO-mediated reduction of VCP expression in muscle tissue was associated with improvement in autophagy flux and reduction in TAR DNA binding protein 43 (TDP-43) expression, hallmarks of VCP related MSP1. In addition, ASO-treated VCP A232E mice showed improvements in functional tests of muscle strength, such as rotarod and inverted screen test compared with mice treated with control ASO.<br><br>CONCLUSIONS: These results suggest that targeting VCP could be beneficial in preventing the progression of the VCP myopathy and hold promise for the treatment of patients with VCP related MSP1.<br><br>KEY POINTS: VCP multisystem proteinopathy 1 is caused by gain-of-function pathogenic variants of the VCP gene. VCP targeting ASOs were well tolerated and significantly reduced VCP, TAR DNA binding protein 43 (TDP 43), and autophagy protein expression in the (R155H) iPSC-derived skeletal muscle progenitor cells (SMPCs). The ASOs reduced VCP, TDP-43, and autophagy flux expression, and improved functional tests of muscle strength in the humanized VCP A232E mice. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41355735</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1002/ctm2.70530"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41355735%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41355735"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41355735"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Antisense+oligonucleotides+targeting+valosin-containing+protein+ameliorate+muscle+pathology+and+molecular+defects+in+cell+and+mouse+models+of+multisystem+proteinopathy."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-12" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-12'); showBlock('bibtex-hide-2025-12-09_01-35-11-12'); hideBlock('bibtex-show-2025-12-09_01-35-11-12'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-12" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-12'); hideBlock('bibtex-hide-2025-12-09_01-35-11-12'); showBlock('bibtex-show-2025-12-09_01-35-11-12');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-12" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41355735,<br> year = {2025},<br> author = {Pal, P and Carrer, M and Weiss, L and Jaime, OG and Cheng, C and Shmara, A and Boock, V and Bosch, D and Youssef, M and Fazeli, Y and Afetian, M and Grossman, TR and Hicks, MR and Jafar-Nejad, P and Kimonis, V},<br> title = {Antisense oligonucleotides targeting valosin-containing protein ameliorate muscle pathology and molecular defects in cell and mouse models of multisystem proteinopathy.},<br> journal = {Clinical and translational medicine},<br> volume = {15},<br> number = {12},<br> pages = {e70530},<br> doi = {10.1002/ctm2.70530},<br> pmid = {41355735},<br> issn = {2001-1326},<br> support = {1297770//Muscular Dystrophy Association/ ; //Cure VCP Disease Inc. Ionis Pharmaceuticals, Inc./ ; },<br> mesh = {Animals ; *Valosin Containing Protein/genetics/metabolism/antagonists & inhibitors ; Mice ; *Oligonucleotides, Antisense/pharmacology/therapeutic use ; Disease Models, Animal ; Humans ; Muscle, Skeletal/pathology ; Muscular Dystrophies, Limb-Girdle/genetics ; Frontotemporal Dementia/genetics ; Myositis, Inclusion Body ; Osteitis Deformans/genetics ; },<br> abstract = {BACKGROUND: Valosin-containing protein (VCP) related disease, also known as multisystem proteinopathy 1 (MSP1), is an autosomal dominant disease caused by gain-of-function pathogenic variants of the VCP gene. The disease presents with variable combinations of inclusion body myopathy, early-onset Paget's disease of bone, frontotemporal dementia and may also overlap with familial amyotrophic lateral sclerosis. There is currently no treatment for this progressive disease associated with early demise resulting from proximal limb girdle and respiratory muscle weakness. We hypothesise that regulating VCP hyperactivity to normal levels can reduce the disease pathology.<br><br>MAIN TOPICS COVERED: In this study, we assessed the effect of antisense oligonucleotides (ASOs) specifically targeting the human VCP gene in the patient (R155H) iPSC-derived skeletal muscle progenitor cells (SMPCs). ASOs were well tolerated up to a concentration of 5 µM and significantly reduced VCP protein expression in the SMPCs by 48% (95% CI [39-56]). We also treated the transgenic mouse model of VCP disease with the overexpressed humanised VCP severe A232E pathogenic gene variant (VCP A232E mice) with weekly subcutaneous ASO injections starting from 6 months of age for 3 months. In the skeletal muscle of transgenic mice, ASOs resulted in 30% (95% CI [27-32]) knockdown of VCP protein compared with control ASO. The ASO-mediated reduction of VCP expression in muscle tissue was associated with improvement in autophagy flux and reduction in TAR DNA binding protein 43 (TDP-43) expression, hallmarks of VCP related MSP1. In addition, ASO-treated VCP A232E mice showed improvements in functional tests of muscle strength, such as rotarod and inverted screen test compared with mice treated with control ASO.<br><br>CONCLUSIONS: These results suggest that targeting VCP could be beneficial in preventing the progression of the VCP myopathy and hold promise for the treatment of patients with VCP related MSP1.<br><br>KEY POINTS: VCP multisystem proteinopathy 1 is caused by gain-of-function pathogenic variants of the VCP gene. VCP targeting ASOs were well tolerated and significantly reduced VCP, TAR DNA binding protein 43 (TDP 43), and autophagy protein expression in the (R155H) iPSC-derived skeletal muscle progenitor cells (SMPCs). The ASOs reduced VCP, TDP-43, and autophagy flux expression, and improved functional tests of muscle strength in the humanized VCP A232E mice.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-09_01-35-11-12" class="mesh-switch" onClick="showBlock('mesh-2025-12-09_01-35-11-12'); showBlock('mesh-hide-2025-12-09_01-35-11-12'); hideBlock('mesh-show-2025-12-09_01-35-11-12'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-09_01-35-11-12" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-09_01-35-11-12'); hideBlock('mesh-hide-2025-12-09_01-35-11-12'); showBlock('mesh-show-2025-12-09_01-35-11-12');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-09_01-35-11-12" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">Animals</span><br> <span class="mesh-term">*Valosin Containing Protein/genetics/metabolism/antagonists & inhibitors</span><br> <span class="mesh-term">Mice</span><br> <span class="mesh-term">*Oligonucleotides, Antisense/pharmacology/therapeutic use</span><br> <span class="mesh-term">Disease Models, Animal</span><br> <span class="mesh-term">Humans</span><br> <span class="mesh-term">Muscle, Skeletal/pathology</span><br> <span class="mesh-term">Muscular Dystrophies, Limb-Girdle/genetics</span><br> <span class="mesh-term">Frontotemporal Dementia/genetics</span><br> <span class="mesh-term">Myositis, Inclusion Body</span><br> <span class="mesh-term">Osteitis Deformans/genetics</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08<br>CmpDate: 2025-12-08 </p> <p class="ESP-citation-author"> Lağap AC, M Harma (2026) </p> <p class="ESP-citation-title"> <b>Does Your Love Lift Me Higher? A Direct Replication of the Energising Role of Secure Relationships.</b> </p> <p class="ESP-citation-data"> <i>International journal of psychology : Journal international de psychologie</i>, <b>61(1):</b>e70144. </p> <p class="ESP-citation-abstract"> Previous work has revealed that priming people with significant others increases feelings of security and energy, and in turn, boosts exploration motivations. In this preregistered study, we directly replicated Luke et al.'s (2012) Study 2 (N = 281). We found similar results as the replicated study regarding increased security feelings and exploration motivations on the self-report measures after the priming. However, we did not find any support for the increased energy feelings after the attachment security priming. In addition, contrary to Luke et al.'s (2012) results, energy feelings did not mediate the relationship between security priming and exploration motivations. A discussion of null findings, along with the limitations of self-reports and potential misinterpretation of the mediational analyses, follows. We also discuss possible future implications of the current findings. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41355171</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1002/ijop.70144"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41355171%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41355171"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41355171"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Does+Your+Love+Lift+Me+Higher?+A+Direct+Replication+of+the+Energising+Role+of+Secure+Relationships."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-13" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-13'); showBlock('bibtex-hide-2025-12-09_01-35-11-13'); hideBlock('bibtex-show-2025-12-09_01-35-11-13'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-13" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-13'); hideBlock('bibtex-hide-2025-12-09_01-35-11-13'); showBlock('bibtex-show-2025-12-09_01-35-11-13');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-13" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41355171,<br> year = {2026},<br> author = {Lağap, AC and Harma, M},<br> title = {Does Your Love Lift Me Higher? A Direct Replication of the Energising Role of Secure Relationships.},<br> journal = {International journal of psychology : Journal international de psychologie},<br> volume = {61},<br> number = {1},<br> pages = {e70144},<br> doi = {10.1002/ijop.70144},<br> pmid = {41355171},<br> issn = {1464-066X},<br> mesh = {Humans ; Female ; Male ; *Motivation ; *Love ; Adult ; *Object Attachment ; Young Adult ; *Interpersonal Relations ; Adolescent ; },<br> abstract = {Previous work has revealed that priming people with significant others increases feelings of security and energy, and in turn, boosts exploration motivations. In this preregistered study, we directly replicated Luke et al.'s (2012) Study 2 (N = 281). We found similar results as the replicated study regarding increased security feelings and exploration motivations on the self-report measures after the priming. However, we did not find any support for the increased energy feelings after the attachment security priming. In addition, contrary to Luke et al.'s (2012) results, energy feelings did not mediate the relationship between security priming and exploration motivations. A discussion of null findings, along with the limitations of self-reports and potential misinterpretation of the mediational analyses, follows. We also discuss possible future implications of the current findings.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-09_01-35-11-13" class="mesh-switch" onClick="showBlock('mesh-2025-12-09_01-35-11-13'); showBlock('mesh-hide-2025-12-09_01-35-11-13'); hideBlock('mesh-show-2025-12-09_01-35-11-13'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-09_01-35-11-13" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-09_01-35-11-13'); hideBlock('mesh-hide-2025-12-09_01-35-11-13'); showBlock('mesh-show-2025-12-09_01-35-11-13');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-09_01-35-11-13" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">Humans</span><br> <span class="mesh-term">Female</span><br> <span class="mesh-term">Male</span><br> <span class="mesh-term">*Motivation</span><br> <span class="mesh-term">*Love</span><br> <span class="mesh-term">Adult</span><br> <span class="mesh-term">*Object Attachment</span><br> <span class="mesh-term">Young Adult</span><br> <span class="mesh-term">*Interpersonal Relations</span><br> <span class="mesh-term">Adolescent</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-08 </p> <p class="ESP-citation-author"> Cline LL, Biggs R, Butler JS, et al (2025) </p> <p class="ESP-citation-title"> <b>A Systems-Approach to Addressing the US Rural Veterinarian Shortage Through Collaborative Problem-Solving Training and Education.</b> </p> <p class="ESP-citation-data"> <i>New directions for student leadership</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> The shortage of rural veterinarians in the United States poses significant challenges to food security, public health, and the agricultural economy. This article explores two systems-based training strategies to address this issue through two case studies: the Integrated Beef Cattle Program (IBCP) in the College of Veterinary Medicine (CVM) at Oklahoma State University (OSU) and the development of adaptive leadership and collaborative problem-solving capacity among rural veterinarians at Pat Dye Clinics. Grounded in Heifetz et al.'s (2009) adaptive leadership framework and Kirton's (2011) Adaption-Innovation Theory (A-I theory), these initiatives demonstrate how leadership development and cognitive diversity can enhance recruitment, retention, and resilience in rural veterinary practice. Findings suggest that integrating leadership learning in veterinary education and professional development can serve as a critical leverage point for systemic change. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41355168</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1002/yd.70028"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41355168%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41355168"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41355168"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=A+Systems-Approach+to+Addressing+the+US+Rural+Veterinarian+Shortage+Through+Collaborative+Problem-Solving+Training+and+Education."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-09_01-35-11-14" class="bibtex-switch" onClick="showBlock('citation-2025-12-09_01-35-11-14'); showBlock('bibtex-hide-2025-12-09_01-35-11-14'); hideBlock('bibtex-show-2025-12-09_01-35-11-14'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-09_01-35-11-14" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-09_01-35-11-14'); hideBlock('bibtex-hide-2025-12-09_01-35-11-14'); showBlock('bibtex-show-2025-12-09_01-35-11-14');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-09_01-35-11-14" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41355168,<br> year = {2025},<br> author = {Cline, LL and Biggs, R and Butler, JS and Nichols, C},<br> title = {A Systems-Approach to Addressing the US Rural Veterinarian Shortage Through Collaborative Problem-Solving Training and Education.},<br> journal = {New directions for student leadership},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1002/yd.70028},<br> pmid = {41355168},<br> issn = {2373-3357},<br> abstract = {The shortage of rural veterinarians in the United States poses significant challenges to food security, public health, and the agricultural economy. This article explores two systems-based training strategies to address this issue through two case studies: the Integrated Beef Cattle Program (IBCP) in the College of Veterinary Medicine (CVM) at Oklahoma State University (OSU) and the development of adaptive leadership and collaborative problem-solving capacity among rural veterinarians at Pat Dye Clinics. Grounded in Heifetz et al.'s (2009) adaptive leadership framework and Kirton's (2011) Adaption-Innovation Theory (A-I theory), these initiatives demonstrate how leadership development and cognitive diversity can enhance recruitment, retention, and resilience in rural veterinary practice. Findings suggest that integrating leadership learning in veterinary education and professional development can serve as a critical leverage point for systemic change.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-07 </p> <p class="ESP-citation-author"> Tahedl M, Kleinerova J, McKenna MC, et al (2025) </p> <p class="ESP-citation-title"> <b>Putative mitochondrial components of frontotemporal lobar degeneration: topological correlations between mitochondrial density and atrophy in FTLD/FTD phenotypes.</b> </p> <p class="ESP-citation-data"> <i>Journal of neurology</i>, <b>273(1):</b>11. </p> <p class="ESP-citation-abstract"> BACKGROUND: Frontotemporal lobar degeneration encompasses a spectrum of clinically, radiologically, and molecularly heterogeneous conditions. Clinical phenotypes are defined based on predominant neuropsychological manifestations and the selective involvement of specific brain regions determines the core symptoms, disability profiles, and care needs. While the unique anatomical patterns of cortical and subcortical degeneration along the FTLD/FTD spectrum are well recognised, the molecular basis of this selective vulnerability remains unclear.<br><br>METHODS: A large prospective neuroimaging study has been undertaken to explore topological associations between phenotype-specific atrophy patterns and physiological mitochondrial density along the FTLD/FTD spectrum. Patients with behavioural variant FTD (bvFTD), nonfluent variant primary progressive aphasia (nfvPPA), semantic variant primary progressive aphasia (svPPA), C9orf72-positive ALS-FTD, C9orf72-negative ALS-FTD, and a cohort of healthy controls (HC) were included. FTD phenotypes were first contrasted to healthy controls and the resulting voxelwise maps were correlated to physiological mitochondrial density maps.<br><br>RESULTS: We have identified voxelwise associations between atrophic change and physiological mitochondrial density. The resulting correlation coefficients over the entire GM mask revealed weak topological associations with r = 0.217 in C9NEG ALS-FTD, r = 0.251 in C9POS ALS-FTD, r = 0.213 in bvFTD, r = 0.182 in nfvPPA, and r = 0.292 in svPPA at p FWE < 0.001. Our region-of-interest analyses revealed moderate-to-strong regional associations between mitochondrial density and focal degenerative change with r values above 0.65 in multiple brain regions in all five FTD subgroups. Brain regions exhibiting the most significant associations between volume loss and mitochondrial density in each FTD subgroup are the very regions that define the core clinical manifestations of the given phenotype.<br><br>DISCUSSION: Cortical and subcortical brain regions with high physiological mitochondrial density are particularly vulnerable to neurodegenerative change in FTD. While these anatomical associations do not indicate direct causation, mitochondrial metabolism may represent an important component in the cascade of focal degeneration. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41354869</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41354869%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41354869"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41354869"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Putative+mitochondrial+components+of+frontotemporal+lobar+degeneration:+topological+correlations+between+mitochondrial+density+and+atrophy+in+FTLD/FTD+phenotypes."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-08_01-34-20-1" class="bibtex-switch" onClick="showBlock('citation-2025-12-08_01-34-20-1'); showBlock('bibtex-hide-2025-12-08_01-34-20-1'); hideBlock('bibtex-show-2025-12-08_01-34-20-1'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-08_01-34-20-1" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-08_01-34-20-1'); hideBlock('bibtex-hide-2025-12-08_01-34-20-1'); showBlock('bibtex-show-2025-12-08_01-34-20-1');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-08_01-34-20-1" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41354869,<br> year = {2025},<br> author = {Tahedl, M and Kleinerova, J and McKenna, MC and Siah, WF and Hardiman, O and Hengeveld, JC and Doherty, MA and McLaughlin, RL and Tan, EL and Hutchinson, S and Bede, P},<br> title = {Putative mitochondrial components of frontotemporal lobar degeneration: topological correlations between mitochondrial density and atrophy in FTLD/FTD phenotypes.},<br> journal = {Journal of neurology},<br> volume = {273},<br> number = {1},<br> pages = {11},<br> pmid = {41354869},<br> issn = {1432-1459},<br> support = {(HRB EIA-2017-019/HRBI_/Health Research Board/Ireland ; JPND-Cofund-2-2019-1/HRBI_/Health Research Board/Ireland ; SFI SP20/SP/8953/SFI_/Science Foundation Ireland/Ireland ; },<br> abstract = {BACKGROUND: Frontotemporal lobar degeneration encompasses a spectrum of clinically, radiologically, and molecularly heterogeneous conditions. Clinical phenotypes are defined based on predominant neuropsychological manifestations and the selective involvement of specific brain regions determines the core symptoms, disability profiles, and care needs. While the unique anatomical patterns of cortical and subcortical degeneration along the FTLD/FTD spectrum are well recognised, the molecular basis of this selective vulnerability remains unclear.<br><br>METHODS: A large prospective neuroimaging study has been undertaken to explore topological associations between phenotype-specific atrophy patterns and physiological mitochondrial density along the FTLD/FTD spectrum. Patients with behavioural variant FTD (bvFTD), nonfluent variant primary progressive aphasia (nfvPPA), semantic variant primary progressive aphasia (svPPA), C9orf72-positive ALS-FTD, C9orf72-negative ALS-FTD, and a cohort of healthy controls (HC) were included. FTD phenotypes were first contrasted to healthy controls and the resulting voxelwise maps were correlated to physiological mitochondrial density maps.<br><br>RESULTS: We have identified voxelwise associations between atrophic change and physiological mitochondrial density. The resulting correlation coefficients over the entire GM mask revealed weak topological associations with r = 0.217 in C9NEG ALS-FTD, r = 0.251 in C9POS ALS-FTD, r = 0.213 in bvFTD, r = 0.182 in nfvPPA, and r = 0.292 in svPPA at p FWE < 0.001. Our region-of-interest analyses revealed moderate-to-strong regional associations between mitochondrial density and focal degenerative change with r values above 0.65 in multiple brain regions in all five FTD subgroups. Brain regions exhibiting the most significant associations between volume loss and mitochondrial density in each FTD subgroup are the very regions that define the core clinical manifestations of the given phenotype.<br><br>DISCUSSION: Cortical and subcortical brain regions with high physiological mitochondrial density are particularly vulnerable to neurodegenerative change in FTD. While these anatomical associations do not indicate direct causation, mitochondrial metabolism may represent an important component in the cascade of focal degeneration.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-07 </p> <p class="ESP-citation-author"> Oraha J, Wagner R, Bergh S, et al (2025) </p> <p class="ESP-citation-title"> <b>Differential effects of overexpression of mutant huntingtin and TDP-43 in agouti-related protein neurons in the arcuate nucleus of the hypothalamus in mice.</b> </p> <p class="ESP-citation-data"> <i>Acta neuropathologica communications</i> pii:10.1186/s40478-025-02201-x [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> The spectrum of frontotemporal dementia/amyotrophic lateral sclerosis (FTD/ALS) and Huntington disease (HD) are fatal neurodegenerative disorders with no major disease-modifying therapies. Recent work has shown that the hallmark pathological proteins TAR DNA binding protein of 43 kDa (TDP-43) in FTD/ALS and mutant huntingtin (mHTT) in HD may be interlinked. Furthermore, these disorders share early features of altered metabolism and psychiatric symptoms that have been suggested to arise from pathology in the hypothalamus, an important brain region involved in the regulation of metabolism and emotions. Agouti-related protein (AgRP)-expressing neurons localised exclusively to the arcuate nucleus (ARC) of the hypothalamus are key modulators of body weight regulation and food seeking behaviour, and they have recently been implicated in anxiety- and anhedonic-like processes. The aim of this study was to investigate the effects of overexpression of TDP-43 or mHTT in AgRP-expressing neurons on metabolic, behavioral and neuropathological features in mice. Flex-switch adeno associated viral vectors expressing human wild-type TDP-43, mHTT or green fluorescent protein to serve as a control, were injected into male and female AgRP-Cre mice to target the ARC using stereotactic surgery. We demonstrate targeted overexpression of transgenes including formation of mHTT inclusions in the ARC of the hypothalamus. Overexpression of mHTT led to a significant reduction in AgRP fibres in the hypothalamus 21 weeks post-injection, as well as higher food consumption in female mice. Overexpression of TDP-43 did not lead to the development of any metabolic or behavioral phenotypes in the mice. Our data suggest that AgRP neurons in the ARC are protected from the toxic effects resulting from overexpression of TDP-43 whereas they display some sensitivity to mHTT overexpression resulting in mHTT inclusion formation, reduction in AgRP fibers and sex-specific effects on food consumption. Taken together, other hypothalamic neuronal populations may be more important for the development of non-motor features resulting from overexpression of TDP-43 and mHTT in the hypothalamus. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41354852</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1186/s40478-025-02201-x"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41354852%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41354852"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41354852"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Differential+effects+of+overexpression+of+mutant+huntingtin+and+TDP-43+in+agouti-related+protein+neurons+in+the+arcuate+nucleus+of+the+hypothalamus+in+mice."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-08_01-34-20-2" class="bibtex-switch" onClick="showBlock('citation-2025-12-08_01-34-20-2'); showBlock('bibtex-hide-2025-12-08_01-34-20-2'); hideBlock('bibtex-show-2025-12-08_01-34-20-2'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-08_01-34-20-2" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-08_01-34-20-2'); hideBlock('bibtex-hide-2025-12-08_01-34-20-2'); showBlock('bibtex-show-2025-12-08_01-34-20-2');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-08_01-34-20-2" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41354852,<br> year = {2025},<br> author = {Oraha, J and Wagner, R and Bergh, S and Lee, NJ and Kirik, D and Petersén, Å},<br> title = {Differential effects of overexpression of mutant huntingtin and TDP-43 in agouti-related protein neurons in the arcuate nucleus of the hypothalamus in mice.},<br> journal = {Acta neuropathologica communications},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1186/s40478-025-02201-x},<br> pmid = {41354852},<br> issn = {2051-5960},<br> abstract = {The spectrum of frontotemporal dementia/amyotrophic lateral sclerosis (FTD/ALS) and Huntington disease (HD) are fatal neurodegenerative disorders with no major disease-modifying therapies. Recent work has shown that the hallmark pathological proteins TAR DNA binding protein of 43 kDa (TDP-43) in FTD/ALS and mutant huntingtin (mHTT) in HD may be interlinked. Furthermore, these disorders share early features of altered metabolism and psychiatric symptoms that have been suggested to arise from pathology in the hypothalamus, an important brain region involved in the regulation of metabolism and emotions. Agouti-related protein (AgRP)-expressing neurons localised exclusively to the arcuate nucleus (ARC) of the hypothalamus are key modulators of body weight regulation and food seeking behaviour, and they have recently been implicated in anxiety- and anhedonic-like processes. The aim of this study was to investigate the effects of overexpression of TDP-43 or mHTT in AgRP-expressing neurons on metabolic, behavioral and neuropathological features in mice. Flex-switch adeno associated viral vectors expressing human wild-type TDP-43, mHTT or green fluorescent protein to serve as a control, were injected into male and female AgRP-Cre mice to target the ARC using stereotactic surgery. We demonstrate targeted overexpression of transgenes including formation of mHTT inclusions in the ARC of the hypothalamus. Overexpression of mHTT led to a significant reduction in AgRP fibres in the hypothalamus 21 weeks post-injection, as well as higher food consumption in female mice. Overexpression of TDP-43 did not lead to the development of any metabolic or behavioral phenotypes in the mice. Our data suggest that AgRP neurons in the ARC are protected from the toxic effects resulting from overexpression of TDP-43 whereas they display some sensitivity to mHTT overexpression resulting in mHTT inclusion formation, reduction in AgRP fibers and sex-specific effects on food consumption. Taken together, other hypothalamic neuronal populations may be more important for the development of non-motor features resulting from overexpression of TDP-43 and mHTT in the hypothalamus.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-07 </p> <p class="ESP-citation-author"> Mouhi S, Pio T, J Andersen (2025) </p> <p class="ESP-citation-title"> <b>Revisiting oligodendrocytes in amyotrophic lateral sclerosis using human multicellular stem cell models.</b> </p> <p class="ESP-citation-data"> <i>Trends in cell biology</i> pii:S0962-8924(25)00251-X [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease characterized by progressive motor neuron degeneration, muscle wasting, and eventual paralysis. The clinical and genetic complexity along with rapid disease progression has hindered efforts to model the disease and develop effective treatments. Rodent models and human tissue studies point to dysfunction in oligodendrocyte lineage cells early in disease, although the underlying mechanisms remain unclear. Advances in stem cell research have introduced novel platforms to investigate cells in the oligodendrocyte lineage and their interactions with neurons and other glial cells in complex human genetic backgrounds. This Review summarizes the literature implicating oligodendrocyte lineage cells in ALS and discusses both the potential and limitations of in vitro-derived cultures to shed light on their vulnerabilities and cellular interactions. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41354564</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.tcb.2025.11.003"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41354564%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41354564"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41354564"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Revisiting+oligodendrocytes+in+amyotrophic+lateral+sclerosis+using+human+multicellular+stem+cell+models."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-08_01-34-20-3" class="bibtex-switch" onClick="showBlock('citation-2025-12-08_01-34-20-3'); showBlock('bibtex-hide-2025-12-08_01-34-20-3'); hideBlock('bibtex-show-2025-12-08_01-34-20-3'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-08_01-34-20-3" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-08_01-34-20-3'); hideBlock('bibtex-hide-2025-12-08_01-34-20-3'); showBlock('bibtex-show-2025-12-08_01-34-20-3');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-08_01-34-20-3" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41354564,<br> year = {2025},<br> author = {Mouhi, S and Pio, T and Andersen, J},<br> title = {Revisiting oligodendrocytes in amyotrophic lateral sclerosis using human multicellular stem cell models.},<br> journal = {Trends in cell biology},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1016/j.tcb.2025.11.003},<br> pmid = {41354564},<br> issn = {1879-3088},<br> abstract = {Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease characterized by progressive motor neuron degeneration, muscle wasting, and eventual paralysis. The clinical and genetic complexity along with rapid disease progression has hindered efforts to model the disease and develop effective treatments. Rodent models and human tissue studies point to dysfunction in oligodendrocyte lineage cells early in disease, although the underlying mechanisms remain unclear. Advances in stem cell research have introduced novel platforms to investigate cells in the oligodendrocyte lineage and their interactions with neurons and other glial cells in complex human genetic backgrounds. This Review summarizes the literature implicating oligodendrocyte lineage cells in ALS and discusses both the potential and limitations of in vitro-derived cultures to shed light on their vulnerabilities and cellular interactions.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-07 </p> <p class="ESP-citation-author"> Araújo L, Chianca T, Persaud C, et al (2025) </p> <p class="ESP-citation-title"> <b>Respiratory Strength Training for Patients with Amyotrophic Lateral Sclerosis: A Meta-analysis of Randomized Controlled Trials.</b> </p> <p class="ESP-citation-data"> <i>Respiratory medicine</i> pii:S0954-6111(25)00623-7 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> INTRODUCTION: Respiratory strength training (RST) has been considered as a possible add-on treatment for amyotrophic lateral sclerosis (ALS). However, the benefits of RST are still controversial. We performed a meta-analysis of randomized controlled trials (RCTs) on the efficacy of RST in patients with ALS.<br><br>METHODS: PubMed, Embase and Cochrane Central were searched for RCTs comparing the use of RST with sham therapy or minimal device load in patients with ALS. The main outcomes were maximal expiratory pressure (MEP), maximal inspiratory pressure (MIP) and the ALS functioning rating scale (ALSFRS-R) score. Statistical analysis was performed using R software and heterogeneity was assessed with I[2] statistics.<br><br>RESULTS: Four RCTs were included with a total of 138 patients. RST was used to treat 69 (50%) patients. The mean age was 60.2 ± 10.4 years, with 82 (62.3%) male patients. Follow-up ranged from 2 to 8 months. Subgroup analysis of expiratory muscle training protocols showed a statistically significant improvement in MEP (MD 20.22 cmH2O; 95% CI 2.66-37.77; p=0.04). In overall analyses, there was no difference between groups regarding MEP (MD 9.40 cmH2O; 95% CI -11.57-30.37; p=0.25), MIP (MD 3.26 cmH2O; 95% CI -9.23-15.75; p=0.38), FVC (MD 4.05 %predicted; 95% CI -0.91-9.01; p=0.08) and ALSFRS-R score (MD 0.01 points; 95% CI -0.29-0.32; p=0.85).<br><br>CONCLUSION: In this meta-analysis of RCTs including patients with ALS, expiratory muscle training was associated with increased MEP compared with sham or minimal load. However, no statistically significant associations were found for overall RST in MIP, FVC, MEP, and ALSFRS-R. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41354105</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.rmed.2025.108560"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41354105%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41354105"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41354105"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Respiratory+Strength+Training+for+Patients+with+Amyotrophic+Lateral+Sclerosis:+A+Meta-analysis+of+Randomized+Controlled+Trials."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-08_01-34-20-4" class="bibtex-switch" onClick="showBlock('citation-2025-12-08_01-34-20-4'); showBlock('bibtex-hide-2025-12-08_01-34-20-4'); hideBlock('bibtex-show-2025-12-08_01-34-20-4'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-08_01-34-20-4" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-08_01-34-20-4'); hideBlock('bibtex-hide-2025-12-08_01-34-20-4'); showBlock('bibtex-show-2025-12-08_01-34-20-4');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-08_01-34-20-4" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41354105,<br> year = {2025},<br> author = {Araújo, L and Chianca, T and Persaud, C and Hartung, P and Soares, Y and Almirón, G and João, R},<br> title = {Respiratory Strength Training for Patients with Amyotrophic Lateral Sclerosis: A Meta-analysis of Randomized Controlled Trials.},<br> journal = {Respiratory medicine},<br> volume = {},<br> number = {},<br> pages = {108560},<br> doi = {10.1016/j.rmed.2025.108560},<br> pmid = {41354105},<br> issn = {1532-3064},<br> abstract = {INTRODUCTION: Respiratory strength training (RST) has been considered as a possible add-on treatment for amyotrophic lateral sclerosis (ALS). However, the benefits of RST are still controversial. We performed a meta-analysis of randomized controlled trials (RCTs) on the efficacy of RST in patients with ALS.<br><br>METHODS: PubMed, Embase and Cochrane Central were searched for RCTs comparing the use of RST with sham therapy or minimal device load in patients with ALS. The main outcomes were maximal expiratory pressure (MEP), maximal inspiratory pressure (MIP) and the ALS functioning rating scale (ALSFRS-R) score. Statistical analysis was performed using R software and heterogeneity was assessed with I[2] statistics.<br><br>RESULTS: Four RCTs were included with a total of 138 patients. RST was used to treat 69 (50%) patients. The mean age was 60.2 ± 10.4 years, with 82 (62.3%) male patients. Follow-up ranged from 2 to 8 months. Subgroup analysis of expiratory muscle training protocols showed a statistically significant improvement in MEP (MD 20.22 cmH2O; 95% CI 2.66-37.77; p=0.04). In overall analyses, there was no difference between groups regarding MEP (MD 9.40 cmH2O; 95% CI -11.57-30.37; p=0.25), MIP (MD 3.26 cmH2O; 95% CI -9.23-15.75; p=0.38), FVC (MD 4.05 %predicted; 95% CI -0.91-9.01; p=0.08) and ALSFRS-R score (MD 0.01 points; 95% CI -0.29-0.32; p=0.85).<br><br>CONCLUSION: In this meta-analysis of RCTs including patients with ALS, expiratory muscle training was associated with increased MEP compared with sham or minimal load. However, no statistically significant associations were found for overall RST in MIP, FVC, MEP, and ALSFRS-R.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-07 </p> <p class="ESP-citation-author"> Van Beckhoven D, Serrien B, Demeester R, et al (2025) </p> <p class="ESP-citation-title"> <b>Reply to Satapathy et al.'s comment on "Dual cross-sectional and longitudinal perspective on the continuum of HIV care to disentangle natural epidemic evolution from real progress, Belgium 2014-2022".</b> </p> <p class="ESP-citation-data"> </p> <p class="ESP-citation-abstract"> </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41353609</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1111/hiv.70163"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41353609%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41353609"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41353609"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Reply+to+Satapathy+et+al.'s+comment+on+"Dual+cross-sectional+and+longitudinal+perspective+on+the+continuum+of+HIV+care+to+disentangle+natural+epidemic+evolution+from+real+progress,+Belgium+2014-2022"."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-08_01-34-20-5" class="bibtex-switch" onClick="showBlock('citation-2025-12-08_01-34-20-5'); showBlock('bibtex-hide-2025-12-08_01-34-20-5'); hideBlock('bibtex-show-2025-12-08_01-34-20-5'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-08_01-34-20-5" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-08_01-34-20-5'); hideBlock('bibtex-hide-2025-12-08_01-34-20-5'); showBlock('bibtex-show-2025-12-08_01-34-20-5');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-08_01-34-20-5" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41353609,<br> year = {2025},<br> author = {Van Beckhoven, D and Serrien, B and Demeester, R and Van Praet, J and Messiaen, P and Darcis, G and Henrard, S and De Munter, P and Libois, A and Deblonde, J},<br> title = {Reply to Satapathy et al.'s comment on "Dual cross-sectional and longitudinal perspective on the continuum of HIV care to disentangle natural epidemic evolution from real progress, Belgium 2014-2022".},<br> journal = {HIV medicine},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1111/hiv.70163},<br> pmid = {41353609},<br> issn = {1468-1293},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-06<br>CmpDate: 2025-12-06 </p> <p class="ESP-citation-author"> Queral-Beltran A, Lacorte S, R Tauler (2026) </p> <p class="ESP-citation-title"> <b>GC-orbitrap-HRMS with ROIMCR and MSident targeted and non-targeted analysis of persistent organic pollutants in fish-based certified reference materials.</b> </p> <p class="ESP-citation-data"> <i>Analytica chimica acta</i>, <b>1383:</b>344892. </p> <p class="ESP-citation-abstract"> The use of fish-based reference materials allows the validation of analytical methods used for the monitoring of persistent organic pollutants (POPs) in environmental samples. Thus, the aim of this work has been to apply and validate the Regions of Interest Multivariate Curve Resolution (ROIMCR) procedure, in a first instance, to quantify POPs using two fish-based certified reference materials (CRM) provided by the Institute of Reference Materials (IRMM); and also to identify, with the MSident program, the presence of more POPs in the same samples. Samples were extracted and analyzed by gas chromatography coupled to an Orbitrap mass spectrometer (GC-HRMS). A targeted analysis was performed to quantify the four certified POPs: hexachlorobenzene (HCBz) and hexachlorobutadiene (HCBu) in ERM®-CE100 and pentachlorobenzene (PeCB) and α, β, γ, and δ-hexachlorocyclohexane (HCH) in ERM®-CE103. Quantitative estimations obtained with ROIMCR method were compared with those obtained using the instrument vendor's Xcalibur software. Two tailed t-tests were performed and good agreement was observed between the two approaches and with the certified values. A non-targeted analysis approach was then performed to characterize other unknown POPs present in the samples. Data processed with the ROIMCR method in the non-targeted acquisition mode was complemented with the MSident chemical identification procedure, which allowed the annotation of several polycyclic aromatic hydrocarbons (PAHs), organochlorine pesticides (OCPs), phthalates, and polychlorinated biphenyls (PCBs). The presence of some of these compounds was confirmed with the analysis of validation standard mixture samples containing 43 POPs. The ROIMCR methodology herein proposed allows, in a first instance, the quantitative analysis of multiple unknown contaminants present in the analyzed fish-based certified samples by using GC-HRMS data and also, combined with the MSident program, enables a qualitative analysis which could provide a comprehensive assessment of POP pollution patterns in fish or other environmental samples. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41352930</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.aca.2025.344892"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41352930%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41352930"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41352930"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=GC-orbitrap-HRMS+with+ROIMCR+and+MSident+targeted+and+non-targeted+analysis+of+persistent+organic+pollutants+in+fish-based+certified+reference+materials."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-07_01-34-32-1" class="bibtex-switch" onClick="showBlock('citation-2025-12-07_01-34-32-1'); showBlock('bibtex-hide-2025-12-07_01-34-32-1'); hideBlock('bibtex-show-2025-12-07_01-34-32-1'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-07_01-34-32-1" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-07_01-34-32-1'); hideBlock('bibtex-hide-2025-12-07_01-34-32-1'); showBlock('bibtex-show-2025-12-07_01-34-32-1');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-07_01-34-32-1" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41352930,<br> year = {2026},<br> author = {Queral-Beltran, A and Lacorte, S and Tauler, R},<br> title = {GC-orbitrap-HRMS with ROIMCR and MSident targeted and non-targeted analysis of persistent organic pollutants in fish-based certified reference materials.},<br> journal = {Analytica chimica acta},<br> volume = {1383},<br> number = {},<br> pages = {344892},<br> doi = {10.1016/j.aca.2025.344892},<br> pmid = {41352930},<br> issn = {1873-4324},<br> mesh = {Animals ; *Gas Chromatography-Mass Spectrometry/standards/methods ; *Fishes ; *Persistent Organic Pollutants ; Reference Standards ; },<br> abstract = {The use of fish-based reference materials allows the validation of analytical methods used for the monitoring of persistent organic pollutants (POPs) in environmental samples. Thus, the aim of this work has been to apply and validate the Regions of Interest Multivariate Curve Resolution (ROIMCR) procedure, in a first instance, to quantify POPs using two fish-based certified reference materials (CRM) provided by the Institute of Reference Materials (IRMM); and also to identify, with the MSident program, the presence of more POPs in the same samples. Samples were extracted and analyzed by gas chromatography coupled to an Orbitrap mass spectrometer (GC-HRMS). A targeted analysis was performed to quantify the four certified POPs: hexachlorobenzene (HCBz) and hexachlorobutadiene (HCBu) in ERM®-CE100 and pentachlorobenzene (PeCB) and α, β, γ, and δ-hexachlorocyclohexane (HCH) in ERM®-CE103. Quantitative estimations obtained with ROIMCR method were compared with those obtained using the instrument vendor's Xcalibur software. Two tailed t-tests were performed and good agreement was observed between the two approaches and with the certified values. A non-targeted analysis approach was then performed to characterize other unknown POPs present in the samples. Data processed with the ROIMCR method in the non-targeted acquisition mode was complemented with the MSident chemical identification procedure, which allowed the annotation of several polycyclic aromatic hydrocarbons (PAHs), organochlorine pesticides (OCPs), phthalates, and polychlorinated biphenyls (PCBs). The presence of some of these compounds was confirmed with the analysis of validation standard mixture samples containing 43 POPs. The ROIMCR methodology herein proposed allows, in a first instance, the quantitative analysis of multiple unknown contaminants present in the analyzed fish-based certified samples by using GC-HRMS data and also, combined with the MSident program, enables a qualitative analysis which could provide a comprehensive assessment of POP pollution patterns in fish or other environmental samples.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-07_01-34-32-1" class="mesh-switch" onClick="showBlock('mesh-2025-12-07_01-34-32-1'); showBlock('mesh-hide-2025-12-07_01-34-32-1'); hideBlock('mesh-show-2025-12-07_01-34-32-1'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-07_01-34-32-1" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-07_01-34-32-1'); hideBlock('mesh-hide-2025-12-07_01-34-32-1'); showBlock('mesh-show-2025-12-07_01-34-32-1');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-07_01-34-32-1" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">Animals</span><br> <span class="mesh-term">*Gas Chromatography-Mass Spectrometry/standards/methods</span><br> <span class="mesh-term">*Fishes</span><br> <span class="mesh-term">*Persistent Organic Pollutants</span><br> <span class="mesh-term">Reference Standards</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-06 </p> <p class="ESP-citation-author"> Doche I, JR Vaz de Faria (2025) </p> <p class="ESP-citation-title"> <b>Response to Maas et al., "Response to Vaz de Faria et al's "Forehead atrophy in frontal fibrosing alopecia: An ultrasonographic and histopathological study of 10 patients".</b> </p> <p class="ESP-citation-data"> </p> <p class="ESP-citation-abstract"> </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41352717</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.jaad.2025.12.015"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41352717%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41352717"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41352717"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Response+to+Maas+et+al.,+"Response+to+Vaz+de+Faria+et+al's+"Forehead+atrophy+in+frontal+fibrosing+alopecia:+An+ultrasonographic+and+histopathological+study+of+10+patients"."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-07_01-34-32-2" class="bibtex-switch" onClick="showBlock('citation-2025-12-07_01-34-32-2'); showBlock('bibtex-hide-2025-12-07_01-34-32-2'); hideBlock('bibtex-show-2025-12-07_01-34-32-2'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-07_01-34-32-2" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-07_01-34-32-2'); hideBlock('bibtex-hide-2025-12-07_01-34-32-2'); showBlock('bibtex-show-2025-12-07_01-34-32-2');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-07_01-34-32-2" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41352717,<br> year = {2025},<br> author = {Doche, I and Vaz de Faria, JR},<br> title = {Response to Maas et al., "Response to Vaz de Faria et al's "Forehead atrophy in frontal fibrosing alopecia: An ultrasonographic and histopathological study of 10 patients".},<br> journal = {Journal of the American Academy of Dermatology},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1016/j.jaad.2025.12.015},<br> pmid = {41352717},<br> issn = {1097-6787},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-06 </p> <p class="ESP-citation-author"> Maas D, Spindler A, Zappi I, et al (2025) </p> <p class="ESP-citation-title"> <b>Response to Vaz de Faria et al's ''Forehead atrophy in frontal fibrosing alopecia: An ultrasonographic and histopathological study of 10 patients".</b> </p> <p class="ESP-citation-data"> </p> <p class="ESP-citation-abstract"> </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41352714</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.jaad.2025.10.159"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41352714%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41352714"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41352714"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Response+to+Vaz+de+Faria+et+al's+''Forehead+atrophy+in+frontal+fibrosing+alopecia:+An+ultrasonographic+and+histopathological+study+of+10+patients"."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-07_01-34-32-3" class="bibtex-switch" onClick="showBlock('citation-2025-12-07_01-34-32-3'); showBlock('bibtex-hide-2025-12-07_01-34-32-3'); hideBlock('bibtex-show-2025-12-07_01-34-32-3'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-07_01-34-32-3" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-07_01-34-32-3'); hideBlock('bibtex-hide-2025-12-07_01-34-32-3'); showBlock('bibtex-show-2025-12-07_01-34-32-3');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-07_01-34-32-3" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41352714,<br> year = {2025},<br> author = {Maas, D and Spindler, A and Zappi, I and Shapiro, J and Lo Sicco, KI},<br> title = {Response to Vaz de Faria et al's ''Forehead atrophy in frontal fibrosing alopecia: An ultrasonographic and histopathological study of 10 patients".},<br> journal = {Journal of the American Academy of Dermatology},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1016/j.jaad.2025.10.159},<br> pmid = {41352714},<br> issn = {1097-6787},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-06 </p> <p class="ESP-citation-author"> Chikuchi R, Kato Y, Tomatsu A, et al (2025) </p> <p class="ESP-citation-title"> <b>The TDP-43[I383V] heterozygous mutation results in increased TDP-43 expression and altered neuronal activity in ALS patient-derived iPSC motor neurons.</b> </p> <p class="ESP-citation-data"> <i>Neuroscience research</i> pii:S0168-0102(25)00186-5 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> TAR-binding protein 43 (TDP-43) is a pathogenic RNA-binding protein associated with amyotrophic lateral sclerosis (ALS). To elucidate the pathogenesis of ALS, we generated induced pluripotent stem cells (iPSCs) from lymphoblastoid cell line (LCL) cells of an ALS patient with the TDP-43[I383V] heterozygous mutation. Furthermore, we generated isogenic wild-type iPSCs from wild-type LCL cells using scarless genome editing with CRISPR/Cas9. A modified iPSC-derived motor neuron culture method utilizing BrainPhys neuronal medium and rat astrocyte co-culture effectively promoted and maintained neuronal activity. Under these conditions, the TDP-43[I383V] heterozygous mutation resulted in increased TDP-43 protein expression through prolonged stabilization. Moreover, mutant iPSC-derived motor neurons showed increased numbers of pre-synapses and altered neuronal activity. These results suggest that the modified motor neuron culture method can help elucidate abnormalities in TDP-43 expression, synapse formation, and neuronal activity caused by the heterozygous TDP-43[I383V] mutation. The model developed in this study has the potential to facilitate the analysis of the early pathological phenotype of ALS. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41352688</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.neures.2025.105003"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41352688%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41352688"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41352688"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=The+TDP-43[I383V]+heterozygous+mutation+results+in+increased+TDP-43+expression+and+altered+neuronal+activity+in+ALS+patient-derived+iPSC+motor+neurons."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-07_01-34-32-4" class="bibtex-switch" onClick="showBlock('citation-2025-12-07_01-34-32-4'); showBlock('bibtex-hide-2025-12-07_01-34-32-4'); hideBlock('bibtex-show-2025-12-07_01-34-32-4'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-07_01-34-32-4" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-07_01-34-32-4'); hideBlock('bibtex-hide-2025-12-07_01-34-32-4'); showBlock('bibtex-show-2025-12-07_01-34-32-4');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-07_01-34-32-4" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41352688,<br> year = {2025},<br> author = {Chikuchi, R and Kato, Y and Tomatsu, A and Nishisaki, S and Kawakami, Y and Yoshimura, T and Li, J and Iguchi, Y and Onodera, K and Hashimoto, R and Aiba, I and Nakamura, R and Tohnai, G and Atsuta, N and Sobue, G and Okada, Y and Katsuno, M and Yokoi, S},<br> title = {The TDP-43[I383V] heterozygous mutation results in increased TDP-43 expression and altered neuronal activity in ALS patient-derived iPSC motor neurons.},<br> journal = {Neuroscience research},<br> volume = {},<br> number = {},<br> pages = {105003},<br> doi = {10.1016/j.neures.2025.105003},<br> pmid = {41352688},<br> issn = {1872-8111},<br> abstract = {TAR-binding protein 43 (TDP-43) is a pathogenic RNA-binding protein associated with amyotrophic lateral sclerosis (ALS). To elucidate the pathogenesis of ALS, we generated induced pluripotent stem cells (iPSCs) from lymphoblastoid cell line (LCL) cells of an ALS patient with the TDP-43[I383V] heterozygous mutation. Furthermore, we generated isogenic wild-type iPSCs from wild-type LCL cells using scarless genome editing with CRISPR/Cas9. A modified iPSC-derived motor neuron culture method utilizing BrainPhys neuronal medium and rat astrocyte co-culture effectively promoted and maintained neuronal activity. Under these conditions, the TDP-43[I383V] heterozygous mutation resulted in increased TDP-43 protein expression through prolonged stabilization. Moreover, mutant iPSC-derived motor neurons showed increased numbers of pre-synapses and altered neuronal activity. These results suggest that the modified motor neuron culture method can help elucidate abnormalities in TDP-43 expression, synapse formation, and neuronal activity caused by the heterozygous TDP-43[I383V] mutation. The model developed in this study has the potential to facilitate the analysis of the early pathological phenotype of ALS.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-06 </p> <p class="ESP-citation-author"> Geleta LA, Doyle C, Garton FC, et al (2025) </p> <p class="ESP-citation-title"> <b>The roles of human endogenous retrovirus in neurodegenerative diseases: A systematic review.</b> </p> <p class="ESP-citation-data"> <i>Brain, behavior, and immunity</i> pii:S0889-1591(25)00443-X [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> BACKGROUND: Human endogenous retroviruses (HERVs) constitute ∼8 % of the human genome, far exceeding the 2 % occupied by protein-coding genes. Although most HERV sequences are inactive, some HERV elements can be reactivated under certain conditions and may contribute to neurodegenerative diseases (NDDs). However, the findings vary across different HERV families, disease models, and detection methods. Here, we systematically review and synthesize the available evidence on the role of HERVs in human NDDs and reconcile inconsistencies in the literature.<br><br>METHODS: We systematically searched MEDLINE, EMBASE, Cochrane Library, PsycINFO, Scopus, Web of Science, CINAHL, and Emcare to identify relevant studies. Two independent reviewers screened studies, assessed quality, and extracted data. Qualitative synthesis was conducted for all included NDDs, specifically Alzheimer's disease (AD), amyotrophic lateral sclerosis (ALS), frontotemporal dementia (FTD), and Parkinson's disease (PD), and due to data availability, meta-analysis was used to assess the impact of HERVs antibodies on ALS only.<br><br>RESULTS: Twenty-six studies (N ranges: 6-485) met the inclusion criteria, with majority focusing on HERV-K and ALS. Across studies, the association between HERV expression and NDDs was inconsistent, particularly for ALS, PD, and FTD, whereas investigations in AD showed a more consistent upregulation of specific HERVs. Studies relying on polymerase chain reaction (PCR) (typically smaller) showed inconsistent associations (21 studies), while RNA sequencing studies reported consistent associations (9 studies). A preliminary meta-analysis revealed a fivefold increase [OR: 5.83; 95 % CI: 4.14, 8.18] in ALS risk among participants with positive HERV antibodies.<br><br>CONCLUSIONS: The inconsistencies in HERV involvement across NDDs highlight the need for further studies employing standardized methodologies. RNAseq findings on the association of HERVs expression on NDDs support the need for large-scale RNA sequencing studies (rather than small, PCR studies) and careful tissue selection to clarify HERVs' role in NDDs. The association of HERV-K antibodies with ALS risk and prognosis suggests a significant role in disease, which could help detect biomarkers and used as a target for treatment. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41352634</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.bbi.2025.106201"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41352634%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41352634"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41352634"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=The+roles+of+human+endogenous+retrovirus+in+neurodegenerative+diseases:+A+systematic+review."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-07_01-34-32-5" class="bibtex-switch" onClick="showBlock('citation-2025-12-07_01-34-32-5'); showBlock('bibtex-hide-2025-12-07_01-34-32-5'); hideBlock('bibtex-show-2025-12-07_01-34-32-5'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-07_01-34-32-5" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-07_01-34-32-5'); hideBlock('bibtex-hide-2025-12-07_01-34-32-5'); showBlock('bibtex-show-2025-12-07_01-34-32-5');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-07_01-34-32-5" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41352634,<br> year = {2025},<br> author = {Geleta, LA and Doyle, C and Garton, FC and Fowler, M and Carr, JM and Akkari, PA and McRae, AF and Rogers, ML and Madakkatel, I and Benyamin, B},<br> title = {The roles of human endogenous retrovirus in neurodegenerative diseases: A systematic review.},<br> journal = {Brain, behavior, and immunity},<br> volume = {},<br> number = {},<br> pages = {106201},<br> doi = {10.1016/j.bbi.2025.106201},<br> pmid = {41352634},<br> issn = {1090-2139},<br> abstract = {BACKGROUND: Human endogenous retroviruses (HERVs) constitute ∼8 % of the human genome, far exceeding the 2 % occupied by protein-coding genes. Although most HERV sequences are inactive, some HERV elements can be reactivated under certain conditions and may contribute to neurodegenerative diseases (NDDs). However, the findings vary across different HERV families, disease models, and detection methods. Here, we systematically review and synthesize the available evidence on the role of HERVs in human NDDs and reconcile inconsistencies in the literature.<br><br>METHODS: We systematically searched MEDLINE, EMBASE, Cochrane Library, PsycINFO, Scopus, Web of Science, CINAHL, and Emcare to identify relevant studies. Two independent reviewers screened studies, assessed quality, and extracted data. Qualitative synthesis was conducted for all included NDDs, specifically Alzheimer's disease (AD), amyotrophic lateral sclerosis (ALS), frontotemporal dementia (FTD), and Parkinson's disease (PD), and due to data availability, meta-analysis was used to assess the impact of HERVs antibodies on ALS only.<br><br>RESULTS: Twenty-six studies (N ranges: 6-485) met the inclusion criteria, with majority focusing on HERV-K and ALS. Across studies, the association between HERV expression and NDDs was inconsistent, particularly for ALS, PD, and FTD, whereas investigations in AD showed a more consistent upregulation of specific HERVs. Studies relying on polymerase chain reaction (PCR) (typically smaller) showed inconsistent associations (21 studies), while RNA sequencing studies reported consistent associations (9 studies). A preliminary meta-analysis revealed a fivefold increase [OR: 5.83; 95 % CI: 4.14, 8.18] in ALS risk among participants with positive HERV antibodies.<br><br>CONCLUSIONS: The inconsistencies in HERV involvement across NDDs highlight the need for further studies employing standardized methodologies. RNAseq findings on the association of HERVs expression on NDDs support the need for large-scale RNA sequencing studies (rather than small, PCR studies) and careful tissue selection to clarify HERVs' role in NDDs. The association of HERV-K antibodies with ALS risk and prognosis suggests a significant role in disease, which could help detect biomarkers and used as a target for treatment.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-06<br>CmpDate: 2025-12-06 </p> <p class="ESP-citation-author"> Amirian R, Merati A, Babamohamadi M, et al (2025) </p> <p class="ESP-citation-title"> <b>Navigating the Autophagy Maze: ATG and Their Impact on Neurodegenerative Diseases.</b> </p> <p class="ESP-citation-data"> <i>Molecular neurobiology</i>, <b>63(1):</b>260. </p> <p class="ESP-citation-abstract"> Autophagy, a tightly regulated process essential for maintaining cellular homeostasis, plays a critical role in the pathogenesis and progression of neurodegenerative diseases (NDs). These disorders-marked by diverse mechanisms and clinical heterogeneity-pose significant challenges in developing effective therapies. Central to the autophagic machinery are autophagy-related genes (ATGs), whose functions and variants are increasingly recognized as pivotal in modulating disease-specific pathways. This review explores the intricate roles of ATGs in NDs, emphasizing the need for a comprehensive understanding of molecular signaling networks, protein-protein interactions, and regulatory checkpoints that may serve as therapeutic targets. We highlight recent advancements in disease modeling, autophagy assays, and biomarker identification that facilitate the translation of ATG-related discoveries into clinical practice. Furthermore, we underscore the importance of interdisciplinary collaboration across academia, industry, clinical medicine, and regulatory bodies to harness the therapeutic potential of autophagy. This article aims to serve as a detailed roadmap for understanding the role of ATGs in NDs and to illuminate promising avenues for future research and therapeutic development. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41351663</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41351663%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41351663"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41351663"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Navigating+the+Autophagy+Maze:+ATG+and+Their+Impact+on+Neurodegenerative+Diseases."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-07_01-34-32-6" class="bibtex-switch" onClick="showBlock('citation-2025-12-07_01-34-32-6'); showBlock('bibtex-hide-2025-12-07_01-34-32-6'); hideBlock('bibtex-show-2025-12-07_01-34-32-6'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-07_01-34-32-6" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-07_01-34-32-6'); hideBlock('bibtex-hide-2025-12-07_01-34-32-6'); showBlock('bibtex-show-2025-12-07_01-34-32-6');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-07_01-34-32-6" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41351663,<br> year = {2025},<br> author = {Amirian, R and Merati, A and Babamohamadi, M and Mirahmadi, Y and Esfahani, ML and Rahmani, S and Izadi, Z and Rezazadeh, D},<br> title = {Navigating the Autophagy Maze: ATG and Their Impact on Neurodegenerative Diseases.},<br> journal = {Molecular neurobiology},<br> volume = {63},<br> number = {1},<br> pages = {260},<br> pmid = {41351663},<br> issn = {1559-1182},<br> mesh = {*Autophagy/genetics/physiology ; Humans ; *Neurodegenerative Diseases/genetics/metabolism/pathology ; Animals ; *Autophagy-Related Proteins/metabolism/genetics ; Signal Transduction ; },<br> abstract = {Autophagy, a tightly regulated process essential for maintaining cellular homeostasis, plays a critical role in the pathogenesis and progression of neurodegenerative diseases (NDs). These disorders-marked by diverse mechanisms and clinical heterogeneity-pose significant challenges in developing effective therapies. Central to the autophagic machinery are autophagy-related genes (ATGs), whose functions and variants are increasingly recognized as pivotal in modulating disease-specific pathways. This review explores the intricate roles of ATGs in NDs, emphasizing the need for a comprehensive understanding of molecular signaling networks, protein-protein interactions, and regulatory checkpoints that may serve as therapeutic targets. We highlight recent advancements in disease modeling, autophagy assays, and biomarker identification that facilitate the translation of ATG-related discoveries into clinical practice. Furthermore, we underscore the importance of interdisciplinary collaboration across academia, industry, clinical medicine, and regulatory bodies to harness the therapeutic potential of autophagy. This article aims to serve as a detailed roadmap for understanding the role of ATGs in NDs and to illuminate promising avenues for future research and therapeutic development.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-07_01-34-32-6" class="mesh-switch" onClick="showBlock('mesh-2025-12-07_01-34-32-6'); showBlock('mesh-hide-2025-12-07_01-34-32-6'); hideBlock('mesh-show-2025-12-07_01-34-32-6'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-07_01-34-32-6" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-07_01-34-32-6'); hideBlock('mesh-hide-2025-12-07_01-34-32-6'); showBlock('mesh-show-2025-12-07_01-34-32-6');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-07_01-34-32-6" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">*Autophagy/genetics/physiology</span><br> <span class="mesh-term">Humans</span><br> <span class="mesh-term">*Neurodegenerative Diseases/genetics/metabolism/pathology</span><br> <span class="mesh-term">Animals</span><br> <span class="mesh-term">*Autophagy-Related Proteins/metabolism/genetics</span><br> <span class="mesh-term">Signal Transduction</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> Nakamura R, Tohnai G, Atsuta N, et al (2025) </p> <p class="ESP-citation-title"> <b>A genome-wide association study identifies the GPM6A locus associated with age at onset in ALS.</b> </p> <p class="ESP-citation-data"> <i>Communications biology</i>, <b>8(1):</b>1720. </p> <p class="ESP-citation-abstract"> Amyotrophic lateral sclerosis (ALS) exhibits considerable clinical variability, such as differences in age at onset (AAO). Multiple factors, including genetic factors, may underlie this variability; however, the specific determinants remain unclear. To identify genes affecting AAO, we have conducted a genome-wide association study in Japanese patients with ALS (discovery cohort: n = 1808; replication cohort: n = 207). Here, we show that the minor A allele of rs113161727 at the ADAM29-GPM6A locus is associated with a younger AAO in the discovery cohort (effect, -4.27 years; p = 4.60 × 10[-8]); this finding has been confirmed in the replication cohort (p = 0.0068) and meta-analysis (p = 1.08 × 10[-9]). Among 65 ALS patients with a SOD1 mutation, the AAO has been found to be 10.2 years younger in those with the A allele than in those without it (p = 0.002). This variant correlates with GPM6A upregulation in iPSC-derived motor neurons, suggesting GPM6A as a candidate AAO modifier. Overall, our study highlights the impact of genetic modifiers on ALS heterogeneity and provides a potential target for delaying disease onset. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41350806</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41350806%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41350806"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41350806"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=A+genome-wide+association+study+identifies+the+GPM6A+locus+associated+with+age+at+onset+in+ALS."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-1" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-1'); showBlock('bibtex-hide-2025-12-06_01-35-24-1'); hideBlock('bibtex-show-2025-12-06_01-35-24-1'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-1" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-1'); hideBlock('bibtex-hide-2025-12-06_01-35-24-1'); showBlock('bibtex-show-2025-12-06_01-35-24-1');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-1" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41350806,<br> year = {2025},<br> author = {Nakamura, R and Tohnai, G and Atsuta, N and Matsuda, Y and Morimoto, S and Ito, D and Katsuno, M and Izumi, Y and Morita, M and Iwata, I and Yabe, I and Nakazato, T and Hattori, N and Hirayama, T and Kano, O and Tamura, A and Suzuki, N and Aoki, M and Shibuya, K and Kuwabara, S and Oda, M and Hashimoto, R and Aiba, I and Ishihara, T and Onodera, O and Yamashita, T and Ishiura, H and Bokuda, K and Shimizu, T and Ikeda, Y and Hasegawa, K and Tanaka, F and Yokota, T and Kanai, K and Noto, YI and Kaji, R and Watanabe, H and Konishi, T and Hasegawa, M and Fukaya, H and Niwa, JI and Doyu, M and Okada, Y and Nakamura, S and Ozawa, F and Okano, H and Nakatochi, M and Sobue, G and , },<br> title = {A genome-wide association study identifies the GPM6A locus associated with age at onset in ALS.},<br> journal = {Communications biology},<br> volume = {8},<br> number = {1},<br> pages = {1720},<br> pmid = {41350806},<br> issn = {2399-3642},<br> support = {23FC0201//Ministry of Health, Labour and Welfare (Ministry of Health, Labour and Welfare, Japan)/ ; JP23ek0109492, JP23ak0101111, JP23ak0101124, JP24wm0425009//Japan Agency for Medical Research and Development (AMED)/ ; JP24ak0101216, JP24ak0101222, JP25wn0625519, JP25ak0101216, JP25ak0101222, JP25ek0109617//Japan Agency for Medical Research and Development (AMED)/ ; JP23ek0109538//Japan Agency for Medical Research and Development (AMED)/ ; JP23bm1123046, JP23kk0305024, JP23bm1423002//Japan Agency for Medical Research and Development (AMED)/ ; JP24bm1423003//Japan Agency for Medical Research and Development (AMED)/ ; JP23bm1123046, JP23kk0305024, JP23bm1423002//Japan Agency for Medical Research and Development (AMED)/ ; JP19km0405216//Japan Agency for Medical Research and Development (AMED)/ ; 19K07973//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22K07359//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22K07509//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 19K06523//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22K07359//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 19K07973//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22K07509//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 23K06835//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22K07359//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22K07509//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 25K10781//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 21H05278//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 19K06523//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 23K06975//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22H02988//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 23K06975//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 23K24249//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 21H05278//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 16H06277//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22H04923//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; 22H03350//MEXT | Japan Society for the Promotion of Science (JSPS)/ ; },<br> abstract = {Amyotrophic lateral sclerosis (ALS) exhibits considerable clinical variability, such as differences in age at onset (AAO). Multiple factors, including genetic factors, may underlie this variability; however, the specific determinants remain unclear. To identify genes affecting AAO, we have conducted a genome-wide association study in Japanese patients with ALS (discovery cohort: n = 1808; replication cohort: n = 207). Here, we show that the minor A allele of rs113161727 at the ADAM29-GPM6A locus is associated with a younger AAO in the discovery cohort (effect, -4.27 years; p = 4.60 × 10[-8]); this finding has been confirmed in the replication cohort (p = 0.0068) and meta-analysis (p = 1.08 × 10[-9]). Among 65 ALS patients with a SOD1 mutation, the AAO has been found to be 10.2 years younger in those with the A allele than in those without it (p = 0.002). This variant correlates with GPM6A upregulation in iPSC-derived motor neurons, suggesting GPM6A as a candidate AAO modifier. Overall, our study highlights the impact of genetic modifiers on ALS heterogeneity and provides a potential target for delaying disease onset.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> Cheng S, Zhong C, Zhu H, et al (2025) </p> <p class="ESP-citation-title"> <b>Structural mechanisms and insights on multiple nanobodies binding diverse SOD1 epitopes.</b> </p> <p class="ESP-citation-data"> <i>Communications biology</i> pii:10.1038/s42003-025-09293-0 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Copper/zinc superoxide dismutase (SOD1) is a crucial metalloenzyme that mitigates oxidative stress by scavenging superoxide anion radicals. Mutations and aggregation of SOD1 are closely linked to the pathogenesis of amyotrophic lateral sclerosis (ALS). Targeting pathogenic SOD1 with nanobodies presents a promising therapeutic approach. We report the first high-resolution crystal structures of SOD1 in complex with three distinct nanobodies (Nb1, Nb2, and Nb3) and their multimeric assemblies (1:2 and 1:3 stoichiometries), revealing distinct binding epitopes primarily mediated by their complementarity determining regions (CDRs) through hydrogen bonds, salt bridges, and hydrophobic interactions. Structural and biophysical analyses using isothermal titration calorimetry (ITC) and fluorescence-detection size-exclusion chromatography (FSEC) demonstrated that all three nanobodies bind SOD1 simultaneously with nanomolar affinities (KD values ranging from 23.2 nM to 529 nM). Notably, engineered multimeric tandem nanobodies (Nb1-Nb2-Nb3) achieved higher affinity (KD = 4.39 nM) compared to single nanobodies, as validated by ITC. Characterization via dynamic light scattering (DLS) further revealed colloidal stability of SOD1-nanobody complexes. These results provide the first atomic-resolution insights into multi-nanobody targeting of SOD1 without steric interference, establishing a foundation for developing high-affinity tools to detect and manipulate SOD1 in ALS and related neurodegenerative diseases. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41350409</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1038/s42003-025-09293-0"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41350409%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41350409"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41350409"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Structural+mechanisms+and+insights+on+multiple+nanobodies+binding+diverse+SOD1+epitopes."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-2" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-2'); showBlock('bibtex-hide-2025-12-06_01-35-24-2'); hideBlock('bibtex-show-2025-12-06_01-35-24-2'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-2" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-2'); hideBlock('bibtex-hide-2025-12-06_01-35-24-2'); showBlock('bibtex-show-2025-12-06_01-35-24-2');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-2" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41350409,<br> year = {2025},<br> author = {Cheng, S and Zhong, C and Zhu, H and Mu, K and Jiang, H and Zhong, P and Ma, Z and Liu, X and Wang, Z and Liu, R and Ding, Y},<br> title = {Structural mechanisms and insights on multiple nanobodies binding diverse SOD1 epitopes.},<br> journal = {Communications biology},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1038/s42003-025-09293-0},<br> pmid = {41350409},<br> issn = {2399-3642},<br> abstract = {Copper/zinc superoxide dismutase (SOD1) is a crucial metalloenzyme that mitigates oxidative stress by scavenging superoxide anion radicals. Mutations and aggregation of SOD1 are closely linked to the pathogenesis of amyotrophic lateral sclerosis (ALS). Targeting pathogenic SOD1 with nanobodies presents a promising therapeutic approach. We report the first high-resolution crystal structures of SOD1 in complex with three distinct nanobodies (Nb1, Nb2, and Nb3) and their multimeric assemblies (1:2 and 1:3 stoichiometries), revealing distinct binding epitopes primarily mediated by their complementarity determining regions (CDRs) through hydrogen bonds, salt bridges, and hydrophobic interactions. Structural and biophysical analyses using isothermal titration calorimetry (ITC) and fluorescence-detection size-exclusion chromatography (FSEC) demonstrated that all three nanobodies bind SOD1 simultaneously with nanomolar affinities (KD values ranging from 23.2 nM to 529 nM). Notably, engineered multimeric tandem nanobodies (Nb1-Nb2-Nb3) achieved higher affinity (KD = 4.39 nM) compared to single nanobodies, as validated by ITC. Characterization via dynamic light scattering (DLS) further revealed colloidal stability of SOD1-nanobody complexes. These results provide the first atomic-resolution insights into multi-nanobody targeting of SOD1 without steric interference, establishing a foundation for developing high-affinity tools to detect and manipulate SOD1 in ALS and related neurodegenerative diseases.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05<br>CmpDate: 2025-12-05 </p> <p class="ESP-citation-author"> Williams SE, Luisi K, Liang C, et al (2025) </p> <p class="ESP-citation-title"> <b>Methodological Issues in Taquet et al.'s analysis preclude any conclusions regarding AS01 adjuvant's specific role in dementia prevention.</b> </p> <p class="ESP-citation-data"> <i>NPJ vaccines</i>, <b>10(1):</b>255. </p> <p class="ESP-citation-abstract"> Taquet et al. evaluated the impact of AS01-adjuvanted vaccines on subsequent dementia diagnosis[1]. The authors conclude: "No difference was observed between the two AS01-adjuvanted vaccines, suggesting that the AS01 adjuvant itself plays a direct role in lowering dementia risk". Although the study offers promising evidence, the inference regarding the role of AS01 adjuvant in dementia prevention is not convincingly supported by the presented data or other published literature[2]. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41350294</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41350294%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41350294"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41350294"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Methodological+Issues+in+Taquet+et+al.'s+analysis+preclude+any+conclusions+regarding+AS01+adjuvant's+specific+role+in+dementia+prevention."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-3" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-3'); showBlock('bibtex-hide-2025-12-06_01-35-24-3'); hideBlock('bibtex-show-2025-12-06_01-35-24-3'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-3" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-3'); hideBlock('bibtex-hide-2025-12-06_01-35-24-3'); showBlock('bibtex-show-2025-12-06_01-35-24-3');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-3" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41350294,<br> year = {2025},<br> author = {Williams, SE and Luisi, K and Liang, C and Cane, A and Begier, E},<br> title = {Methodological Issues in Taquet et al.'s analysis preclude any conclusions regarding AS01 adjuvant's specific role in dementia prevention.},<br> journal = {NPJ vaccines},<br> volume = {10},<br> number = {1},<br> pages = {255},<br> pmid = {41350294},<br> issn = {2059-0105},<br> abstract = {Taquet et al. evaluated the impact of AS01-adjuvanted vaccines on subsequent dementia diagnosis[1]. The authors conclude: "No difference was observed between the two AS01-adjuvanted vaccines, suggesting that the AS01 adjuvant itself plays a direct role in lowering dementia risk". Although the study offers promising evidence, the inference regarding the role of AS01 adjuvant in dementia prevention is not convincingly supported by the presented data or other published literature[2].},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> Hokkoku K, Inoue M, Yamada S, et al (2025) </p> <p class="ESP-citation-title"> <b>Reply to the letter by Marimbun et al. on fasciculation awareness in ALS.</b> </p> <p class="ESP-citation-data"> </p> <p class="ESP-citation-abstract"> </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41350201</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.jns.2025.125677"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41350201%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41350201"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41350201"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Reply+to+the+letter+by+Marimbun+et+al.+on+fasciculation+awareness+in+ALS."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-4" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-4'); showBlock('bibtex-hide-2025-12-06_01-35-24-4'); hideBlock('bibtex-show-2025-12-06_01-35-24-4'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-4" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-4'); hideBlock('bibtex-hide-2025-12-06_01-35-24-4'); showBlock('bibtex-show-2025-12-06_01-35-24-4');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-4" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41350201,<br> year = {2025},<br> author = {Hokkoku, K and Inoue, M and Yamada, S and Namba, H and Matsukura, K and Mukai, T and Chiba, T and Hatanaka, Y and Kobayashi, S and Sonoo, M},<br> title = {Reply to the letter by Marimbun et al. on fasciculation awareness in ALS.},<br> journal = {Journal of the neurological sciences},<br> volume = {},<br> number = {},<br> pages = {125677},<br> doi = {10.1016/j.jns.2025.125677},<br> pmid = {41350201},<br> issn = {1878-5883},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05<br>CmpDate: 2025-12-05 </p> <p class="ESP-citation-author"> Wu G, Chen Y, Yao Y, et al (2026) </p> <p class="ESP-citation-title"> <b>Integrating network toxicology and molecular docking to uncover mechanisms of novel herbicide-induced neurodegeneration.</b> </p> <p class="ESP-citation-data"> <i>Pesticide biochemistry and physiology</i>, <b>216(Pt 2):</b>106821. </p> <p class="ESP-citation-abstract"> Rising global reliance on novel herbicides has outpaced understanding of their potential neurotoxicity. This study employs an integrative network-toxicology pipeline to clarify how five widely used compounds, including mesotrione, topramezone, flufenazopyr, glufosinate-ammonium and beflubutamid-M, may contribute to Alzheimer's, Parkinson's, Huntington's, and amyotrophic lateral sclerosis pathogenesis. We first predicted toxic liabilities in eMolTox, SwissADME and ProTox, then harvested 310 human targets via PubChem, ChEMBL, STITCH and Swiss Target Prediction. Intersection with 3668-3429 disease genes (GeneCards/ OMIM) revealed 91-176 shared targets per disorder. PPI networks constructed in STRING and refined with Cytoscape (MCODE, cytoHubba) and novel NodeIdentifyR algorithm converged on eleven high-impact hub genes: EGFR, GSK3B, SRC, AKT1, MAPT, CASP3, MMP9, MTOR, PTK2, BCL2L1 and MAPK8. GO and KEGG enrichment analyses highlighted apoptosis, PI3K-Akt and MAPK signaling dysregulation. Single-cell and bulk transcriptomic atlases confirmed aberrant expression of these hubs in patient brains; Molecular docking demonstrated low-nanomolar affinities of all herbicides for multiple hub proteins, with mesotrione and topramezone displaying the broadest binding spectra and SRC emerging as a common high-affinity site. Molecular dynamics simulations supported stable binding in a representative herbicide-protein complex. Additionally, in vivo and in vitro experiments using Glufosinate-ammonium exposure corroborated the computational findings, underscoring the robustness of our approach. Together, these results establish a systems-level framework linking environmental herbicide exposure to neurodegeneration and nominate tractable targets for surveillance and therapeutic intervention. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41350075</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.pestbp.2025.106821"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41350075%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41350075"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41350075"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Integrating+network+toxicology+and+molecular+docking+to+uncover+mechanisms+of+novel+herbicide-induced+neurodegeneration."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-5" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-5'); showBlock('bibtex-hide-2025-12-06_01-35-24-5'); hideBlock('bibtex-show-2025-12-06_01-35-24-5'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-5" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-5'); hideBlock('bibtex-hide-2025-12-06_01-35-24-5'); showBlock('bibtex-show-2025-12-06_01-35-24-5');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-5" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41350075,<br> year = {2026},<br> author = {Wu, G and Chen, Y and Yao, Y and Huang, W and Wu, K},<br> title = {Integrating network toxicology and molecular docking to uncover mechanisms of novel herbicide-induced neurodegeneration.},<br> journal = {Pesticide biochemistry and physiology},<br> volume = {216},<br> number = {Pt 2},<br> pages = {106821},<br> doi = {10.1016/j.pestbp.2025.106821},<br> pmid = {41350075},<br> issn = {1095-9939},<br> mesh = {*Herbicides/toxicity/chemistry ; *Molecular Docking Simulation ; Humans ; *Neurodegenerative Diseases/chemically induced/metabolism ; Protein Interaction Maps ; },<br> abstract = {Rising global reliance on novel herbicides has outpaced understanding of their potential neurotoxicity. This study employs an integrative network-toxicology pipeline to clarify how five widely used compounds, including mesotrione, topramezone, flufenazopyr, glufosinate-ammonium and beflubutamid-M, may contribute to Alzheimer's, Parkinson's, Huntington's, and amyotrophic lateral sclerosis pathogenesis. We first predicted toxic liabilities in eMolTox, SwissADME and ProTox, then harvested 310 human targets via PubChem, ChEMBL, STITCH and Swiss Target Prediction. Intersection with 3668-3429 disease genes (GeneCards/ OMIM) revealed 91-176 shared targets per disorder. PPI networks constructed in STRING and refined with Cytoscape (MCODE, cytoHubba) and novel NodeIdentifyR algorithm converged on eleven high-impact hub genes: EGFR, GSK3B, SRC, AKT1, MAPT, CASP3, MMP9, MTOR, PTK2, BCL2L1 and MAPK8. GO and KEGG enrichment analyses highlighted apoptosis, PI3K-Akt and MAPK signaling dysregulation. Single-cell and bulk transcriptomic atlases confirmed aberrant expression of these hubs in patient brains; Molecular docking demonstrated low-nanomolar affinities of all herbicides for multiple hub proteins, with mesotrione and topramezone displaying the broadest binding spectra and SRC emerging as a common high-affinity site. Molecular dynamics simulations supported stable binding in a representative herbicide-protein complex. Additionally, in vivo and in vitro experiments using Glufosinate-ammonium exposure corroborated the computational findings, underscoring the robustness of our approach. Together, these results establish a systems-level framework linking environmental herbicide exposure to neurodegeneration and nominate tractable targets for surveillance and therapeutic intervention.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-06_01-35-24-5" class="mesh-switch" onClick="showBlock('mesh-2025-12-06_01-35-24-5'); showBlock('mesh-hide-2025-12-06_01-35-24-5'); hideBlock('mesh-show-2025-12-06_01-35-24-5'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-06_01-35-24-5" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-06_01-35-24-5'); hideBlock('mesh-hide-2025-12-06_01-35-24-5'); showBlock('mesh-show-2025-12-06_01-35-24-5');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-06_01-35-24-5" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">*Herbicides/toxicity/chemistry</span><br> <span class="mesh-term">*Molecular Docking Simulation</span><br> <span class="mesh-term">Humans</span><br> <span class="mesh-term">*Neurodegenerative Diseases/chemically induced/metabolism</span><br> <span class="mesh-term">Protein Interaction Maps</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05<br>CmpDate: 2025-12-05 </p> <p class="ESP-citation-author"> Sarker SC, Chen J, Wang C, et al (2026) </p> <p class="ESP-citation-title"> <b>ALS target-site mutations and overexpression synergistically enhance mesosulfuron resistance in Lolium perenne.</b> </p> <p class="ESP-citation-data"> <i>Pesticide biochemistry and physiology</i>, <b>216(Pt 2):</b>106802. </p> <p class="ESP-citation-abstract"> The invasive weed Lolium perenne (perennial ryegrass) poses a considerable threat to winter wheat crops in China and is hardly controlled by acetolactate synthase (ALS) inhibitors after years of application. In this study, four L. perenne populations from different locations in Henan were collected to evaluate the mechanisms of target site resistance to mesosulfuron-methyl. The resistant index (RI) of these four populations ranged from 122.73 to 149.26 compared to the susceptible population. ALS gene sequencing revealed three specific target site mutations: Pro-197-Thr, Asp-376-Glu, and Trp-574-Leu. Among these, Trp-574-Leu has not been previously reported in L. perenne. Three simultaneous double mutations were found in the same individual: Pro-197-Thr and Asp-376-Glu (Group I); Pro-197-Thr and Trp-574-Leu (Group II); and Asp-376-Glu and Trp-574-Leu (Group III). The gene expression levels of the double mutant groups were significantly higher than those of the susceptible plants. The I50 values obtained from the ALS enzyme assays showed that all three double mutant groups demonstrated a 136.75 to 149-fold increase compared to the enzyme activity of susceptible plants. Molecular docking analysis of mutant ALS proteins with mesosulfuron-methyl indicated that the mutant proteins had a reduced binding affinity to the herbicide. This reduced affinity was due to the disruption of hydrogen bonds and other key interactions, which contributed to increased herbicide resistance. Double target site mutations in a single ALS gene are a crucial mechanism for conferring high levels of mesosulfuron-methyl resistance in L. perenne. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41350059</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.pestbp.2025.106802"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41350059%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41350059"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41350059"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=ALS+target-site+mutations+and+overexpression+synergistically+enhance+mesosulfuron+resistance+in+Lolium+perenne."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-6" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-6'); showBlock('bibtex-hide-2025-12-06_01-35-24-6'); hideBlock('bibtex-show-2025-12-06_01-35-24-6'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-6" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-6'); hideBlock('bibtex-hide-2025-12-06_01-35-24-6'); showBlock('bibtex-show-2025-12-06_01-35-24-6');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-6" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41350059,<br> year = {2026},<br> author = {Sarker, SC and Chen, J and Wang, C and He, S and Yu, H and Li, X and Cui, H},<br> title = {ALS target-site mutations and overexpression synergistically enhance mesosulfuron resistance in Lolium perenne.},<br> journal = {Pesticide biochemistry and physiology},<br> volume = {216},<br> number = {Pt 2},<br> pages = {106802},<br> doi = {10.1016/j.pestbp.2025.106802},<br> pmid = {41350059},<br> issn = {1095-9939},<br> mesh = {*Acetolactate Synthase/genetics/metabolism ; *Lolium/genetics/drug effects/enzymology ; *Herbicide Resistance/genetics ; *Sulfonylurea Compounds/pharmacology ; Mutation ; *Herbicides/pharmacology ; *Plant Proteins/genetics/metabolism ; },<br> abstract = {The invasive weed Lolium perenne (perennial ryegrass) poses a considerable threat to winter wheat crops in China and is hardly controlled by acetolactate synthase (ALS) inhibitors after years of application. In this study, four L. perenne populations from different locations in Henan were collected to evaluate the mechanisms of target site resistance to mesosulfuron-methyl. The resistant index (RI) of these four populations ranged from 122.73 to 149.26 compared to the susceptible population. ALS gene sequencing revealed three specific target site mutations: Pro-197-Thr, Asp-376-Glu, and Trp-574-Leu. Among these, Trp-574-Leu has not been previously reported in L. perenne. Three simultaneous double mutations were found in the same individual: Pro-197-Thr and Asp-376-Glu (Group I); Pro-197-Thr and Trp-574-Leu (Group II); and Asp-376-Glu and Trp-574-Leu (Group III). The gene expression levels of the double mutant groups were significantly higher than those of the susceptible plants. The I50 values obtained from the ALS enzyme assays showed that all three double mutant groups demonstrated a 136.75 to 149-fold increase compared to the enzyme activity of susceptible plants. Molecular docking analysis of mutant ALS proteins with mesosulfuron-methyl indicated that the mutant proteins had a reduced binding affinity to the herbicide. This reduced affinity was due to the disruption of hydrogen bonds and other key interactions, which contributed to increased herbicide resistance. Double target site mutations in a single ALS gene are a crucial mechanism for conferring high levels of mesosulfuron-methyl resistance in L. perenne.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-06_01-35-24-6" class="mesh-switch" onClick="showBlock('mesh-2025-12-06_01-35-24-6'); showBlock('mesh-hide-2025-12-06_01-35-24-6'); hideBlock('mesh-show-2025-12-06_01-35-24-6'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-06_01-35-24-6" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-06_01-35-24-6'); hideBlock('mesh-hide-2025-12-06_01-35-24-6'); showBlock('mesh-show-2025-12-06_01-35-24-6');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-06_01-35-24-6" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">*Acetolactate Synthase/genetics/metabolism</span><br> <span class="mesh-term">*Lolium/genetics/drug effects/enzymology</span><br> <span class="mesh-term">*Herbicide Resistance/genetics</span><br> <span class="mesh-term">*Sulfonylurea Compounds/pharmacology</span><br> <span class="mesh-term">Mutation</span><br> <span class="mesh-term">*Herbicides/pharmacology</span><br> <span class="mesh-term">*Plant Proteins/genetics/metabolism</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> Trubshaw M, Kohl O, Gohil C, et al (2025) </p> <p class="ESP-citation-title"> <b>Divergence of cortical neurophysiology across different neurodegenerative disorders compared to healthy ageing.</b> </p> <p class="ESP-citation-data"> <i>Progress in neurobiology</i> pii:S0301-0082(25)00156-X [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Neurodegenerative diseases involve disruption of healthy brain network communication occurring before the emergence of symptoms. Magnetoencephalography (MEG) is sensitive to the magnetic fields generated by cortical neuronal activity, and the most spatio-temporally accurate method of directly assessing neuronal activity non-invasively. We used MEG to directly compare three neurodegenerative disorders against a large healthy cohort to characterise patterns of activity deviating from healthy ageing. Task-free MEG recordings were acquired from patients with Alzheimer's disease (AD, n=29), Parkinson's disease (PD, n=25), amyotrophic lateral sclerosis (ALS, n=33) and healthy controls (HC, n=191). Healthy ageing trajectories for metrics including spectral power (local neuronal recruitment), connectivity (long-range communication), 1/f exponent (which may reflect inhibition), and oscillatory speed were extracted. These metrics were compared pairwise between HC and patient groups, correcting for age and sex. The modelled trajectories of healthy ageing included increasing beta power and oscillatory speed, with reduced power spectrum slope. PD, AD, and ALS groups all showed reductions in beta power and slowing of oscillatory activity compared to matched HC. In AD, older patients showed lower beta power compared to younger patients. Compared to matched HC, the power spectrum slope was uniquely reduced in ALS, in contrast to the increase seen in PD and AD. Gamma connectivity increased in AD and ALS. MEG has unique potential as a source of biomarkers that might be used to detect deviation from healthy ageing if applied at an earlier presymptomatic stage of neurodegeneration than current tools permit. It might also provide outcome measures for prevention trials. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41349953</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.pneurobio.2025.102865"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41349953%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41349953"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41349953"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Divergence+of+cortical+neurophysiology+across+different+neurodegenerative+disorders+compared+to+healthy+ageing."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-7" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-7'); showBlock('bibtex-hide-2025-12-06_01-35-24-7'); hideBlock('bibtex-show-2025-12-06_01-35-24-7'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-7" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-7'); hideBlock('bibtex-hide-2025-12-06_01-35-24-7'); showBlock('bibtex-show-2025-12-06_01-35-24-7');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-7" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41349953,<br> year = {2025},<br> author = {Trubshaw, M and Kohl, O and Gohil, C and van Es, MWJ and Quinn, AJ and Yoganathan, K and Edmond, E and Proudfoot, M and Zokaei, N and Raymont, V and Pitt, J and Thayanandan, T and Thompson, AG and Talbot, K and Hu, MT and Perquin, MN and Kocagoncu, E and Rowe, JB and Woolrich, MW and Nobre, AC and Turner, MR},<br> title = {Divergence of cortical neurophysiology across different neurodegenerative disorders compared to healthy ageing.},<br> journal = {Progress in neurobiology},<br> volume = {},<br> number = {},<br> pages = {102865},<br> doi = {10.1016/j.pneurobio.2025.102865},<br> pmid = {41349953},<br> issn = {1873-5118},<br> abstract = {Neurodegenerative diseases involve disruption of healthy brain network communication occurring before the emergence of symptoms. Magnetoencephalography (MEG) is sensitive to the magnetic fields generated by cortical neuronal activity, and the most spatio-temporally accurate method of directly assessing neuronal activity non-invasively. We used MEG to directly compare three neurodegenerative disorders against a large healthy cohort to characterise patterns of activity deviating from healthy ageing. Task-free MEG recordings were acquired from patients with Alzheimer's disease (AD, n=29), Parkinson's disease (PD, n=25), amyotrophic lateral sclerosis (ALS, n=33) and healthy controls (HC, n=191). Healthy ageing trajectories for metrics including spectral power (local neuronal recruitment), connectivity (long-range communication), 1/f exponent (which may reflect inhibition), and oscillatory speed were extracted. These metrics were compared pairwise between HC and patient groups, correcting for age and sex. The modelled trajectories of healthy ageing included increasing beta power and oscillatory speed, with reduced power spectrum slope. PD, AD, and ALS groups all showed reductions in beta power and slowing of oscillatory activity compared to matched HC. In AD, older patients showed lower beta power compared to younger patients. Compared to matched HC, the power spectrum slope was uniquely reduced in ALS, in contrast to the increase seen in PD and AD. Gamma connectivity increased in AD and ALS. MEG has unique potential as a source of biomarkers that might be used to detect deviation from healthy ageing if applied at an earlier presymptomatic stage of neurodegeneration than current tools permit. It might also provide outcome measures for prevention trials.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> Liu H, Liu J, Wang J, et al (2025) </p> <p class="ESP-citation-title"> <b>Efficacy of Hybrid Sleeve-Assisted Surgery for Spinal Dural Arteriovenous Fistula.</b> </p> <p class="ESP-citation-data"> <i>World neurosurgery</i> pii:S1878-8750(25)01060-5 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> BACKGROUND: This study aimed to evaluate the efficacy of hybrid surgery combined with the sleeve technique in treating spinal dural arteriovenous fistula (SDAVF).<br><br>METHODS: A retrospective analysis was conducted on the clinical data of 16 patients with SDAVF who underwent hybrid surgery between October 2020 and June 2024. Spinal-cord function was quantitatively assessed pre- and post-operatively using the modified Aminoff-Logue Scale (ALS). Postoperative follow-up was 1-36 months. A decrease in the ALS score indicated functional improvement, whereas an increase indicated deterioration.<br><br>RESULTS: Intraoperative spinal digital subtraction angiography results confirmed the complete disappearance of the fistulas in all the 16 cases. Thirteen patients (81%) exhibited improved spinal-cord function, whereas three patients showed no changes.<br><br>CONCLUSIONS: Hybrid sleeve-assisted surgery integrates the advantages of endovascular interventional therapy and microsurgery, reducing late recurrence and surgical trauma. Consequently, this combined approach represents a valuable, clinically translatable therapeutic modality for the management of SDAVF. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41349919</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.wneu.2025.124702"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41349919%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41349919"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41349919"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Efficacy+of+Hybrid+Sleeve-Assisted+Surgery+for+Spinal+Dural+Arteriovenous+Fistula."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-8" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-8'); showBlock('bibtex-hide-2025-12-06_01-35-24-8'); hideBlock('bibtex-show-2025-12-06_01-35-24-8'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-8" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-8'); hideBlock('bibtex-hide-2025-12-06_01-35-24-8'); showBlock('bibtex-show-2025-12-06_01-35-24-8');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-8" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41349919,<br> year = {2025},<br> author = {Liu, H and Liu, J and Wang, J and Gao, P and Liu, H and Li, B and Dai, X and Zhang, B},<br> title = {Efficacy of Hybrid Sleeve-Assisted Surgery for Spinal Dural Arteriovenous Fistula.},<br> journal = {World neurosurgery},<br> volume = {},<br> number = {},<br> pages = {124702},<br> doi = {10.1016/j.wneu.2025.124702},<br> pmid = {41349919},<br> issn = {1878-8769},<br> abstract = {BACKGROUND: This study aimed to evaluate the efficacy of hybrid surgery combined with the sleeve technique in treating spinal dural arteriovenous fistula (SDAVF).<br><br>METHODS: A retrospective analysis was conducted on the clinical data of 16 patients with SDAVF who underwent hybrid surgery between October 2020 and June 2024. Spinal-cord function was quantitatively assessed pre- and post-operatively using the modified Aminoff-Logue Scale (ALS). Postoperative follow-up was 1-36 months. A decrease in the ALS score indicated functional improvement, whereas an increase indicated deterioration.<br><br>RESULTS: Intraoperative spinal digital subtraction angiography results confirmed the complete disappearance of the fistulas in all the 16 cases. Thirteen patients (81%) exhibited improved spinal-cord function, whereas three patients showed no changes.<br><br>CONCLUSIONS: Hybrid sleeve-assisted surgery integrates the advantages of endovascular interventional therapy and microsurgery, reducing late recurrence and surgical trauma. Consequently, this combined approach represents a valuable, clinically translatable therapeutic modality for the management of SDAVF.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> Franklin HD, Crerar H, Parnandi N, et al (2025) </p> <p class="ESP-citation-title"> <b>Hypoxic stress is an early pathogenic event in human VCP-mutant ALS astrocytes.</b> </p> <p class="ESP-citation-data"> <i>Stem cell reports</i> pii:S2213-6711(25)00327-3 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Astrocytes are essential regulators of neuronal health, and their dysfunction contributes to neurodegenerative diseases such as amyotrophic lateral sclerosis (ALS). Using human induced pluripotent stem cell (iPSC)-derived astrocytes carrying ALS-associated VCP mutations, we uncover cell-autonomous activation of the hypoxia response under basal conditions. VCP-mutant astrocytes exhibit increased nuclear hypoxia-inducible factor (HIF)-1ɑ, mitochondrial depolarization, and lipid droplet accumulation. Mimicking hypoxia in control astrocytes by HIF-1ɑ stabilization with dimethyloxalylglycine recapitulates these phenotypes. Transcriptomic and CUT&RUN profiling reveal direct HIF-1ɑ binding to canonical hypoxia-responsive genes in VCP-mutant astrocytes and a transcriptional signature of metabolic reprogramming and mitochondrial dysfunction under normoxia. Furthermore, conditioned medium from hypoxia-exposed astrocytes fails to rescue RNA-binding protein mislocalization in motor neurons, unlike medium from healthy counterparts. Together, these findings demonstrate that aberrant HIF-1ɑ activation drives astrocytic dysfunction and compromises neuronal support, identifying hypoxic stress as an early and functionally consequential event in VCP-mutant ALS, with therapeutic implications for targeting HIF-1ɑ signaling. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41349534</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.stemcr.2025.102723"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41349534%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41349534"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41349534"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Hypoxic+stress+is+an+early+pathogenic+event+in+human+VCP-mutant+ALS+astrocytes."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-9" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-9'); showBlock('bibtex-hide-2025-12-06_01-35-24-9'); hideBlock('bibtex-show-2025-12-06_01-35-24-9'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-9" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-9'); hideBlock('bibtex-hide-2025-12-06_01-35-24-9'); showBlock('bibtex-show-2025-12-06_01-35-24-9');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-9" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41349534,<br> year = {2025},<br> author = {Franklin, HD and Crerar, H and Parnandi, N and Lattke, M and Majewski, S and Clarke, BE and Pallikonda, H and Howell, M and Boulton, SJ and Patani, R},<br> title = {Hypoxic stress is an early pathogenic event in human VCP-mutant ALS astrocytes.},<br> journal = {Stem cell reports},<br> volume = {},<br> number = {},<br> pages = {102723},<br> doi = {10.1016/j.stemcr.2025.102723},<br> pmid = {41349534},<br> issn = {2213-6711},<br> abstract = {Astrocytes are essential regulators of neuronal health, and their dysfunction contributes to neurodegenerative diseases such as amyotrophic lateral sclerosis (ALS). Using human induced pluripotent stem cell (iPSC)-derived astrocytes carrying ALS-associated VCP mutations, we uncover cell-autonomous activation of the hypoxia response under basal conditions. VCP-mutant astrocytes exhibit increased nuclear hypoxia-inducible factor (HIF)-1ɑ, mitochondrial depolarization, and lipid droplet accumulation. Mimicking hypoxia in control astrocytes by HIF-1ɑ stabilization with dimethyloxalylglycine recapitulates these phenotypes. Transcriptomic and CUT&RUN profiling reveal direct HIF-1ɑ binding to canonical hypoxia-responsive genes in VCP-mutant astrocytes and a transcriptional signature of metabolic reprogramming and mitochondrial dysfunction under normoxia. Furthermore, conditioned medium from hypoxia-exposed astrocytes fails to rescue RNA-binding protein mislocalization in motor neurons, unlike medium from healthy counterparts. Together, these findings demonstrate that aberrant HIF-1ɑ activation drives astrocytic dysfunction and compromises neuronal support, identifying hypoxic stress as an early and functionally consequential event in VCP-mutant ALS, with therapeutic implications for targeting HIF-1ɑ signaling.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> García-Parra B, Guiu JM, Povedano M, et al (2025) </p> <p class="ESP-citation-title"> <b>Real-world evidence supporting orphan drugs approvals for rare neuromuscular disorders in the European Union and the United States: Review of public assessment reports (2015-2025).</b> </p> <p class="ESP-citation-data"> <i>Current opinion in pharmacology</i>, <b>86:</b>102586 pii:S1471-4892(25)00082-7 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Real-world data (RWD) and real-world evidence (RWE) are becoming essential complements to conventional clinical trials for drug assessment, particularly for rare neuromuscular disorders where small patient populations heighten outcome uncertainty. Robust RWE could reduce that uncertainty and inform regulatory decisions on orphan drugs (ODs). To review how the European Medicines Agency (EMA) and the US Food and Drug Administration (FDA) have incorporated RWE into OD approvals for neuromuscular diseases from January 2015 to January 2025. We reviewed all publicly available EMA European Public Assessment Reports and FDA review packages for ODs targeting neuromuscular indications. Each document was screened for mention of RWD sources and by the regulatory weight assigned to the resulting RWE. We identified 14 OD approvals by the EMA and 13 by the FDA, with greater use of RWE by the FDA. Indications comprised spinal muscular atrophy (3/3 EMA/FDA), amyotrophic lateral sclerosis (1/3), amyloid neuropathies (2/2), Friedreich ataxia (1/1), Lambert-Eaton syndrome (1/1), myasthenia gravis (2/2), myotonic disorders (1/0), and Duchenne muscular dystrophy (2/1). Among 18 evaluable dossiers, clinical outcome assessments (COA) were reported as follows: patient-reported outcomes - 39.1%, clinician-reported outcomes - 34.7%, observer-reported outcomes - 13.1 %, and performance outcomes - 13.1%. Only tofersen incorporated all COA types. The use of RWE for the evaluation of ODs is increasing for both the FDA and the EMA, more so for the former than for the latter. Harmonized methodological standards and transparent reporting frameworks are urgently needed to generate quality evidence that benefits stakeholders. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41349278</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.coph.2025.102586"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41349278%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41349278"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41349278"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Real-world+evidence+supporting+orphan+drugs+approvals+for+rare+neuromuscular+disorders+in+the+European+Union+and+the+United+States:+Review+of+public+assessment+reports+(2015-2025)."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-10" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-10'); showBlock('bibtex-hide-2025-12-06_01-35-24-10'); hideBlock('bibtex-show-2025-12-06_01-35-24-10'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-10" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-10'); hideBlock('bibtex-hide-2025-12-06_01-35-24-10'); showBlock('bibtex-show-2025-12-06_01-35-24-10');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-10" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41349278,<br> year = {2025},<br> author = {García-Parra, B and Guiu, JM and Povedano, M and Modamio, P},<br> title = {Real-world evidence supporting orphan drugs approvals for rare neuromuscular disorders in the European Union and the United States: Review of public assessment reports (2015-2025).},<br> journal = {Current opinion in pharmacology},<br> volume = {86},<br> number = {},<br> pages = {102586},<br> doi = {10.1016/j.coph.2025.102586},<br> pmid = {41349278},<br> issn = {1471-4973},<br> abstract = {Real-world data (RWD) and real-world evidence (RWE) are becoming essential complements to conventional clinical trials for drug assessment, particularly for rare neuromuscular disorders where small patient populations heighten outcome uncertainty. Robust RWE could reduce that uncertainty and inform regulatory decisions on orphan drugs (ODs). To review how the European Medicines Agency (EMA) and the US Food and Drug Administration (FDA) have incorporated RWE into OD approvals for neuromuscular diseases from January 2015 to January 2025. We reviewed all publicly available EMA European Public Assessment Reports and FDA review packages for ODs targeting neuromuscular indications. Each document was screened for mention of RWD sources and by the regulatory weight assigned to the resulting RWE. We identified 14 OD approvals by the EMA and 13 by the FDA, with greater use of RWE by the FDA. Indications comprised spinal muscular atrophy (3/3 EMA/FDA), amyotrophic lateral sclerosis (1/3), amyloid neuropathies (2/2), Friedreich ataxia (1/1), Lambert-Eaton syndrome (1/1), myasthenia gravis (2/2), myotonic disorders (1/0), and Duchenne muscular dystrophy (2/1). Among 18 evaluable dossiers, clinical outcome assessments (COA) were reported as follows: patient-reported outcomes - 39.1%, clinician-reported outcomes - 34.7%, observer-reported outcomes - 13.1 %, and performance outcomes - 13.1%. Only tofersen incorporated all COA types. The use of RWE for the evaluation of ODs is increasing for both the FDA and the EMA, more so for the former than for the latter. Harmonized methodological standards and transparent reporting frameworks are urgently needed to generate quality evidence that benefits stakeholders.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05<br>CmpDate: 2025-12-05 </p> <p class="ESP-citation-author"> Luu S, McGuiness OA, Menadue C, et al (2025) </p> <p class="ESP-citation-title"> <b>Early assessment in bulbar-onset amyotrophic lateral sclerosis detects similar rates of nocturnal desaturation and orthopnoea compared to non-bulbar-onset disease.</b> </p> <p class="ESP-citation-data"> <i>Sleep & breathing = Schlaf & Atmung</i>, <b>30(1):</b>3. </p> <p class="ESP-citation-abstract"> BACKGROUND: Pulmonary function measures are commonly used to determine timing of non-invasive ventilation (NIV) initiation in amyotrophic lateral sclerosis (ALS). However, these tests may be difficult to perform and unreliable in those with bulbar disease. We evaluated the rates of orthopnoea and nocturnal desaturation detected using nocturnal pulse oximetry (NPO), two key criteria for NIV initiation, separately in people with bulbar-onset and non-bulbar-onset ALS.<br><br>METHODS: We conducted a retrospective analysis of 93 individuals with ALS undergoing three consecutive nights of NPO screening. Demographics, diurnal respiratory function measures and NPO data were compared. Nocturnal desaturation was defined as > 2% of total sleep time with oxygen saturation < 90%.<br><br>RESULTS: Twenty-nine people had bulbar-onset ALS and 64 had non-bulbar-onset ALS. The prevalence of orthopnoea and the proportion with nocturnal desaturation were similar between bulbar-onset and non-bulbar-onset groups (24% vs. 20% and 76% vs. 67%, respectively). People with bulbar-onset ALS were older and underwent initial oximetry earlier in their disease trajectory following ALS-symptom onset than those with non-bulbar-onset ALS (67 ± 10.5 vs. 61 ± 11.9 years old, p = 0.02 and 17.5 (11.00-24.75) vs. 31.0 (18.00-63.50) months, p = 0.005, respectively).<br><br>CONCLUSION: People with bulbar-onset ALS were assessed with NPO sooner, but nocturnal desaturation was detected at similar rates to those with non-bulbar-onset ALS. Absence of orthopnoea and preserved lung function were poor indicators of nocturnal desaturation in both groups. Given the difficulties performing respiratory function tests in people with bulbar disease, early and regular NPO assessment in bulbar-onset ALS is warranted, even without symptoms. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41348294</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41348294%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41348294"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41348294"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Early+assessment+in+bulbar-onset+amyotrophic+lateral+sclerosis+detects+similar+rates+of+nocturnal+desaturation+and+orthopnoea+compared+to+non-bulbar-onset+disease."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-11" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-11'); showBlock('bibtex-hide-2025-12-06_01-35-24-11'); hideBlock('bibtex-show-2025-12-06_01-35-24-11'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-11" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-11'); hideBlock('bibtex-hide-2025-12-06_01-35-24-11'); showBlock('bibtex-show-2025-12-06_01-35-24-11');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-11" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41348294,<br> year = {2025},<br> author = {Luu, S and McGuiness, OA and Menadue, C and Piper, AJ and Wong, KK and Yee, BJ and Gray, EL},<br> title = {Early assessment in bulbar-onset amyotrophic lateral sclerosis detects similar rates of nocturnal desaturation and orthopnoea compared to non-bulbar-onset disease.},<br> journal = {Sleep & breathing = Schlaf & Atmung},<br> volume = {30},<br> number = {1},<br> pages = {3},<br> pmid = {41348294},<br> issn = {1522-1709},<br> mesh = {Humans ; *Amyotrophic Lateral Sclerosis/diagnosis/epidemiology/classification/therapy/physiopathology ; Male ; Female ; Middle Aged ; *Oximetry ; Aged ; Retrospective Studies ; Early Diagnosis ; *Oxygen Saturation/physiology ; Polysomnography ; Noninvasive Ventilation ; },<br> abstract = {BACKGROUND: Pulmonary function measures are commonly used to determine timing of non-invasive ventilation (NIV) initiation in amyotrophic lateral sclerosis (ALS). However, these tests may be difficult to perform and unreliable in those with bulbar disease. We evaluated the rates of orthopnoea and nocturnal desaturation detected using nocturnal pulse oximetry (NPO), two key criteria for NIV initiation, separately in people with bulbar-onset and non-bulbar-onset ALS.<br><br>METHODS: We conducted a retrospective analysis of 93 individuals with ALS undergoing three consecutive nights of NPO screening. Demographics, diurnal respiratory function measures and NPO data were compared. Nocturnal desaturation was defined as > 2% of total sleep time with oxygen saturation < 90%.<br><br>RESULTS: Twenty-nine people had bulbar-onset ALS and 64 had non-bulbar-onset ALS. The prevalence of orthopnoea and the proportion with nocturnal desaturation were similar between bulbar-onset and non-bulbar-onset groups (24% vs. 20% and 76% vs. 67%, respectively). People with bulbar-onset ALS were older and underwent initial oximetry earlier in their disease trajectory following ALS-symptom onset than those with non-bulbar-onset ALS (67 ± 10.5 vs. 61 ± 11.9 years old, p = 0.02 and 17.5 (11.00-24.75) vs. 31.0 (18.00-63.50) months, p = 0.005, respectively).<br><br>CONCLUSION: People with bulbar-onset ALS were assessed with NPO sooner, but nocturnal desaturation was detected at similar rates to those with non-bulbar-onset ALS. Absence of orthopnoea and preserved lung function were poor indicators of nocturnal desaturation in both groups. Given the difficulties performing respiratory function tests in people with bulbar disease, early and regular NPO assessment in bulbar-onset ALS is warranted, even without symptoms.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-06_01-35-24-11" class="mesh-switch" onClick="showBlock('mesh-2025-12-06_01-35-24-11'); showBlock('mesh-hide-2025-12-06_01-35-24-11'); hideBlock('mesh-show-2025-12-06_01-35-24-11'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-06_01-35-24-11" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-06_01-35-24-11'); hideBlock('mesh-hide-2025-12-06_01-35-24-11'); showBlock('mesh-show-2025-12-06_01-35-24-11');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-06_01-35-24-11" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">Humans</span><br> <span class="mesh-term">*Amyotrophic Lateral Sclerosis/diagnosis/epidemiology/classification/therapy/physiopathology</span><br> <span class="mesh-term">Male</span><br> <span class="mesh-term">Female</span><br> <span class="mesh-term">Middle Aged</span><br> <span class="mesh-term">*Oximetry</span><br> <span class="mesh-term">Aged</span><br> <span class="mesh-term">Retrospective Studies</span><br> <span class="mesh-term">Early Diagnosis</span><br> <span class="mesh-term">*Oxygen Saturation/physiology</span><br> <span class="mesh-term">Polysomnography</span><br> <span class="mesh-term">Noninvasive Ventilation</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05<br>CmpDate: 2025-12-05 </p> <p class="ESP-citation-author"> Dedeepya SD, Goel V, NN Desai (2025) </p> <p class="ESP-citation-title"> <b>Comment on "Baseline hemoglobin and neutrophil-to-lymphocyte ratio as prognostic biomarkers in patients with metastatic triple-negative breast cancer treated with sacituzumab govitecan in second line and beyond: a real-world analysis".</b> </p> <p class="ESP-citation-data"> <i>Breast cancer research and treatment</i>, <b>215(1):</b>29. </p> <p class="ESP-citation-abstract"> This commentary appraises Pieniążek et al.'s study on hematologic prognostic markers in sacituzumab govitecan-treated mTNBC, emphasizing residual confounding, absent Trop-2 data, limited modeling flexibility, and incomplete handling of missingness. Methodological refinement and integration of biological, longitudinal, and clinical variables are proposed to enhance prognostic accuracy and translational applicability. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41348236</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41348236%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41348236"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41348236"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Comment+on+"Baseline+hemoglobin+and+neutrophil-to-lymphocyte+ratio+as+prognostic+biomarkers+in+patients+with+metastatic+triple-negative+breast+cancer+treated+with+sacituzumab+govitecan+in+second+line+and+beyond:+a+real-world+analysis"."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-12" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-12'); showBlock('bibtex-hide-2025-12-06_01-35-24-12'); hideBlock('bibtex-show-2025-12-06_01-35-24-12'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-12" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-12'); hideBlock('bibtex-hide-2025-12-06_01-35-24-12'); showBlock('bibtex-show-2025-12-06_01-35-24-12');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-12" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41348236,<br> year = {2025},<br> author = {Dedeepya, SD and Goel, V and Desai, NN},<br> title = {Comment on "Baseline hemoglobin and neutrophil-to-lymphocyte ratio as prognostic biomarkers in patients with metastatic triple-negative breast cancer treated with sacituzumab govitecan in second line and beyond: a real-world analysis".},<br> journal = {Breast cancer research and treatment},<br> volume = {215},<br> number = {1},<br> pages = {29},<br> pmid = {41348236},<br> issn = {1573-7217},<br> mesh = {Humans ; *Antibodies, Monoclonal, Humanized/therapeutic use ; Female ; *Triple Negative Breast Neoplasms/drug therapy/blood/pathology/mortality ; Prognosis ; *Neutrophils ; *Biomarkers, Tumor ; *Camptothecin/analogs & derivatives/therapeutic use ; *Hemoglobins/analysis/metabolism ; *Lymphocytes/pathology ; Immunoconjugates ; },<br> abstract = {This commentary appraises Pieniążek et al.'s study on hematologic prognostic markers in sacituzumab govitecan-treated mTNBC, emphasizing residual confounding, absent Trop-2 data, limited modeling flexibility, and incomplete handling of missingness. Methodological refinement and integration of biological, longitudinal, and clinical variables are proposed to enhance prognostic accuracy and translational applicability.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-06_01-35-24-12" class="mesh-switch" onClick="showBlock('mesh-2025-12-06_01-35-24-12'); showBlock('mesh-hide-2025-12-06_01-35-24-12'); hideBlock('mesh-show-2025-12-06_01-35-24-12'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-06_01-35-24-12" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-06_01-35-24-12'); hideBlock('mesh-hide-2025-12-06_01-35-24-12'); showBlock('mesh-show-2025-12-06_01-35-24-12');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-06_01-35-24-12" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">Humans</span><br> <span class="mesh-term">*Antibodies, Monoclonal, Humanized/therapeutic use</span><br> <span class="mesh-term">Female</span><br> <span class="mesh-term">*Triple Negative Breast Neoplasms/drug therapy/blood/pathology/mortality</span><br> <span class="mesh-term">Prognosis</span><br> <span class="mesh-term">*Neutrophils</span><br> <span class="mesh-term">*Biomarkers, Tumor</span><br> <span class="mesh-term">*Camptothecin/analogs & derivatives/therapeutic use</span><br> <span class="mesh-term">*Hemoglobins/analysis/metabolism</span><br> <span class="mesh-term">*Lymphocytes/pathology</span><br> <span class="mesh-term">Immunoconjugates</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> Mora T, Roche D, Andrés Benito P, et al (2025) </p> <p class="ESP-citation-title"> <b>Integrating administrative health data and machine learning to predict ALS onset.</b> </p> <p class="ESP-citation-data"> <i>Amyotrophic lateral sclerosis & frontotemporal degeneration</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> BACKGROUND: This study aims to develop a Machine Learning (ML) model to predict the initial diagnosis of Amyotrophic Lateral Sclerosis (ALS).<br><br>METHODS: To predict ALS, a stacked model combining four ML algorithms-logistic Regression, Decision Tree, Random Forest, and Extreme Gradient Boosting-was implemented. The analysis utilized healthcare administrative data from Catalonia, encompassing 2,924,590 elderly individuals from 2014 to 2021, which were linked to socioeconomic factors and medication records.<br><br>RESULTS: The stacked model successfully predicted first-time ALS diagnoses, achieving an AUC of 0.86, with an accuracy of 0.86, specificity of 0.88, and sensitivity of 0.84. The most influential predictors included immunization encounters, South American origin, general medical and special examinations, hypertensive heart disease, and counseling. Other relevant features were sciatica, heart failure, liver metastases, healthcare use patterns, and chronic conditions such as hypertension, kidney disease, and hypercholesterolemia. These features reflect early clinical symptoms and healthcare usage patterns relevant to ALS detection.<br><br>CONCLUSIONS: Machine Learning models, particularly stacked approaches, show promising results in predicting ALS diagnoses using administrative health data. Continued research is necessary to improve detection strategies and support their integration into healthcare systems. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41347776</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1080/21678421.2025.2596691"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41347776%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41347776"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41347776"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Integrating+administrative+health+data+and+machine+learning+to+predict+ALS+onset."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-13" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-13'); showBlock('bibtex-hide-2025-12-06_01-35-24-13'); hideBlock('bibtex-show-2025-12-06_01-35-24-13'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-13" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-13'); hideBlock('bibtex-hide-2025-12-06_01-35-24-13'); showBlock('bibtex-show-2025-12-06_01-35-24-13');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-13" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41347776,<br> year = {2025},<br> author = {Mora, T and Roche, D and Andrés Benito, P and Caravaca Puchades, A and Povedano, M},<br> title = {Integrating administrative health data and machine learning to predict ALS onset.},<br> journal = {Amyotrophic lateral sclerosis & frontotemporal degeneration},<br> volume = {},<br> number = {},<br> pages = {1-7},<br> doi = {10.1080/21678421.2025.2596691},<br> pmid = {41347776},<br> issn = {2167-9223},<br> abstract = {BACKGROUND: This study aims to develop a Machine Learning (ML) model to predict the initial diagnosis of Amyotrophic Lateral Sclerosis (ALS).<br><br>METHODS: To predict ALS, a stacked model combining four ML algorithms-logistic Regression, Decision Tree, Random Forest, and Extreme Gradient Boosting-was implemented. The analysis utilized healthcare administrative data from Catalonia, encompassing 2,924,590 elderly individuals from 2014 to 2021, which were linked to socioeconomic factors and medication records.<br><br>RESULTS: The stacked model successfully predicted first-time ALS diagnoses, achieving an AUC of 0.86, with an accuracy of 0.86, specificity of 0.88, and sensitivity of 0.84. The most influential predictors included immunization encounters, South American origin, general medical and special examinations, hypertensive heart disease, and counseling. Other relevant features were sciatica, heart failure, liver metastases, healthcare use patterns, and chronic conditions such as hypertension, kidney disease, and hypercholesterolemia. These features reflect early clinical symptoms and healthcare usage patterns relevant to ALS detection.<br><br>CONCLUSIONS: Machine Learning models, particularly stacked approaches, show promising results in predicting ALS diagnoses using administrative health data. Continued research is necessary to improve detection strategies and support their integration into healthcare systems.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05 </p> <p class="ESP-citation-author"> Yuen HK, Szynkiewicz SH, Richardson K, et al (2025) </p> <p class="ESP-citation-title"> <b>Effects of a Coach-Guided Online Yogic Breathing Program on Quality of Life in People With Amyotrophic Lateral Sclerosis: A Mixed-Methods Pilot RCT.</b> </p> <p class="ESP-citation-data"> <i>The American journal of hospice & palliative care</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> ObjectivesThis study aims to evaluate the feasibility and acceptability of an online coach-guided yogic breathing exercise (YBE) program on improving quality of life (QoL) in persons with amyotrophic lateral sclerosis (PwALS).MethodsA waitlist pilot randomized controlled trial with a post-program individual qualitative interview was employed. Thirteen adults with ALS participated in the YBE program, with 7 in the YBE group and 6 in the waitlist group. The program consisted of twelve 30-min online YBE sessions in which each participant received one-on-one coaching from a certified yoga therapist over six consecutive weeks. ALS Specific Quality of Life-Revised (ALSSQOL-R) was the outcome measure.ResultsAll but 2 participants in the YBE training group completed the 12 sessions, with an overall attendance rate of >97%. Compared to the waitlist group using the Mann-Whitney U test, the YBE group showed significant improvement in the change scores of the physical symptoms and intimacy domains of the ALSQOL-R at post-test. No significant differences in the change scores between the YBE and waitlist groups in the total score and other domains of the ALSQOL-R were observed. Thematic analysis of participants' interview about their experiences with the program revealed two themes: sense of control over breathing and emotional regulation through relaxation.ConclusionDespite the small sample size, the high attendance rate and positive feedback indicate that the YBE program is feasible and acceptable to PwALS. The YBE program demonstrated significant QoL benefits for PwALS. Participants reported enhanced control over their breathing and better emotional regulation. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41347668</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1177/10499091251403506"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41347668%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41347668"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41347668"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Effects+of+a+Coach-Guided+Online+Yogic+Breathing+Program+on+Quality+of+Life+in+People+With+Amyotrophic+Lateral+Sclerosis:+A+Mixed-Methods+Pilot+RCT."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-14" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-14'); showBlock('bibtex-hide-2025-12-06_01-35-24-14'); hideBlock('bibtex-show-2025-12-06_01-35-24-14'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-14" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-14'); hideBlock('bibtex-hide-2025-12-06_01-35-24-14'); showBlock('bibtex-show-2025-12-06_01-35-24-14');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-14" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41347668,<br> year = {2025},<br> author = {Yuen, HK and Szynkiewicz, SH and Richardson, K and Benge, M and Lowman, JD and Spraberry, SB and Jiang, N and Kazamel, M},<br> title = {Effects of a Coach-Guided Online Yogic Breathing Program on Quality of Life in People With Amyotrophic Lateral Sclerosis: A Mixed-Methods Pilot RCT.},<br> journal = {The American journal of hospice & palliative care},<br> volume = {},<br> number = {},<br> pages = {10499091251403506},<br> doi = {10.1177/10499091251403506},<br> pmid = {41347668},<br> issn = {1938-2715},<br> abstract = {ObjectivesThis study aims to evaluate the feasibility and acceptability of an online coach-guided yogic breathing exercise (YBE) program on improving quality of life (QoL) in persons with amyotrophic lateral sclerosis (PwALS).MethodsA waitlist pilot randomized controlled trial with a post-program individual qualitative interview was employed. Thirteen adults with ALS participated in the YBE program, with 7 in the YBE group and 6 in the waitlist group. The program consisted of twelve 30-min online YBE sessions in which each participant received one-on-one coaching from a certified yoga therapist over six consecutive weeks. ALS Specific Quality of Life-Revised (ALSSQOL-R) was the outcome measure.ResultsAll but 2 participants in the YBE training group completed the 12 sessions, with an overall attendance rate of >97%. Compared to the waitlist group using the Mann-Whitney U test, the YBE group showed significant improvement in the change scores of the physical symptoms and intimacy domains of the ALSQOL-R at post-test. No significant differences in the change scores between the YBE and waitlist groups in the total score and other domains of the ALSQOL-R were observed. Thematic analysis of participants' interview about their experiences with the program revealed two themes: sense of control over breathing and emotional regulation through relaxation.ConclusionDespite the small sample size, the high attendance rate and positive feedback indicate that the YBE program is feasible and acceptable to PwALS. The YBE program demonstrated significant QoL benefits for PwALS. Participants reported enhanced control over their breathing and better emotional regulation.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-05<br>CmpDate: 2025-12-05 </p> <p class="ESP-citation-author"> Trüeb RM, Romanova Y, Gadzhigoroeva A, et al (2025) </p> <p class="ESP-citation-title"> <b>Comment on a Multicenter Retrospective Descriptive and Analytical Study of 129 Cases of Trichoteiromania.</b> </p> <p class="ESP-citation-data"> <i>International journal of trichology</i>, <b>17(3):</b>265-267. </p> <p class="ESP-citation-abstract"> We have read Ramos Costa et al.'s publication "Trichoteiromania: A multicentre retrospective descriptive and analytical study of 129 cases" in the Journal of the European Academy of Dermatology, and comment on some critical issues related to the nosology, nomenclature, and methodology. The term trichoteiromania was originally coined for the rubbing of the hair due to an underlying psychiatric disorder without further specifications. Based on case observations of patients with trichoteiromania, it was later reported that in contrast to trichotillomania that represents an obsessive-compulsive disorder, the underlying disorder in trichoteiromania varies among patients. Histopathological features are unspecific, while the traumatic changes to the hair shaft are more conspicuous, and 15 min of rubbing the hair is sufficient for hair breakage. Therefore, a clear distinction must be made between trichotillomania, trichoteiromania, neurotic excoriations, factitious dermatitis, lichen simplex chronicus, and nodular prurigo of the scalp, while the dermoscopic findings provided by Ramos Costa et al. showed the mechanics of hair damage without a deeper insight into its etiology. Trichoscopy has gained disproportionate popularity for the differential diagnosis of the hair and scalp disorders since its introduction into dermatologic practice, and as a self-reliant examination technique, it can even be misleading. As a diagnostic procedure, trichoscopy is to be understood as representing an integral part of a more comprehensive dermatological learning, to include a stringent nosological classification and nomenclature of diseases, based on a pathogenic understanding. Specifically, in trichoteiromania studies with a more detailed assessment of the psychopathological status will be of more value to determine disease management strategies, specifically approaches to psychotherapeutic, behavioral, and pharmacological interventions aimed at reducing or eliminating the hair-rubbing behavior. Regrettably, the majority of recent publications on trichoteiromania have been based on trichoscopy without any disease-relevant insights, and obviously, the editors and reviewers of the respective publishing journals have so far failed to acknowledge this major shortcoming. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41346550</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41346550%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41346550"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41346550"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Comment+on+a+Multicenter+Retrospective+Descriptive+and+Analytical+Study+of+129+Cases+of+Trichoteiromania."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-06_01-35-24-15" class="bibtex-switch" onClick="showBlock('citation-2025-12-06_01-35-24-15'); showBlock('bibtex-hide-2025-12-06_01-35-24-15'); hideBlock('bibtex-show-2025-12-06_01-35-24-15'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-06_01-35-24-15" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-06_01-35-24-15'); hideBlock('bibtex-hide-2025-12-06_01-35-24-15'); showBlock('bibtex-show-2025-12-06_01-35-24-15');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-06_01-35-24-15" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41346550,<br> year = {2025},<br> author = {Trüeb, RM and Romanova, Y and Gadzhigoroeva, A and Vavilov, V and Uribe, NC and Bielsa, CG},<br> title = {Comment on a Multicenter Retrospective Descriptive and Analytical Study of 129 Cases of Trichoteiromania.},<br> journal = {International journal of trichology},<br> volume = {17},<br> number = {3},<br> pages = {265-267},<br> pmid = {41346550},<br> issn = {0974-7753},<br> abstract = {We have read Ramos Costa et al.'s publication "Trichoteiromania: A multicentre retrospective descriptive and analytical study of 129 cases" in the Journal of the European Academy of Dermatology, and comment on some critical issues related to the nosology, nomenclature, and methodology. The term trichoteiromania was originally coined for the rubbing of the hair due to an underlying psychiatric disorder without further specifications. Based on case observations of patients with trichoteiromania, it was later reported that in contrast to trichotillomania that represents an obsessive-compulsive disorder, the underlying disorder in trichoteiromania varies among patients. Histopathological features are unspecific, while the traumatic changes to the hair shaft are more conspicuous, and 15 min of rubbing the hair is sufficient for hair breakage. Therefore, a clear distinction must be made between trichotillomania, trichoteiromania, neurotic excoriations, factitious dermatitis, lichen simplex chronicus, and nodular prurigo of the scalp, while the dermoscopic findings provided by Ramos Costa et al. showed the mechanics of hair damage without a deeper insight into its etiology. Trichoscopy has gained disproportionate popularity for the differential diagnosis of the hair and scalp disorders since its introduction into dermatologic practice, and as a self-reliant examination technique, it can even be misleading. As a diagnostic procedure, trichoscopy is to be understood as representing an integral part of a more comprehensive dermatological learning, to include a stringent nosological classification and nomenclature of diseases, based on a pathogenic understanding. Specifically, in trichoteiromania studies with a more detailed assessment of the psychopathological status will be of more value to determine disease management strategies, specifically approaches to psychotherapeutic, behavioral, and pharmacological interventions aimed at reducing or eliminating the hair-rubbing behavior. Regrettably, the majority of recent publications on trichoteiromania have been based on trichoscopy without any disease-relevant insights, and obviously, the editors and reviewers of the respective publishing journals have so far failed to acknowledge this major shortcoming.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04 </p> <p class="ESP-citation-author"> Ebrahimian A, Moradi A, Athari SZ, et al (2025) </p> <p class="ESP-citation-title"> <b>Restless legs syndrome as a comorbidity in amyotrophic lateral sclerosis: a systematic review and meta-analysis.</b> </p> <p class="ESP-citation-data"> <i>BMC neurology</i> pii:10.1186/s12883-025-04543-4 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> BACKGROUND: Restless Legs Syndrome (RLS), characterized by an urge to move the legs, is linked to neurodegenerative diseases. Emerging evidence suggests a higher RLS prevalence in Amyotrophic Lateral Sclerosis (ALS), impacting quality of life. However, there is lack of comprehensive review addressing its prevalence and associated risk factors. This meta-analysis estimates RLS prevalence in ALS patients compared to healthy controls.<br><br>METHODS: We searched PubMed, Embase, Web of Science, and Scopus for studies assessing RLS in ALS patients versus controls, adhering to PRISMA guidelines. Two reviewers independently extracted data and assessed bias using Joanna Briggs Institute (JBI) checklist. Meta-analysis used Comprehensive Meta-Analysis software with a random-effects model due to heterogeneity. The certainty of evidence was appraised using the GRADE (Grading of Recommendations Assessment, Development and Evaluation) framework.<br><br>RESULTS: Out of 291 studies, eight studies (792 ALS, 716 controls) were included. The pooled RLS prevalence in ALS was 17% (95% CI: 14.0%-21.1%; I²: 56.5%; p-value < 0.001). The fixed effect meta-analysis of four studies indicated that the difference of RLS prevalence was statically significant between patients with ALS and healthy controls (OR: 5.65; CI: 2.86-11.13; P-value < 0.001; I²: 28.7.).<br><br>CONCLUSION: RLS is significantly more prevalent in ALS patients, potentially worsening sleep and quality of life, mental health, and social well-being. Therefore, it is essential to draw clinicians' attention to RLS in ALS patients due to its potential impact on overall health. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41345582</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1186/s12883-025-04543-4"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41345582%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41345582"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41345582"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Restless+legs+syndrome+as+a+comorbidity+in+amyotrophic+lateral+sclerosis:+a+systematic+review+and+meta-analysis."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-1" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-1'); showBlock('bibtex-hide-2025-12-05_01-35-25-1'); hideBlock('bibtex-show-2025-12-05_01-35-25-1'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-1" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-1'); hideBlock('bibtex-hide-2025-12-05_01-35-25-1'); showBlock('bibtex-show-2025-12-05_01-35-25-1');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-1" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41345582,<br> year = {2025},<br> author = {Ebrahimian, A and Moradi, A and Athari, SZ and Farajdokht, F},<br> title = {Restless legs syndrome as a comorbidity in amyotrophic lateral sclerosis: a systematic review and meta-analysis.},<br> journal = {BMC neurology},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1186/s12883-025-04543-4},<br> pmid = {41345582},<br> issn = {1471-2377},<br> support = {74962//Student Research Committee, Tabriz University of Medical Sciences/ ; },<br> abstract = {BACKGROUND: Restless Legs Syndrome (RLS), characterized by an urge to move the legs, is linked to neurodegenerative diseases. Emerging evidence suggests a higher RLS prevalence in Amyotrophic Lateral Sclerosis (ALS), impacting quality of life. However, there is lack of comprehensive review addressing its prevalence and associated risk factors. This meta-analysis estimates RLS prevalence in ALS patients compared to healthy controls.<br><br>METHODS: We searched PubMed, Embase, Web of Science, and Scopus for studies assessing RLS in ALS patients versus controls, adhering to PRISMA guidelines. Two reviewers independently extracted data and assessed bias using Joanna Briggs Institute (JBI) checklist. Meta-analysis used Comprehensive Meta-Analysis software with a random-effects model due to heterogeneity. The certainty of evidence was appraised using the GRADE (Grading of Recommendations Assessment, Development and Evaluation) framework.<br><br>RESULTS: Out of 291 studies, eight studies (792 ALS, 716 controls) were included. The pooled RLS prevalence in ALS was 17% (95% CI: 14.0%-21.1%; I²: 56.5%; p-value < 0.001). The fixed effect meta-analysis of four studies indicated that the difference of RLS prevalence was statically significant between patients with ALS and healthy controls (OR: 5.65; CI: 2.86-11.13; P-value < 0.001; I²: 28.7.).<br><br>CONCLUSION: RLS is significantly more prevalent in ALS patients, potentially worsening sleep and quality of life, mental health, and social well-being. Therefore, it is essential to draw clinicians' attention to RLS in ALS patients due to its potential impact on overall health.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04 </p> <p class="ESP-citation-author"> Ji C, Li P, Ma S, et al (2025) </p> <p class="ESP-citation-title"> <b>Correlation analysis of serum neurofilament light chain and glial fibrillary acidic protein levels with amyotrophic lateral sclerosis.</b> </p> <p class="ESP-citation-data"> <i>Scientific reports</i> pii:10.1038/s41598-025-30022-4 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Neurofilament light chain (NFL) and glial fibrillary acidic protein (GFAP) are considered to be a promising biomarker for the diagnosis of amyotrophic lateral sclerosis (ALS) and assessment of disease progression. To investigate the correlation between serum neurofilament light chain protein (NFL) and glial fibrillary acidic protein (GFAP) levels and amyotrophic lateral sclerosis (ALS). Serum NFL and GFAP levels were measured in 12 ALS patients and 12 healthy controls (HC) using the Single-molecule array (Simoa) technique. Serum NFL and GFAP levels in ALS patients were 81.49 ± 47.06 pg/mL and 104.42 ± 37.31 pg/mL, respectively, significantly higher than those in healthy controls (9.21 ± 3.05 pg/mL and 57.71 ± 11.64 pg/mL; P < 0.001). Serum NFL and GFAP levels in ALS patients were correlated with the duration of the disease as respectively (r = 0.746, P = 0.005; r = 0.668, P = 0.018). In this study, we investigated the diagnostic value of serum NFL and GFAP levels in the ALS population and their clinical significance using the Simoa technique. The results showed that serum NFL and GFAP levels may be potential biomarkers for ALS diagnosis, and is positively correlated with disease progression. However, its diagnostic specificity awaits further studies that include disease controls. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41345490</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1038/s41598-025-30022-4"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41345490%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41345490"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41345490"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Correlation+analysis+of+serum+neurofilament+light+chain+and+glial+fibrillary+acidic+protein+levels+with+amyotrophic+lateral+sclerosis."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-2" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-2'); showBlock('bibtex-hide-2025-12-05_01-35-25-2'); hideBlock('bibtex-show-2025-12-05_01-35-25-2'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-2" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-2'); hideBlock('bibtex-hide-2025-12-05_01-35-25-2'); showBlock('bibtex-show-2025-12-05_01-35-25-2');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-2" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41345490,<br> year = {2025},<br> author = {Ji, C and Li, P and Ma, S and Li, J and Zhou, J and Zhu, J and Dong, D and Yang, T and Yang, P},<br> title = {Correlation analysis of serum neurofilament light chain and glial fibrillary acidic protein levels with amyotrophic lateral sclerosis.},<br> journal = {Scientific reports},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1038/s41598-025-30022-4},<br> pmid = {41345490},<br> issn = {2045-2322},<br> support = {2021BEG03032//Key Research and Development Program of Ningxia/ ; },<br> abstract = {Neurofilament light chain (NFL) and glial fibrillary acidic protein (GFAP) are considered to be a promising biomarker for the diagnosis of amyotrophic lateral sclerosis (ALS) and assessment of disease progression. To investigate the correlation between serum neurofilament light chain protein (NFL) and glial fibrillary acidic protein (GFAP) levels and amyotrophic lateral sclerosis (ALS). Serum NFL and GFAP levels were measured in 12 ALS patients and 12 healthy controls (HC) using the Single-molecule array (Simoa) technique. Serum NFL and GFAP levels in ALS patients were 81.49 ± 47.06 pg/mL and 104.42 ± 37.31 pg/mL, respectively, significantly higher than those in healthy controls (9.21 ± 3.05 pg/mL and 57.71 ± 11.64 pg/mL; P < 0.001). Serum NFL and GFAP levels in ALS patients were correlated with the duration of the disease as respectively (r = 0.746, P = 0.005; r = 0.668, P = 0.018). In this study, we investigated the diagnostic value of serum NFL and GFAP levels in the ALS population and their clinical significance using the Simoa technique. The results showed that serum NFL and GFAP levels may be potential biomarkers for ALS diagnosis, and is positively correlated with disease progression. However, its diagnostic specificity awaits further studies that include disease controls.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04<br>CmpDate: 2025-12-04 </p> <p class="ESP-citation-author"> Ruthruff E, Tolomeo DA, Jain S, et al (2025) </p> <p class="ESP-citation-title"> <b>Does the attentional window shed light on the attentional capture debate?.</b> </p> <p class="ESP-citation-data"> <i>Attention, perception & psychophysics</i>, <b>88(1):</b>31. </p> <p class="ESP-citation-abstract"> Belopolsky et al. (2007) provided evidence that capture occurs only when objects fall within the attentional window. This attentional window hypothesis was subsequently used to explain how salient stimuli can be powerful yet often have little or no observable effect. In the present study, we attempted to replicate their findings. Participants made a go/no-go decision based on the shape of the overall search array (diffuse attention) or based on the central fixation point (focused attention). Whereas Belopolsky et al. found larger capture effects from a color singleton distractor in the diffuse condition than the focused condition (where the color singleton is assumed to fall outside the attentional window), we found no such effect (Experiment 1). When we changed the task from a feature search task in Experiment 1 to a singleton search task in Experiment 2, capture effects increased overall but were once again similar for the diffuse and focused conditions. This pattern persisted even when we closely replicated Belopolsky et al.'s original design (Experiment 3). Our findings call into question the attentional window account and support an alternative account of why capture sometimes occurs: singleton search mode makes color singletons capture attention because participants are looking for singletons. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41345292</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41345292%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41345292"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41345292"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Does+the+attentional+window+shed+light+on+the+attentional+capture+debate?"> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-3" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-3'); showBlock('bibtex-hide-2025-12-05_01-35-25-3'); hideBlock('bibtex-show-2025-12-05_01-35-25-3'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-3" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-3'); hideBlock('bibtex-hide-2025-12-05_01-35-25-3'); showBlock('bibtex-show-2025-12-05_01-35-25-3');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-3" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41345292,<br> year = {2025},<br> author = {Ruthruff, E and Tolomeo, DA and Jain, S and Reitan, KM and Lien, MC},<br> title = {Does the attentional window shed light on the attentional capture debate?.},<br> journal = {Attention, perception & psychophysics},<br> volume = {88},<br> number = {1},<br> pages = {31},<br> pmid = {41345292},<br> issn = {1943-393X},<br> mesh = {Humans ; *Attention ; *Color Perception ; *Pattern Recognition, Visual ; Female ; Male ; Young Adult ; Adult ; Reaction Time ; },<br> abstract = {Belopolsky et al. (2007) provided evidence that capture occurs only when objects fall within the attentional window. This attentional window hypothesis was subsequently used to explain how salient stimuli can be powerful yet often have little or no observable effect. In the present study, we attempted to replicate their findings. Participants made a go/no-go decision based on the shape of the overall search array (diffuse attention) or based on the central fixation point (focused attention). Whereas Belopolsky et al. found larger capture effects from a color singleton distractor in the diffuse condition than the focused condition (where the color singleton is assumed to fall outside the attentional window), we found no such effect (Experiment 1). When we changed the task from a feature search task in Experiment 1 to a singleton search task in Experiment 2, capture effects increased overall but were once again similar for the diffuse and focused conditions. This pattern persisted even when we closely replicated Belopolsky et al.'s original design (Experiment 3). Our findings call into question the attentional window account and support an alternative account of why capture sometimes occurs: singleton search mode makes color singletons capture attention because participants are looking for singletons.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-05_01-35-25-3" class="mesh-switch" onClick="showBlock('mesh-2025-12-05_01-35-25-3'); showBlock('mesh-hide-2025-12-05_01-35-25-3'); hideBlock('mesh-show-2025-12-05_01-35-25-3'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-05_01-35-25-3" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-05_01-35-25-3'); hideBlock('mesh-hide-2025-12-05_01-35-25-3'); showBlock('mesh-show-2025-12-05_01-35-25-3');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-05_01-35-25-3" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">Humans</span><br> <span class="mesh-term">*Attention</span><br> <span class="mesh-term">*Color Perception</span><br> <span class="mesh-term">*Pattern Recognition, Visual</span><br> <span class="mesh-term">Female</span><br> <span class="mesh-term">Male</span><br> <span class="mesh-term">Young Adult</span><br> <span class="mesh-term">Adult</span><br> <span class="mesh-term">Reaction Time</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04 </p> <p class="ESP-citation-author"> Duhayyim MA (2025) </p> <p class="ESP-citation-title"> <b>An efficient dimensionality reduction framework using metaheuristic optimization with deep learning models for amyotrophic lateral sclerosis disease progression prediction.</b> </p> <p class="ESP-citation-data"> <i>Scientific reports</i> pii:10.1038/s41598-025-30913-6 [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Amyotrophic lateral sclerosis (ALS) is a disastrous neuro-degenerative infection which affects motor neuron inhabitants of the spinal cord, brainstem, and cerebral cortex, resulting in progressive disorder and demise from respiratory difficulty. ALS is considerably assorted disorder comprising symptoms such as muscle weakness, difficulty in swallowing, speaking, breathing, and changes in mental and emotional health. Hence, this disease requires more beneficial medication and also, successful treatment is affected by heterogeneous disease development, resulting in issues with patient stratification. Recently, many researches have been published by using deep learning (DL) and machine learning (ML) methods and, more commonly, artificial intelligence (AI). This paper presents a Dimensionality Reduction Framework Using Metaheuristic Optimization with Deep Learning Models for the Amyotrophic Lateral Sclerosis Disease Progression Prediction (DRMODL-ALSDP) method. The aim is to provide an effectual model for the progression prediction of ALS disease using advanced techniques. Initially, the data pre-processing stage applies min-mx normalization to transform raw data into a suitable format. Furthermore, SMOTE is employed to address class imbalance by upsampling the minority classes in disease progression stages. Furthermore, the binary swordfish movement optimization algorithm (BSMOA) technique is used for feature selection. Moreover, the hybrid of a temporal convolutional network and long short-term memory with attention mechanism (TCN-LSTM-AM) technique is employed for the classification process. Finally, the marine predator's algorithm (MPA) technique optimally fine-tunes the hyperparameter values and improves classification performance. A widespread simulation is performed to verify the performance of the DRMODL-ALSDP model. The comparison study of the DRMODL-ALSDP model accentuated the superior accuracy output of 98.17% over existing methods. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41345272</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1038/s41598-025-30913-6"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41345272%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41345272"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41345272"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=An+efficient+dimensionality+reduction+framework+using+metaheuristic+optimization+with+deep+learning+models+for+amyotrophic+lateral+sclerosis+disease+progression+prediction."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-4" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-4'); showBlock('bibtex-hide-2025-12-05_01-35-25-4'); hideBlock('bibtex-show-2025-12-05_01-35-25-4'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-4" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-4'); hideBlock('bibtex-hide-2025-12-05_01-35-25-4'); showBlock('bibtex-show-2025-12-05_01-35-25-4');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-4" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41345272,<br> year = {2025},<br> author = {Duhayyim, MA},<br> title = {An efficient dimensionality reduction framework using metaheuristic optimization with deep learning models for amyotrophic lateral sclerosis disease progression prediction.},<br> journal = {Scientific reports},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1038/s41598-025-30913-6},<br> pmid = {41345272},<br> issn = {2045-2322},<br> abstract = {Amyotrophic lateral sclerosis (ALS) is a disastrous neuro-degenerative infection which affects motor neuron inhabitants of the spinal cord, brainstem, and cerebral cortex, resulting in progressive disorder and demise from respiratory difficulty. ALS is considerably assorted disorder comprising symptoms such as muscle weakness, difficulty in swallowing, speaking, breathing, and changes in mental and emotional health. Hence, this disease requires more beneficial medication and also, successful treatment is affected by heterogeneous disease development, resulting in issues with patient stratification. Recently, many researches have been published by using deep learning (DL) and machine learning (ML) methods and, more commonly, artificial intelligence (AI). This paper presents a Dimensionality Reduction Framework Using Metaheuristic Optimization with Deep Learning Models for the Amyotrophic Lateral Sclerosis Disease Progression Prediction (DRMODL-ALSDP) method. The aim is to provide an effectual model for the progression prediction of ALS disease using advanced techniques. Initially, the data pre-processing stage applies min-mx normalization to transform raw data into a suitable format. Furthermore, SMOTE is employed to address class imbalance by upsampling the minority classes in disease progression stages. Furthermore, the binary swordfish movement optimization algorithm (BSMOA) technique is used for feature selection. Moreover, the hybrid of a temporal convolutional network and long short-term memory with attention mechanism (TCN-LSTM-AM) technique is employed for the classification process. Finally, the marine predator's algorithm (MPA) technique optimally fine-tunes the hyperparameter values and improves classification performance. A widespread simulation is performed to verify the performance of the DRMODL-ALSDP model. The comparison study of the DRMODL-ALSDP model accentuated the superior accuracy output of 98.17% over existing methods.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04<br>CmpDate: 2025-12-04 </p> <p class="ESP-citation-author"> Kamiyama D, Kamiyama R, Nishida Y, et al (2025) </p> <p class="ESP-citation-title"> <b>The Vap33 signaling axis precisely coordinates the timing of motoneuron dendritogenesis in neural map development.</b> </p> <p class="ESP-citation-data"> <i>Nature communications</i>, <b>16(1):</b>10893. </p> <p class="ESP-citation-abstract"> In Drosophila motoneurons, spatiotemporal dendritic patterns are established in the ventral nerve cord. While many guidance cues have been identified, the mechanisms of temporal regulation remain unknown. Previously, we identified the actin modulator Cdc42 GTPase as a key factor in this process. In this report, we further identify the upstream factors that activate Cdc42. Using single-cell genetics, FRET-based imaging, and biochemical techniques, we demonstrate that the guanine nucleotide exchange factor Vav is anchored to the plasma membrane via the Eph receptor tyrosine kinase, enabling Cdc42 activation. VAMP-associated protein 33 (Vap33), a potential Eph ligand supplied non-cell-autonomously, may induce Eph autophosphorylation, initiating downstream signaling. Traditionally known as an ER-resident protein, Vap33 is secreted extracellularly at the onset of Cdc42 activation, acting as a temporal cue. In humans, VAPB-the ortholog of Vap33-is similarly secreted in the spinal cord, and its dysregulation leads to amyotrophic lateral sclerosis type 8 (ALS8). Our findings may help inform future studies on how VAPB signaling contributes to motor circuit formation in both physiological and disease contexts. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41345183</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41345183%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41345183"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41345183"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=The+Vap33+signaling+axis+precisely+coordinates+the+timing+of+motoneuron+dendritogenesis+in+neural+map+development."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-5" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-5'); showBlock('bibtex-hide-2025-12-05_01-35-25-5'); hideBlock('bibtex-show-2025-12-05_01-35-25-5'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-5" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-5'); hideBlock('bibtex-hide-2025-12-05_01-35-25-5'); showBlock('bibtex-show-2025-12-05_01-35-25-5');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-5" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41345183,<br> year = {2025},<br> author = {Kamiyama, D and Kamiyama, R and Nishida, Y and Sego, A and Vining, GB and Bui, KC and Fitch, M and Do, HGT and Avraham, O and Chihara, T},<br> title = {The Vap33 signaling axis precisely coordinates the timing of motoneuron dendritogenesis in neural map development.},<br> journal = {Nature communications},<br> volume = {16},<br> number = {1},<br> pages = {10893},<br> pmid = {41345183},<br> issn = {2041-1723},<br> support = {NS107558//U.S. Department of Health & Human Services | NIH | National Institute of Neurological Disorders and Stroke (NINDS)/ ; },<br> mesh = {Animals ; *Motor Neurons/metabolism/cytology ; *Drosophila Proteins/metabolism/genetics ; Signal Transduction ; cdc42 GTP-Binding Protein/metabolism ; Drosophila melanogaster/metabolism ; *Dendrites/metabolism ; *Neurogenesis/physiology ; Humans ; Amyotrophic Lateral Sclerosis/genetics/metabolism ; Cell Membrane/metabolism ; GTP-Binding Proteins ; },<br> abstract = {In Drosophila motoneurons, spatiotemporal dendritic patterns are established in the ventral nerve cord. While many guidance cues have been identified, the mechanisms of temporal regulation remain unknown. Previously, we identified the actin modulator Cdc42 GTPase as a key factor in this process. In this report, we further identify the upstream factors that activate Cdc42. Using single-cell genetics, FRET-based imaging, and biochemical techniques, we demonstrate that the guanine nucleotide exchange factor Vav is anchored to the plasma membrane via the Eph receptor tyrosine kinase, enabling Cdc42 activation. VAMP-associated protein 33 (Vap33), a potential Eph ligand supplied non-cell-autonomously, may induce Eph autophosphorylation, initiating downstream signaling. Traditionally known as an ER-resident protein, Vap33 is secreted extracellularly at the onset of Cdc42 activation, acting as a temporal cue. In humans, VAPB-the ortholog of Vap33-is similarly secreted in the spinal cord, and its dysregulation leads to amyotrophic lateral sclerosis type 8 (ALS8). Our findings may help inform future studies on how VAPB signaling contributes to motor circuit formation in both physiological and disease contexts.},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-05_01-35-25-5" class="mesh-switch" onClick="showBlock('mesh-2025-12-05_01-35-25-5'); showBlock('mesh-hide-2025-12-05_01-35-25-5'); hideBlock('mesh-show-2025-12-05_01-35-25-5'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-05_01-35-25-5" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-05_01-35-25-5'); hideBlock('mesh-hide-2025-12-05_01-35-25-5'); showBlock('mesh-show-2025-12-05_01-35-25-5');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-05_01-35-25-5" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">Animals</span><br> <span class="mesh-term">*Motor Neurons/metabolism/cytology</span><br> <span class="mesh-term">*Drosophila Proteins/metabolism/genetics</span><br> <span class="mesh-term">Signal Transduction</span><br> <span class="mesh-term">cdc42 GTP-Binding Protein/metabolism</span><br> <span class="mesh-term">Drosophila melanogaster/metabolism</span><br> <span class="mesh-term">*Dendrites/metabolism</span><br> <span class="mesh-term">*Neurogenesis/physiology</span><br> <span class="mesh-term">Humans</span><br> <span class="mesh-term">Amyotrophic Lateral Sclerosis/genetics/metabolism</span><br> <span class="mesh-term">Cell Membrane/metabolism</span><br> <span class="mesh-term">GTP-Binding Proteins</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04 </p> <p class="ESP-citation-author"> Bahbah EI (2025) </p> <p class="ESP-citation-title"> <b>Tetramethylpyrazine nitrone: a multifaceted neuroprotective agent in neurodegenerative disorders.</b> </p> <p class="ESP-citation-data"> <i>Neurodegenerative disease management</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> Neurodegenerative disorders such as Alzheimer's disease (AD), Parkinson's disease (PD), and amyotrophic lateral sclerosis (ALS) share key pathological features, including oxidative stress, mitochondrial dysfunction, and impaired protein homeostasis, yet remain without effective disease-modifying therapies. Tetramethylpyrazine nitrone (TBN), a synthetic derivative of tetramethylpyrazine bearing a free radical-scavenging nitrone moiety, has emerged as a promising multi-target neuroprotective agent. This review synthesizes preclinical and clinical data supporting TBN's therapeutic potential in AD, PD, and ALS. In AD models, TBN reduces amyloid-β accumulation and tau hyperphosphorylation, enhances autophagic clearance, preserves synaptic integrity, and improves cognitive performance. In PD models, TBN confers dopaminergic neuroprotection, restores motor function, and promotes α-synuclein degradation, effects mediated largely through activation of the PGC-1α/Nrf2 pathway and augmentation of the ubiquitin-proteasome system (UPS). In ALS models, TBN mitigates motor neuron loss, improves motor performance, and extends survival, likely via the PGC-1α/Nrf2/HO-1 axis and enhanced autophagic activity. Phase I studies have established TBN's favorable oral and intravenous pharmacokinetics, effective blood - brain barrier penetration, and overall safety and tolerability in healthy volunteers. Owing to its multi-pathway mechanism, principally engaging antioxidant/mitochondrial pathways and proteostasis (autophagy/UPS), TBN represents a compelling candidate for continued clinical development, either as monotherapy or in combination with disease-specific interventions. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41345047</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1080/17582024.2025.2598227"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41345047%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41345047"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41345047"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Tetramethylpyrazine+nitrone:+a+multifaceted+neuroprotective+agent+in+neurodegenerative+disorders."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-6" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-6'); showBlock('bibtex-hide-2025-12-05_01-35-25-6'); hideBlock('bibtex-show-2025-12-05_01-35-25-6'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-6" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-6'); hideBlock('bibtex-hide-2025-12-05_01-35-25-6'); showBlock('bibtex-show-2025-12-05_01-35-25-6');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-6" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41345047,<br> year = {2025},<br> author = {Bahbah, EI},<br> title = {Tetramethylpyrazine nitrone: a multifaceted neuroprotective agent in neurodegenerative disorders.},<br> journal = {Neurodegenerative disease management},<br> volume = {},<br> number = {},<br> pages = {1-15},<br> doi = {10.1080/17582024.2025.2598227},<br> pmid = {41345047},<br> issn = {1758-2032},<br> abstract = {Neurodegenerative disorders such as Alzheimer's disease (AD), Parkinson's disease (PD), and amyotrophic lateral sclerosis (ALS) share key pathological features, including oxidative stress, mitochondrial dysfunction, and impaired protein homeostasis, yet remain without effective disease-modifying therapies. Tetramethylpyrazine nitrone (TBN), a synthetic derivative of tetramethylpyrazine bearing a free radical-scavenging nitrone moiety, has emerged as a promising multi-target neuroprotective agent. This review synthesizes preclinical and clinical data supporting TBN's therapeutic potential in AD, PD, and ALS. In AD models, TBN reduces amyloid-β accumulation and tau hyperphosphorylation, enhances autophagic clearance, preserves synaptic integrity, and improves cognitive performance. In PD models, TBN confers dopaminergic neuroprotection, restores motor function, and promotes α-synuclein degradation, effects mediated largely through activation of the PGC-1α/Nrf2 pathway and augmentation of the ubiquitin-proteasome system (UPS). In ALS models, TBN mitigates motor neuron loss, improves motor performance, and extends survival, likely via the PGC-1α/Nrf2/HO-1 axis and enhanced autophagic activity. Phase I studies have established TBN's favorable oral and intravenous pharmacokinetics, effective blood - brain barrier penetration, and overall safety and tolerability in healthy volunteers. Owing to its multi-pathway mechanism, principally engaging antioxidant/mitochondrial pathways and proteostasis (autophagy/UPS), TBN represents a compelling candidate for continued clinical development, either as monotherapy or in combination with disease-specific interventions.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04 </p> <p class="ESP-citation-author"> Marimbun M, Nengsih N, S Saidah (2025) </p> <p class="ESP-citation-title"> <b>The invisible twitch: How fasciculations in ALS often go unnoticed by patients.</b> </p> <p class="ESP-citation-data"> </p> <p class="ESP-citation-abstract"> </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41345007</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1016/j.jns.2025.125676"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41345007%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41345007"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41345007"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=The+invisible+twitch:+How+fasciculations+in+ALS+often+go+unnoticed+by+patients."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-7" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-7'); showBlock('bibtex-hide-2025-12-05_01-35-25-7'); hideBlock('bibtex-show-2025-12-05_01-35-25-7'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-7" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-7'); hideBlock('bibtex-hide-2025-12-05_01-35-25-7'); showBlock('bibtex-show-2025-12-05_01-35-25-7');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-7" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41345007,<br> year = {2025},<br> author = {Marimbun, M and Nengsih, N and Saidah, S},<br> title = {The invisible twitch: How fasciculations in ALS often go unnoticed by patients.},<br> journal = {Journal of the neurological sciences},<br> volume = {},<br> number = {},<br> pages = {125676},<br> doi = {10.1016/j.jns.2025.125676},<br> pmid = {41345007},<br> issn = {1878-5883},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04<br>CmpDate: 2025-12-04 </p> <p class="ESP-citation-author"> Saunders N, Magnussen C, Kang H, et al (2025) </p> <p class="ESP-citation-title"> <b>Comprehensive analysis platform to understand, remedy, and eliminate amyotrophic lateral sclerosis (CAPTURE ALS): Study protocol for a Canadian multicenter, multimodal, longitudinal observational study.</b> </p> <p class="ESP-citation-data"> <i>PloS one</i>, <b>20(12):</b>e0332430 pii:PONE-D-24-55157. </p> <p class="ESP-citation-abstract"> BACKGROUND: The marked heterogeneity of Amyotrophic Lateral Sclerosis (ALS) combined with a lack of biomarkers are key contributing factors to the lack of disease-modifying treatments. The Comprehensive Analysis Platform to Understand Remedy and Eliminate ALS (CAPTURE ALS) is a Canadian platform designed to create the most comprehensive picture of people living with ALS with the objective of facilitating ALS research initiatives worldwide.<br><br>OBJECTIVES: The main aims of CAPTURE ALS include: (1) to characterize ALS and healthy controls with biosamples and data in order to provide the most comprehensive picture of individuals living with ALS to date; (2) to create a de-identified database and biosample repository linked to detailed clinical information; and (3) to develop and implement an inclusive and transparent participant engagement strategy to be active throughout all stages of CAPTURE ALS.<br><br>METHODS/RESULTS: CAPTURE ALS is a prospective, multicenter, observational, longitudinal study. People living with ALS, or a related disease and healthy controls undergo a harmonized protocol including the collection of detailed clinical information, neurological and cognitive examination, speech recording, advanced magnetic resonance imaging, and biosampling. Data and samples are stored in a biobank operating under an open science governance framework. An inclusive and transparent participant engagement strategy was designed and implemented throughout all stages of CAPTURE ALS. Four sites are operating in the consortium with a fifth being onboarded. The target enrollment is 120 affected participants and 50 controls, with the first participant visit having occurred in March 2022. Recruitment is ongoing.<br><br>DISCUSSION: CAPTURE ALS is a scalable clinical research platform that connects scientists and patients to facilitate efficient translational research. The unique and deeply phenotyped data and biosamples are a global resource towards the development of biomarkers and understanding ALS biology. This study is registered at clinicaltrials.gov (NCT: NCT05204017). </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41343582</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1371/journal.pone.0332430"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41343582%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41343582"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41343582"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Comprehensive+analysis+platform+to+understand,+remedy,+and+eliminate+amyotrophic+lateral+sclerosis+(CAPTURE+ALS):+Study+protocol+for+a+Canadian+multicenter,+multimodal,+longitudinal+observational+study."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-8" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-8'); showBlock('bibtex-hide-2025-12-05_01-35-25-8'); hideBlock('bibtex-show-2025-12-05_01-35-25-8'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-8" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-8'); hideBlock('bibtex-hide-2025-12-05_01-35-25-8'); showBlock('bibtex-show-2025-12-05_01-35-25-8');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-8" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41343582,<br> year = {2025},<br> author = {Saunders, N and Magnussen, C and Kang, H and Blais, M and Bhinder, H and Pfeffer, G and Genuis, SK and Bouvier, L and Anand, T and Abou-Haidar, R and Abrahao, A and Boivin, MN and Bowser, R and Bubela, T and Chiappini, J and Das, S and Dhanoa, A and Dupré, N and Evans, A and Ferry, N and Frater, Y and Genge, A and Graham, SJ and Greiner, R and Medina, YI and Johnston, WS and Jones, KE and Karamchandani, J and Kriz, J and Luth, W and Matte, G and Rogaeva, E and Robertson, J and Seres, P and Tam, F and Taylor, D and Tremblay-Desbiens, C and Velde, CV and Yunusova, Y and Zinman, L and Kalra, S},<br> title = {Comprehensive analysis platform to understand, remedy, and eliminate amyotrophic lateral sclerosis (CAPTURE ALS): Study protocol for a Canadian multicenter, multimodal, longitudinal observational study.},<br> journal = {PloS one},<br> volume = {20},<br> number = {12},<br> pages = {e0332430},<br> doi = {10.1371/journal.pone.0332430},<br> pmid = {41343582},<br> issn = {1932-6203},<br> mesh = {*Amyotrophic Lateral Sclerosis/diagnosis/epidemiology/pathology ; Humans ; Canada/epidemiology ; Longitudinal Studies ; Prospective Studies ; Biological Specimen Banks ; Female ; Male ; Biomarkers ; },<br> abstract = {BACKGROUND: The marked heterogeneity of Amyotrophic Lateral Sclerosis (ALS) combined with a lack of biomarkers are key contributing factors to the lack of disease-modifying treatments. The Comprehensive Analysis Platform to Understand Remedy and Eliminate ALS (CAPTURE ALS) is a Canadian platform designed to create the most comprehensive picture of people living with ALS with the objective of facilitating ALS research initiatives worldwide.<br><br>OBJECTIVES: The main aims of CAPTURE ALS include: (1) to characterize ALS and healthy controls with biosamples and data in order to provide the most comprehensive picture of individuals living with ALS to date; (2) to create a de-identified database and biosample repository linked to detailed clinical information; and (3) to develop and implement an inclusive and transparent participant engagement strategy to be active throughout all stages of CAPTURE ALS.<br><br>METHODS/RESULTS: CAPTURE ALS is a prospective, multicenter, observational, longitudinal study. People living with ALS, or a related disease and healthy controls undergo a harmonized protocol including the collection of detailed clinical information, neurological and cognitive examination, speech recording, advanced magnetic resonance imaging, and biosampling. Data and samples are stored in a biobank operating under an open science governance framework. An inclusive and transparent participant engagement strategy was designed and implemented throughout all stages of CAPTURE ALS. Four sites are operating in the consortium with a fifth being onboarded. The target enrollment is 120 affected participants and 50 controls, with the first participant visit having occurred in March 2022. Recruitment is ongoing.<br><br>DISCUSSION: CAPTURE ALS is a scalable clinical research platform that connects scientists and patients to facilitate efficient translational research. The unique and deeply phenotyped data and biosamples are a global resource towards the development of biomarkers and understanding ALS biology. This study is registered at clinicaltrials.gov (NCT: NCT05204017).},<br> }<br> </p> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> MeSH Terms: </p> </div> <div class="cite-links-list-item-content" > <p ID="mesh-show-2025-12-05_01-35-25-8" class="mesh-switch" onClick="showBlock('mesh-2025-12-05_01-35-25-8'); showBlock('mesh-hide-2025-12-05_01-35-25-8'); hideBlock('mesh-show-2025-12-05_01-35-25-8'); "> show MeSH Terms </p> <p ID="mesh-hide-2025-12-05_01-35-25-8" class="mesh-switch start-hidden" onClick="hideBlock('mesh-2025-12-05_01-35-25-8'); hideBlock('mesh-hide-2025-12-05_01-35-25-8'); showBlock('mesh-show-2025-12-05_01-35-25-8');"> hide MeSH Terms </p> </div> </div> <div ID="mesh-2025-12-05_01-35-25-8" class="start-hidden"> <p class="mesh-listing"> <span class="mesh-term">*Amyotrophic Lateral Sclerosis/diagnosis/epidemiology/pathology</span><br> <span class="mesh-term">Humans</span><br> <span class="mesh-term">Canada/epidemiology</span><br> <span class="mesh-term">Longitudinal Studies</span><br> <span class="mesh-term">Prospective Studies</span><br> <span class="mesh-term">Biological Specimen Banks</span><br> <span class="mesh-term">Female</span><br> <span class="mesh-term">Male</span><br> <span class="mesh-term">Biomarkers</span><br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04 </p> <p class="ESP-citation-author"> Braspenning SE, Ohnezeit D, DeGulis OA, et al (2025) </p> <p class="ESP-citation-title"> <b>TDP-43 promotes efficient HSV-1 replication in human DRG-derived neurons.</b> </p> <p class="ESP-citation-data"> <i>Journal of virology</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> TAR DNA-binding protein 43 (TDP-43) is a versatile nuclear RNA-binding protein that performs important functions in RNA localization, processing, and stability. In the neurodegenerative disease amyotrophic lateral sclerosis (ALS) TDP-43 forms toxic, insoluble cytoplasmic aggregates that ultimately lead to neuronal loss. Although TDP-43 is expressed in every cell type, its function and subcellular localization are particularly important for neuronal homeostasis. However, it is unknown if TDP-43 has a role during herpesvirus infection. Herpes simplex virus type-1 (HSV-1), a ubiquitous neurotropic pathogen, is considered a contributing factor to neurodegenerative disorders. In this study, we tested the requirement for TDP-43 during HSV-1 infection in neuronal and non-neuronal cells. HSV-1 infection of epithelial cells and primary fibroblasts did not change overall TDP-43 abundance, nor did TDP-43 depletion detectably alter HSV-1 productive replication in a multicycle growth experiment. By contrast, when TDP-43 was depleted in neuronally-derived, differentiated HD10.6 cells, HSV-1 infectious virus production was significantly reduced in both single- and multicycle growth experiments. Notably, TDP-43 depletion restricts viral lytic gene expression at the immediate-early phase. Through nanopore direct RNA-sequencing, we uncovered enhanced intron retention in two essential viral genes-ICP0 and UL15-upon TDP-43 depletion. Thus, while depletion of TDP-43 does not detectably affect HSV-1 reproduction in epithelial cells and fibroblasts, TDP-43 is required for efficient replication in HD10.6 cells through modifying the abundance and splicing of viral mRNAs.IMPORTANCEHerpes simplex virus type-1 is a widespread neurotropic pathogen that can cause life-threatening infections of the brain and is increasingly linked to neurodegenerative disease. However, due to the lack of scalable in vitro human neuronal models or small animal models that recapitulate disease, little is known about virus-host interactions in neurons specifically. Using human epithelial cells, primary fibroblasts and a human neuron-derived cell line, we uncovered a cell type specific TDP-43 requirement for efficient HSV-1 virus replication. TDP-43 is a critical neuronal disease factor gene, and we showed it promotes HSV-1 gene expression and splicing of viral mRNAs in neuron-derived cells. This raises the possibility that targeting of TDP-43 could reveal a new antiviral strategy for severe HSV-1 infections. This work further provides valuable insights into the possible etiology of neurodegenerative disease and highlights the importance of studying virus-host interactions in relevant cell types. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41342556</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1128/jvi.00915-25"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41342556%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41342556"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41342556"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=TDP-43+promotes+efficient+HSV-1+replication+in+human+DRG-derived+neurons."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-9" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-9'); showBlock('bibtex-hide-2025-12-05_01-35-25-9'); hideBlock('bibtex-show-2025-12-05_01-35-25-9'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-9" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-9'); hideBlock('bibtex-hide-2025-12-05_01-35-25-9'); showBlock('bibtex-show-2025-12-05_01-35-25-9');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-9" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41342556,<br> year = {2025},<br> author = {Braspenning, SE and Ohnezeit, D and DeGulis, OA and Wilson, AC and Mohr, IJ},<br> title = {TDP-43 promotes efficient HSV-1 replication in human DRG-derived neurons.},<br> journal = {Journal of virology},<br> volume = {},<br> number = {},<br> pages = {e0091525},<br> doi = {10.1128/jvi.00915-25},<br> pmid = {41342556},<br> issn = {1098-5514},<br> abstract = {TAR DNA-binding protein 43 (TDP-43) is a versatile nuclear RNA-binding protein that performs important functions in RNA localization, processing, and stability. In the neurodegenerative disease amyotrophic lateral sclerosis (ALS) TDP-43 forms toxic, insoluble cytoplasmic aggregates that ultimately lead to neuronal loss. Although TDP-43 is expressed in every cell type, its function and subcellular localization are particularly important for neuronal homeostasis. However, it is unknown if TDP-43 has a role during herpesvirus infection. Herpes simplex virus type-1 (HSV-1), a ubiquitous neurotropic pathogen, is considered a contributing factor to neurodegenerative disorders. In this study, we tested the requirement for TDP-43 during HSV-1 infection in neuronal and non-neuronal cells. HSV-1 infection of epithelial cells and primary fibroblasts did not change overall TDP-43 abundance, nor did TDP-43 depletion detectably alter HSV-1 productive replication in a multicycle growth experiment. By contrast, when TDP-43 was depleted in neuronally-derived, differentiated HD10.6 cells, HSV-1 infectious virus production was significantly reduced in both single- and multicycle growth experiments. Notably, TDP-43 depletion restricts viral lytic gene expression at the immediate-early phase. Through nanopore direct RNA-sequencing, we uncovered enhanced intron retention in two essential viral genes-ICP0 and UL15-upon TDP-43 depletion. Thus, while depletion of TDP-43 does not detectably affect HSV-1 reproduction in epithelial cells and fibroblasts, TDP-43 is required for efficient replication in HD10.6 cells through modifying the abundance and splicing of viral mRNAs.IMPORTANCEHerpes simplex virus type-1 is a widespread neurotropic pathogen that can cause life-threatening infections of the brain and is increasingly linked to neurodegenerative disease. However, due to the lack of scalable in vitro human neuronal models or small animal models that recapitulate disease, little is known about virus-host interactions in neurons specifically. Using human epithelial cells, primary fibroblasts and a human neuron-derived cell line, we uncovered a cell type specific TDP-43 requirement for efficient HSV-1 virus replication. TDP-43 is a critical neuronal disease factor gene, and we showed it promotes HSV-1 gene expression and splicing of viral mRNAs in neuron-derived cells. This raises the possibility that targeting of TDP-43 could reveal a new antiviral strategy for severe HSV-1 infections. This work further provides valuable insights into the possible etiology of neurodegenerative disease and highlights the importance of studying virus-host interactions in relevant cell types.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04 </p> <p class="ESP-citation-author"> Jash A, Hay A, JC Zimring (2025) </p> <p class="ESP-citation-title"> <b>Suppression of RBC alloimmunization and regulation of CD4[+]T cell dependence by C3 is not due to genetic confounders in mice.</b> </p> <p class="ESP-citation-data"> <i>Transfusion</i> [Epub ahead of print]. </p> <p class="ESP-citation-abstract"> BACKGROUND: Activation of complement protein C3 generally enhances antibody responses and C3-null mice have decreased antibody-based immunity. Mener et al. have reported a paradoxical suppressor function for C3 in alloimmunization to transfused RBCs as alloantibodies are increased in C3-null mice. Moreover, C3 regulated the CD4[+] T cell dependence of the immune response. However, the C3-null mice used were on a mixed B6/129 genetic background. We have previously reported that 129 mice have significantly higher alloimmune responses to RBC transfusion and we mapped a genetic locus that contains C3 (amongst other genes). Given the surprising nature of Mener et al.'s findings and the potential confounding from 129 genetic elements, it is a necessary part of scientific rigor to suspect that contaminating 129 elements rather than the deletion of C3 caused the observed biology.<br><br>METHODS: We used CRISPR/Cas9 to generate a new C3-null mouse (C3Cr-KO) directly in B6 mice lacking any 129 genetic elements. B6 and C3Cr-KO mice were transfused with KEL-K2med RBCs with or without CD4[+] T cell depletion and serum α-KEL IgM and Igs were quantified by crossmatch.<br><br>RESULTS: Identical to the findings of Mener et al., alloimmunization was increased in C3Cr-KO mice compared to wild-type B6 mice and CD4[+]T cell dependence of the alloimmune response was reversed.<br><br>CONCLUSIONS: The current findings eliminate a common confounder present in murine knockout systems that has caused erroneous conclusions in other settings. Both the conclusion that the presence of the C3 gene decreases RBC alloimmunization and regulates CD4[+] T cell dependence was confirmed. </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41342465</span> </p> <!-- DOI TOP --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Publisher: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://doi.org/10.1111/trf.70026"> this document via DOI </A> </p> </div> </div> <!-- DOI BOT --> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41342465%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41342465"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41342465"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Suppression+of+RBC+alloimmunization+and+regulation+of+CD4[+]T+cell+dependence+by+C3+is+not+due+to+genetic+confounders+in+mice."> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-10" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-10'); showBlock('bibtex-hide-2025-12-05_01-35-25-10'); hideBlock('bibtex-show-2025-12-05_01-35-25-10'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-10" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-10'); hideBlock('bibtex-hide-2025-12-05_01-35-25-10'); showBlock('bibtex-show-2025-12-05_01-35-25-10');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-10" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41342465,<br> year = {2025},<br> author = {Jash, A and Hay, A and Zimring, JC},<br> title = {Suppression of RBC alloimmunization and regulation of CD4[+]T cell dependence by C3 is not due to genetic confounders in mice.},<br> journal = {Transfusion},<br> volume = {},<br> number = {},<br> pages = {},<br> doi = {10.1111/trf.70026},<br> pmid = {41342465},<br> issn = {1537-2995},<br> support = {P01HL169552/NH/NIH HHS/United States ; },<br> abstract = {BACKGROUND: Activation of complement protein C3 generally enhances antibody responses and C3-null mice have decreased antibody-based immunity. Mener et al. have reported a paradoxical suppressor function for C3 in alloimmunization to transfused RBCs as alloantibodies are increased in C3-null mice. Moreover, C3 regulated the CD4[+] T cell dependence of the immune response. However, the C3-null mice used were on a mixed B6/129 genetic background. We have previously reported that 129 mice have significantly higher alloimmune responses to RBC transfusion and we mapped a genetic locus that contains C3 (amongst other genes). Given the surprising nature of Mener et al.'s findings and the potential confounding from 129 genetic elements, it is a necessary part of scientific rigor to suspect that contaminating 129 elements rather than the deletion of C3 caused the observed biology.<br><br>METHODS: We used CRISPR/Cas9 to generate a new C3-null mouse (C3Cr-KO) directly in B6 mice lacking any 129 genetic elements. B6 and C3Cr-KO mice were transfused with KEL-K2med RBCs with or without CD4[+] T cell depletion and serum α-KEL IgM and Igs were quantified by crossmatch.<br><br>RESULTS: Identical to the findings of Mener et al., alloimmunization was increased in C3Cr-KO mice compared to wild-type B6 mice and CD4[+]T cell dependence of the alloimmune response was reversed.<br><br>CONCLUSIONS: The current findings eliminate a common confounder present in murine knockout systems that has caused erroneous conclusions in other settings. Both the conclusion that the presence of the C3 gene decreases RBC alloimmunization and regulates CD4[+] T cell dependence was confirmed.},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> <!-- CITATION TOP ================================================== --> <div class="ESP-citation"> <p class="ESP-citation-number" style="text-align:right;"> RevDate: 2025-12-04<br>CmpDate: 2025-12-04 </p> <p class="ESP-citation-author"> Finsterer J (2025) </p> <p class="ESP-citation-title"> <b>Are Insulin and Metformin Really Protective on Amyotrophic Lateral Sclerosis by Blocking the Astrocytic Cx43 Channel?.</b> </p> <p class="ESP-citation-data"> <i>Chronic diseases and translational medicine</i>, <b>11(4):</b>318-319. </p> <p class="ESP-citation-abstract"> </p> <div class="ESP-Additional-Links"> <p class="ESP-add-links-title"> Additional Links: <span style="float:right;font-weight:600;font-style:normal;font-size:90%;">PMID-41341745</span> </p> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> PubMed: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="http://www.ncbi.nlm.nih.gov/pubmed/?term=41341745%5BPMID%5D"> this document </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed&from_uid=41341745"> related </A> | <A href="http://www.ncbi.nlm.nih.gov/pubmed?linkname=pubmed_pubmed_citedin&from_uid=41341745"> cited-by </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Google: </p> </div> <div class="cite-links-list-item-content" > <p> <A href="https://scholar.google.com/scholar?q=Are+Insulin+and+Metformin+Really+Protective+on+Amyotrophic+Lateral+Sclerosis+by+Blocking+the+Astrocytic+Cx43+Channel?"> search Google Scholar on this document's title </A> </p> </div> </div> <div class="RJR-main-content RJR-flex clearfix cite-links-list-item" > <div class="cite-links-list-item-source" > <p> Citation: </p> </div> <div class="cite-links-list-item-content" > <p ID="bibtex-show-2025-12-05_01-35-25-11" class="bibtex-switch" onClick="showBlock('citation-2025-12-05_01-35-25-11'); showBlock('bibtex-hide-2025-12-05_01-35-25-11'); hideBlock('bibtex-show-2025-12-05_01-35-25-11'); "> show bibtex listing </p> <p ID="bibtex-hide-2025-12-05_01-35-25-11" class="bibtex-switch start-hidden" onClick="hideBlock('citation-2025-12-05_01-35-25-11'); hideBlock('bibtex-hide-2025-12-05_01-35-25-11'); showBlock('bibtex-show-2025-12-05_01-35-25-11');"> hide bibtex listing </p> </div> </div> <div ID="citation-2025-12-05_01-35-25-11" class="start-hidden"> <p class="bibtex-listing"> @article {pmid41341745,<br> year = {2025},<br> author = {Finsterer, J},<br> title = {Are Insulin and Metformin Really Protective on Amyotrophic Lateral Sclerosis by Blocking the Astrocytic Cx43 Channel?.},<br> journal = {Chronic diseases and translational medicine},<br> volume = {11},<br> number = {4},<br> pages = {318-319},<br> pmid = {41341745},<br> issn = {2589-0514},<br> }<br> </p> </div> </div> <!-- class="Additional-Links" --> </div> <!-- ESP-citation --> <!-- CITATION BOT ================================================== --> </div> <!-- class="ESP-citation-list" --> <!-- BOT OF CITATIONS ================================================ --> <!-- $$$ HTML INCLUDE BOT $$$ ============================================== --> <!-- ================================================================== --> <!-- DIV WITH COMMAND TO LOAD NEXT BLOCK - top --> <!-- ================================================================== --> <div class="ESP-citation-block-loader"> <p class = "get-next" ID="get-inc-xxx200-html"> <span style="float:left;"> ▼ </span> <span style="float:right;"> ▼ </span> LOAD NEXT 100 CITATIONS </p> </div> <!-- ================================================================== --> <!-- DIV WITH COMMAND TO LOAD NEXT BLOCK - bot --> <!-- ================================================================== --> <!-- ================================================================== --> <!-- EMPTY DIV to hold next block - top --> <!-- ================================================================== --> <div id="hold-inc-xxx200-html"> </div> <!-- ================================================================== --> <!-- EMPTY DIV to hold next block - bot --> <!-- ================================================================== --> <!-- ================================================================== --> <!-- SCRIPT: LOAD NEXT BLOCK - top --> <!-- ================================================================== --> <script> $(document).ready(function(){ $("#get-inc-xxx200-html").click(function(){ $("#hold-inc-xxx200-html").load("./inc.files/inc.xxx200.html"); }); }); </script> <!-- ================================================================== --> <!-- SCRIPT: LOAD NEXT BLOCK - bot --> <!-- ================================================================== --> </span> </div> <div class="RJR-main-content" style="margin-top:2.5em;"> <p class="RJR-H1"> RJR Experience and Expertise </p> </div> <div class="RJR-main-content RJR-flex clearfix" > <div class="vbm"> <p class="vb-header"> Researcher </p> <p> Robbins holds BS, MS, and PhD degrees in the life sciences. He served as a tenured faculty member in the Zoology and Biological Science departments at Michigan State University. He is currently exploring the intersection between genomics, microbial ecology, and biodiversity — an area that promises to transform our understanding of the biosphere. </p> </div> <div class="vbm"> <p class="vb-header"> Educator </p> <p> Robbins has extensive experience in college-level education: At MSU he taught introductory biology, genetics, and population genetics. At JHU, he was an instructor for a special course on biological database design. At FHCRC, he team-taught a graduate-level course on the history of genetics. At Bellevue College he taught medical informatics. </p> </div> <div class="vbm"> <p class="vb-header"> Administrator </p> <p> Robbins has been involved in science administration at both the federal and the institutional levels. At NSF he was a program officer for database activities in the life sciences, at DOE he was a program officer for information infrastructure in the human genome project. At the Fred Hutchinson Cancer Research Center, he served as a vice president for fifteen years. </p> </div> <div class="vbm"> <p class="vb-header"> Technologist </p> <p> Robbins has been involved with information technology since writing his first Fortran program as a college student. At NSF he was the first program officer for database activities in the life sciences. At JHU he held an appointment in the CS department and served as director of the informatics core for the Genome Data Base. At the FHCRC he was VP for Information Technology. </p> </div> <div class="vbm"> <p class="vb-header"> Publisher </p> <p> While still at Michigan State, Robbins started his first publishing venture, founding a small company that addressed the short-run publishing needs of instructors in very large undergraduate classes. For more than 20 years, Robbins has been operating <a href="http://www.esp.org">The Electronic Scholarly Publishing Project</a>, a web site dedicated to the digital publishing of critical works in science, especially classical genetics. </p> </div> <div class="vbm"> <p class="vb-header"> Speaker </p> <p> Robbins is well-known for his speaking abilities and is often called upon to provide keynote or plenary addresses at international meetings. For example, in July, 2012, he gave a well-received keynote address at the Global Biodiversity Informatics Congress, sponsored by GBIF and held in Copenhagen. The slides from that talk can be seen <a href="/portfolio/presentations/slide-sets/RJR-GBIC-2012.pdf"> HERE. </a> </p> </div> <div class="vbm"> <p class="vb-header"> Facilitator </p> <p> Robbins is a skilled meeting facilitator. He prefers a participatory approach, with part of the meeting involving dynamic breakout groups, created by the participants in real time: (1) individuals propose breakout groups; (2) everyone signs up for one (or more) groups; (3) the groups with the most interested parties then meet, with reports from each group presented and discussed in a subsequent plenary session. </p> </div> <div class="vbm"> <p class="vb-header"> Designer </p> <p> Robbins has been engaged with photography and design since the 1960s, when he worked for a professional photography laboratory. He now prefers digital photography and tools for their precision and reproducibility. He designed his first web site more than 20 years ago and he personally designed and implemented this web site. He engages in graphic design as a hobby. </p> </div> </div> </div> <!-- =================================================================== --> <!-- MAIN PAGE MIDDLE, CENTER (main) COLUMN - end --> <!-- =================================================================== --> <!-- ================================================================== --> <!-- SCRIPT: LOAD BIBLIO MATERIAL - top --> <!-- ================================================================== --> <script> $(document).ready(function(){ $("#xxxxx1").load("./inc.files/inc.xxxxx1.html"); $("#num-hits1").load("./inc.files/hits.txt"); $("#num-hits2").load("./inc.files/hits.txt"); $("#num-hits3").load("./inc.files/hits.txt"); $("#num-hits4").load("./inc.files/hits.txt"); $("#num-hits5").load("./inc.files/hits.txt"); $("#num-hits6").load("./inc.files/hits.txt"); $("#query-date").load("./inc.files/updated.txt"); $("#qdate").load("./inc.files/updated.txt"); }); </script> <!-- =================================================================== --> <!-- MAIN PAGE MIDDLE, RIGHT (sidebar) COLUMN - top --> <!-- =================================================================== --> <div class="RJR-main-content-right " > <div class="sticky40"> <div class="ESP-sidebar ESP-outline ESP-round ESP-sidebar-pop"> <div class="sidebar-banner"> <div class="sidebar-banner-contents"> Highly Recommended </div> </div> <div class="ESP-sidebar-contents" style="text-align:center;"> <!-- ============================================================== --> <!-- LINK GOES HERE --> <!-- ============================================================== --> <a target="_blank" href="https://www.amazon.com/Amyotrophic-Lateral-Sclerosis-Second-Robert/dp/1841844632/?&_encoding=UTF8&tag=electronicsch-20&linkCode=ur2&linkId=4a8de34e889a5f5fea55ac7f31c270c8&camp=1789&creative=9325"> <img src="/recommended/books/covers/als.jpg" class="" style="max-width:96%; margin-top:0.5em; margin-bottom:1.0em; border: solid 1px #333; "> </a> <p> <!-- ============================================================== --> <!-- LINK GOES HERE --> <!-- ============================================================== --> <a target="_blank" href="https://www.amazon.com/Amyotrophic-Lateral-Sclerosis-Second-Robert/dp/1841844632/?&_encoding=UTF8&tag=electronicsch-20&linkCode=ur2&linkId=4a8de34e889a5f5fea55ac7f31c270c8&camp=1789&creative=9325"> Support this website:<br>Order from Amazon<br><span style="font-size:80%;">We will earn a commission.</span> </a> </p> <p style="text-align:left; font-size:90%; letter-spacing:0.06em; line-height:120%; padding:0.5em; "> Amyotrophic Lateral Sclerosis, or ALS, is a rare, incurable neuro-degenerative disease, of unknown etiology. With this disease, both upper (brain) and lower (spinal cord) motor neurons progressively degenerate and die, rendering immobile the muscles that they innervated. For anyone with a need or desire to appreciate what is known about ALS, this book provides a good foundation. <span class="ad-book-signature"> R. Robbins</span> </p> </div> <!-- class="ESP-sidebar-contents" --> </div> <!-- class="ESP-sidebar" --> <!-- RJR QUICK CONTACT SIDEBAR =================================================== --> <div class="ESP-sidebar ESP-outline ESP-round ESP-sidebar-pop"> <div class="sidebar-banner"> <div class="sidebar-banner-contents"> Contact Robert Robbins </div> </div> <div class="ESP-sidebar-contents"> <p> 963 Red Tail Lane<br> Bellingham, WA 98226 </p> <p> 206-300-3443 </p> <p> E-mail: <a href="mailto:rjr8222@gmail.com">RJR8222@gmail.com</a> </p> </div> <!-- class="ESP-sidebar-contents" --> </div> <!-- RJR QUICK CONTACT SIDEBAR =================================================== --> <!-- RJR BLOGS SIDEBAR ========================================================== --> <div class="ESP-sidebar ESP-outline" style="background-color:#F9F9F9"> <div class="sidebar-banner"> <div class="sidebar-banner-contents"> <a href="/blogs/" style="color:#048"> RJR Blogs </a> </div> </div> <div class="ESP-sidebar-contents"> <p> <a href="/blogs/001/"> Aligning IT to Achieve Competitive Advantage </a> </p> <p> <a href="/blogs/002/"> Adding Typeset Sidenotes to a PDF </a> </p> </div> <!-- class="ESP-sidebar-contents" --> </div> <!-- class="ESP-sidebar ESP-outline" style="background-color:#F9F9F9" --> <!-- RJR BLOGS SIDEBAR ========================================================== --> <!-- RJR SEE ALSO SIDEBAR ================================================== --> <div class="ESP-sidebar ESP-outline ESP-round ESP-sidebar-pop"> <div class="sidebar-banner"> <div class="sidebar-banner-contents"> SEE ALSO </div> </div> <div class="ESP-sidebar-contents" > <p> <A HREF="/portfolio/publications"> Collection of publications by R J Robbins </A> </p> <p class="ESP-smaller"> Reprints and preprints of publications, slide presentations, instructional materials, and data compilations written or prepared by Robert Robbins. Most papers deal with computational biology, genome informatics, using information technology to support biomedical research, and related matters. </p> <p> <A HREF="https://www.researchgate.net/profile/Robert_Robbins2"> Research Gate page for R J Robbins </A> </p> <p class="ESP-smaller"> ResearchGate is a social networking site for scientists and researchers to share papers, ask and answer questions, and find collaborators. According to a study by <a href="http://www.nature.com/news/online-collaboration-scientists-and-the-social-network-1.15711"> Nature </a> and an article in Times Higher Education , it is the largest academic social network in terms of active users. </p> <p> <A HREF="/about/cv-s.pdf"> Curriculum Vitae for R J Robbins </A> </p> <p class="ESP-smaller"> short personal version </p> <p> <A HREF="/about/cv-l.pdf"> Curriculum Vitae for R J Robbins </A> </p> <p class="ESP-smaller"> long standard version </p> <!-- <p> <A HREF="/about/cv-nih.pdf"> Curriculum Vitae for R J Robbins </A> </p> <p class="ESP-smaller"> two-page NIH biographical sketch </p> --> </div> <!-- class="ESP-sidebar-contents" --> </div> <!-- RJR SEE ALSO SIDEBAR ================================================== --> <!-- ESP[INSERT:index-boldmsg.txt]ESP--> <!-- ESP[INSERT:basePATH\makesite\src\07b-whats-hot.txt]ESP --> </div> <!-- sticky --> </div> <!-- =================================================================== --> <!-- MAIN PAGE MIDDLE, RIGHT (sidebar) COLUMN - end --> <!-- =================================================================== --> </div> <!-- class="RJR-main-content" --> </div> <!-- class=RJR-main-page --> <!-- ======================================================================= --> <!-- MAIN PAGE SECTION - end --> <!-- ======================================================================= --> <!-- ===================================================================== --> <!-- MAIN PAGE, FULL WIDTH BOTTOM SECTION - top --> <!-- ===================================================================== --> <div class="RJR-main-page" style="background:white;position:relative;z-index:200;"> <div class="RJR-main-content" > <p class="RJR-H1"> RJR Picks from Around the Web <span class="space-permitting"> (updated 11 MAY 2018 ) </span> </p> </div> <div class="RJR-main-content clearfix" style="display:flex; flex-wrap:wrap;"> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> New Science </p> <div class="vb-pic"> <img src="/images/of-interest/new-science.png" alt="pic"> </div> <p class="vb-item"> <a href="/recommended/literature/crispr/"> CRISPR-Cas: Bringing precise editing to DNA manipulation. </a> </p> <p class="vb-item"> <a href="/recommended/literature/tad/"> Topologically Associating Domains (TADs) </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> Old Science </p> <div class="vb-pic"> <img src="/images/of-interest/old-science.jpg" alt="pic"> </div> <p class="vb-item"> <a href="http://www.esp.org/books/darwin/origin/facsimile/index.html"> Darwin: Origin of Species </a> </p> <p class="vb-item"> <a href="http://www.esp.org/foundations/genetics/classical/gm-65.pdf"> Mendel's original paper </a> </p> <p class="vb-item"> <a href="http://www.esp.org/foundations/genetics/classical/holdings/s/ahs-13.pdf"> The first genetic map </a> </p> <p class="vb-item"> <a href="http://www.esp.org/books/sturt/history/index.html"> A history of genetics </a> </p> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> Weird Science </p> <div class="vb-pic"> <img src="/images/of-interest/weird-science.jpg" alt="pic"> </div> <p class="vb-item"> <a href="/recommended/literature/fec-trans/"> Treating Disease with Fecal Transplantation </a> </p> <p class="vb-item"> <a href="/recommended/literature/paleo-hobbit/"> Fossils of miniature humans (hobbits) discovered in Indonesia </a> </p> <p class="vb-item"> <a href="http://doi.org/10.1126/science.aaj2038"> Using DNA as a mass-storage device for digital data. </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> Science Policy & Funding </p> <div class="vb-pic"> <img src="/images/of-interest/policy-funding.png" alt="pic"> </div> <p class="vb-item"> <a href="http://science.sciencemag.org/content/329/5997/1257.full"> <i><b>Overbuilding Research Capacity</b></i>: an important editorial in which Bruce Alberts argues that the current funding trajectory is unsustainable. </a> </p> <p class="vb-item"> <a href="http://www.pnas.org/content/111/16/5773.full"> <i><b>Rescuing US biomedical research from its systemic flaws</b></i>: Bruce Alberts and others argue that "it is time to rethink some fundamental features of the US biomedical research ecosystem." </a> </p> <p class="vb-item"> <a href="http://www.nature.com/news/gates-foundation-research-can-t-be-published-in-top-journals-1.21299"> Gates Foundation research can't be published in top journals </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> Biodiversity </p> <div class="vb-pic"> <img src="/images/of-interest/biodiversity.png" alt="pic"> </div> <p class="vb-item"> <a href="http://www.pnas.org/content/74/11/5088.full.pdf"> Woese discovers the archaea </a> </p> <p class="vb-item"> <a href="http://standardsingenomics.biomedcentral.com/articles/10.1186/s40793-016-0180-8"> Advances in biodiversity </a> </p> <p class="vb-item"> <a href="http://onlinelibrary.wiley.com/wol1/doi/10.1111/cobi.12888/abstract"> DNA barcoding shows that restaurant seafood is often not what it seems </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> <a href="/recommended/literature/symbiosis/"> Symbiosis </a> </p> <div class="vb-pic"> <a href="/recommended/literature/symbiosis/"> <img src="/images/of-interest/symbiosis.png" alt="pic"> </a> </div> <p class="vb-item"> <a href="/recommended/videos/squid-vibrio/"> Lectures on squid-vibrio symbiosis </a> </p> <p class="vb-item"> <a href="http://www.jstor.org/stable/10.1086/668166"> We are all lichens now </a> </p> <p class="vb-item"> <a href="http://www.pnas.org/content/110/9/3229.short"> Animals in a bacterial world </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> Paleontology </p> <div class="vb-pic"> <img src="/images/of-interest/paleo.png" alt="pic"> </div> <p class="vb-item"> <a href="http://www.cell.com/current-biology/fulltext/S0960-9822(16)31193-9"> Dinosaur tail, complete with feathers, found preserved in amber. </a> </p> <p class="vb-item"> <a href="/recommended/literature/dino-feathers/"> Dinosaurs and Feathers: A Bibliography </a> </p> <p class="vb-item"> <a href="/recommended/literature/paleo-seq/"> Sequencing Ancient DNA </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> Astronomy </p> <div class="vb-pic"> <img src="/images/of-interest/astronomy.png" alt="pic"> </div> <p class="vb-item"> <a href="http://www.nature.com/nature/journal/v541/n7635/full/nature20797.html"> Mysterious fast radio burst (FRB) detected in the distant universe. </a> </p> <p class="vb-item"> <a href="http://www.sciencemag.org/news/2017/01/colliding-stars-will-light-night-sky-2022"> Colliding stars will light up the night sky in 2022 </a> </p> <p class="vb-item"> <a href="http://www.sciencemag.org/news/2016/02/gravitational-waves-einsteins-ripples-spacetime-spotted-first-time"> Gravitational waves, ripples in space-time, detected. </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> <a href="/recommended/literature/w-misc-climate-change/"> Climate Change </a> </p> <div class="vb-pic"> <a href="/recommended/literature/w-misc-climate-change/"> <img src="/images/of-interest/climate-change.png" alt="pic"> </a> </div> <p class="vb-item"> <a href="/viewurl/?u=https://en.wikipedia.org/wiki/Instrumental_temperature_record"> Wikipedia: Hottest Years on Record </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> Big Data & Informatics </p> <div class="vb-pic"> <img src="/images/of-interest/big-data.png" alt="pic"> </div> <p class="vb-item"> <a href="/recommended/videos/big-data/"> Big Data: Buzzword or Big Deal? </a> </p> <p class="vb-item"> <a href="http://www.martinhilbert.net/"> Martin Hilbert on Big data </a> </p> <p class="vb-item"> <a href="http://www.nature.com/news/privacy-protections-the-genome-hacker-1.12940"> Hacking the genome: Identifying anonymized human subjects using publicly available data. </a> </p> <p class="vb-item"> <a href="http://doi.org/10.1126/science.aaj2038"> Using DNA as a mass-storage device for digital data. </a> </p> <p class="vb-item"> <a href="/viewurl/?u=https://www.wired.com/2017/01/mystery-ai-just-crushed-best-human-players-poker/"> AI app blows away professional poker players </a> </p> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- <div class="vb"> <p class="vb-header-b"> Publishing </p> <div class="vb-pic"> <img src="/images/of-interest/cc_dust-devils_16x9.jpg" alt="pic"> </div> <p class="vb-item"> <aa href=""> This is item 1 </a> </p> <p class="vb-item"> <aa href=""> This is item 2 </a> </p> <p class="vb-item"> <aa href=""> This is item 3 </a> </p> <p class="vb-item"> <aa href=""> This is item 4 </a> </p> </div> --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> Paleoanthropology </p> <div class="vb-pic"> <img src="/images/of-interest/anthro.png" alt="pic"> </div> <p class="vb-item"> <a href="/recommended/literature/paleo-neander/"> Neanderthals </a> </p> <p class="vb-item"> <a href="/recommended/literature/paleo-denis/"> Denisovans </a> </p> <p class="vb-item"> <a href="/recommended/literature/paleo-hobbit/"> Miniature humans — hobbits </a> </p> <!-- <p class="vb-item"> <a href=""> This is an item </a> </p> <p class="vb-item"> <a href=""> This is an item </a> </p> --> </div> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <!-- =================================================================== --> <!-- --> <!-- =================================================================== --> <div class="vb"> <p class="vb-header-b"> WTF !? </p> <div class="vb-pic"> <img src="/images/of-interest/wtf.png" alt="pic"> </div> <p class="vb-item"> <a href="/misc/mouse-6/"> Six-legged mouse discovered. 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