Aging & Longevity
Community-Based ICOPE Screening Identifies Intrinsic Capacity Impairment and Supports Integrated Health and Social Care
CONCLUSIONS AND IMPLICATIONS: Community-based implementation of the WHO ICOPE pathway within routine systems is feasible and identified substantial multidomain IC impairment among otherwise independent older adults. Variation across sites highlights the need for context-specific service planning and targeted resource allocation. Embedding IC screening within community platforms, with coordinated referral pathways, supports earlier identification and management of functional decline and advances...
Methionine tuning for health without frailty
Dietary protein quality, not merely quantity, shapes metabolic health and aging trajectories. Fanti et al. show that moderate methionine supplementation to a low-protein, Mediterranean-inspired diet activates a GH-GLP-1-FGF21 axis that reduces adiposity and frailty without caloric restriction; their findings provide a mechanism for why traditional plant-rich diets may promote longevity while sometimes compromising physical robustness.
CD163<sup>+</sup> red pulp macrophages interact with marginal metallophilic macrophages during blood-stage malaria to maintain splenic architecture
The spleen harbors distinct macrophage subsets that support circulatory homeostasis and initiate immune responses, but the ontogeny and long-term dynamics of these populations remain incompletely understood. Here, we identified a transcriptionally and developmentally distinct CD163-expressing red pulp macrophage (CD163^(high) RPM) population that arose from yolk sac progenitors and occupied a vascular-associated niche. Using fate-mapping models, we showed that CD163^(-) RPMs were progressively...
How do energy metabolism disorders and neuroinflammation collectively contribute to the pathogenesis of Alzheimer's disease?
Alzheimer's disease (AD), as the leading cause of dementia, poses an increasingly severe socioeconomic burden in the context of global ageing. Traditionally defined by amyloid-β and tau pathology, it's increasingly recognized as a systems disorder in which impaired glucose metabolism, mitochondrial dysfunction, and neuroinflammation interact across neural cell types and disease stages. However, the interaction among these three mechanisms, their role in promoting the classical pathology of AD,...
Experience-driven neural efficiency and reserve in aging: Evidence from bilingual attentional adaptation
Bilingualism offers a powerful test case for understanding how control systems adapt to sustained, variable attentional demands. Converging evidence across behavioral, structural, functional, and clinical literatures indicates that repeated demands for selection, conflict resolution, and language switching are associated with reorganization of control architecture in ways that are consistent with predictive and reinforcement-learning mechanisms, producing two interdependent outcomes. Efficiency...
Aging preserves mTORC1 but attenuates JNK-SMAD2L signaling sensitivity to passive stretch-induced tension development in isolated mouse skeletal muscle
INTRODUCTION: Aging is associated with impaired skeletal muscle mass and function, often attributed to reduced sensitivity to anabolic stimuli. This study investigated whether aging influences the sensitivity of key anabolic signaling pathways to mechanical tension development in skeletal muscle.
Synergistic chemosensory decline as a multidimensional biomarker of neurodegeneration: A scoping review of the olfactory-gustatory axis in aging
CONCLUSION: Dual assessment of olfaction and gustation may represent a promising candidate biomarker of neurodegenerative progression compared to isolated olfactory testing. We propose the integration of standardized chemosensory protocols into routine geriatric assessments as a pragmatic strategy for early cognitive risk stratification and follow-up. This approach holds significant translational potential for monitoring neurodegenerative trajectories in older adults.
In silico analysis of transcriptomic datasets reveals nonlinear gene expression trajectories in aging microglia and Alzheimer's disease
CONCLUSION: These results suggest that middle age may represent a critical transition stage preceding neuroinflammation and neurodegeneration, making it an attractive window to identify preventive or therapeutic targets in early AD. Collectively, this study identifies candidate pathways and genes that warrant further experimental validation in the context of AD and age-related neurodegeneration.
Responsiveness of muscle mass gain to different load intensities of resistance training in older women: A randomized crossover study
CONCLUSIONS: Results suggest that both the 10RM and 15RM RT protocols significantly increase estimated SMM in older women, with no significant differences between training conditions. Although substantial interindividual variability in adaptive responses exists, training load intensity does not appear to meaningfully influence responsiveness status in most individuals. These findings suggest that both loading schemes can be effectively prescribed to promote SMM gains in older women.
Early-life sugar restriction causally reduces adult cancer incidence and slows biological aging
Excess sugar consumption is implicated in multiple cancers through insulin resistance, chronic inflammation, and metabolic reprogramming, yet whether early-life sugar exposure causally shapes long-term cancer risk remains an open question. We exploit the abrupt end of United Kingdom sugar rationing in September 1953 as a natural experiment, analyzing 64,761 UK Biobank participants born 1951-1956. Cohorts whose first 1,000 d of life fell under rationing exhibit dose-dependent reductions in adult...
Proteome dynamics reveal Leiomodin 1 as a key regulator of myogenic differentiation
During myogenic differentiation, the cellular architecture and proteome of muscle stem cells and myoblasts undergo extensive remodeling. These processes are partially understood and display alterations in disease and aging, resulting in impaired regeneration. Here, we used mass spectrometry to quantify the temporal dynamics of over 6000 proteins during myogenic differentiation. We identified the actin nucleator leiomodin 1 (LMOD1) among a restricted subset of cytoskeletal proteins increasing in...
Association of neurofilament light chain, CXCL9, IL-6, and TNFRSF11B with intrinsic capacity in community-dwelling older adults
Intrinsic capacity (IC) reflects multidomain functional reserve and a measurable phenotype of healthy ageing, but its biological correlates remain incompletely understood. We examined associations of neurofilament light chain (NfL), CXCL9 and inflammatory biomarkers with IC in community-dwelling older adults. We conducted a cross-sectional analysis within the Screening and Prevention of Intrinsic Capacity Decline in Elders (SPICE) programme. IC was derived from locomotion (SPPB), cognition...
Multimodal MRI prediction of cognitive functioning across the lifespan: separating between-person differences from within-person changes
Brain MRI shows promise for predicting cognitive functioning, but its utility depends on its capacity to capture stable between-person differences (e.g., patient stratification), longitudinal within-person changes (e.g., prognosis, treatment monitoring), or both. Using longitudinal data from 450 adults (aged 21-90; up to three waves, five years apart) in the Dallas Lifespan Brain Study, we benchmarked five modalities, task fMRI, functional connectivity (FC), structural MRI (sMRI),...
In-situ glial cell-surface proteomics identifies pro-longevity factors in Drosophila
Much focus has shifted towards understanding how glial dysfunction contributes to age-related neurodegeneration due to the critical roles glial cells play in maintaining brain health. Cell-cell interactions, which are largely mediated by cell-surface proteins, control many critical aspects of development and physiology; as such, dysregulation of glial cell-surface proteins is hypothesized to play an important role in age-related neurodegeneration. However, it remains technically difficult to...
Methylation clocks fail to generalize across genetically admixed individuals
Epigenetic aging clocks based on DNA methylation patterns across the genome have emerged as a potential biomarker for risk of age-related diseases, like Alzheimer's disease (AD), and environmental and social stressors. However, methylation clocks have not been comprehensively validated in genetically diverse individuals. Here, we evaluate a set of first-, second-, and third-generation methylation clocks in 621 AD patients and matched controls from African American, Hispanic, and White cohorts....
Author Correction: Aged bone marrow macrophages drive systemic aging and age-related dysfunction via extracellular vesicle-mediated induction of paracrine senescence
No abstract
Pericyte K<sub>ATP</sub> channel hyperactivity redistributes cortical blood flow in a CADASIL mouse model
Cerebral hemodynamic dysfunction is a key driver of unhealthy brain aging. Impaired microcirculatory reactivity leads to uneven perfusion, rendering deeper brain regions more vulnerable and thereby contributing to cognitive decline. Yet how capillaries contribute to these deficits remains poorly defined. Here we combined spatial transcriptomics with in vivo two-photon and three-photon imaging to measure layer-specific cerebral blood flow in control and small vessel disease model mice (CADASIL...
Post-mitotic cardiomyocyte senescence redefines cardiac ageing
No abstract
Evaluation of Hospital Readmission and Mortality Risk in Older Frail Patients Using the FIB-4 Index: A Cohort Study
CONCLUSIONS: FIB-4 appears to reflect reduced biological reserve and systemic vulnerability rather than isolated liver dysfunction. As a cost-free parameter derived from routine blood tests, FIB-4 may represent a practical tool for risk stratification in hospitalized frail older adults.
Memory training through Chinese classics recitation for individuals with subjective cognitive decline: study protocol for a pilot study
BACKGROUND: Subjective cognitive decline (SCD) is a preclinical condition associated with an increased risk of dementia and Alzheimer's disease, with no consensus regarding effective therapeutic interventions to date. As the global burden of aging-related neurodegenerative diseases continues to rise, early intervention has become increasingly critical. Cognitive training has been proposed as a promising behavioral intervention; however, few studies have integrated multimodal assessments to...
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