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AI bots are flooding researchers with requests for money and time
When what you see doesn’t make sense, your brain does something remarkable
The brain may have a built-in way to quickly settle disagreements between regions processing the same scene. Researchers found that matching signals between two visual areas lasted longer, while conflicting signals rapidly faded away. This “consensus building” mechanism could help explain how the brain turns many specialized inputs into one unified view of the world.
Scientists thought they knew how this 70-year-old leukemia drug worked
A 70-year-old leukemia drug is still revealing new secrets. Researchers found that removing a protein called NUDT5 protected cells from the drug, even though simply blocking the protein had little effect. The unexpected result points to a hidden cellular role that could help explain why people respond differently to certain leukemia treatments.
Aging muscles may be losing strength for a reason scientists missed
A newly identified breakdown in communication between nerves and muscles could help explain why people lose strength as they age. Researchers were able to improve muscle strength in an animal model by targeting a key protein, raising hopes that some age-related weakness could eventually be treated.
Erratum for the Research Article "Modeling of late-onset Alzheimer's disease neuropathology via direct neuronal reprogramming"
No abstract
A pericyte-to-myofibroblast transition links APOE4 to cerebrovascular degeneration
Cerebrovascular disease is a major but poorly understood feature of Alzheimer's disease (AD). The strongest genetic AD risk factor, apolipoprotein E4 (APOE4), is associated with cerebrovascular degeneration, including vascular amyloid deposition and fibrosis. To uncover how APOE4 promotes cerebrovascular pathology, we assembled a single-cell transcriptomic atlas of human brain vasculature. In APOE4 carriers, pericyte abundance was significantly reduced and accompanied by the emergence of a...
An enhanced grey wolf optimizer-based Facebook artificial intelligence similarity search for Alzheimer's disease diagnosis
Early diagnosis of Alzheimer's disease (AD) and its prodromal stage, mild cognitive impairment (MCI), requires efficient computational frameworks capable of handling high-dimensional and large-scale 18F-FDG-PET data. To address challenges in feature redundancy and computational efficiency, we propose a unified framework integrating an enhanced Grey Wolf Optimizer (CDL-GWO) with approximate nearest neighbor search based on Facebook AI Similarity Search (FAISS). The proposed CDL-GWO incorporates...
Organ-Specific Proteomic Aging Clocks Reveal Complexities Underlying the Healthy Drinking Paradox
The "healthy drinking" paradox refers to situations where alcohol consumption is misleadingly associated with better health outcomes, a pattern frequently observed in observational studies that are prone to a range of confounding factors. Some recent studies developing organ-specific proteomic aging clocks report that alcohol consumption is linked to slower aging in select organs, even as it accelerates aging in others, thus echoing this paradox, with substantial discrepancies across such...
Life's Simple 7, depressive symptoms, cognitive performance, and their associations with all-cause mortality among middle-aged urban adults
Cardiovascular health, depressive symptoms, and cognitive performance are closely interconnected and jointly influence all-cause mortality. We investigated the independent associations of Life's Simple 7 (LS7), depressive symptom trajectories, and cognitive performance with all-cause mortality and conducted exploratory four-way decomposition analyses to evaluate complementary mechanistic hypotheses linking these factors. We analyzed data from the Healthy Aging in Neighborhoods of Diversity...
Prussian blue regulates ion dynamics in perovskite solar cells
Perovskite photovoltaics are limited by structural instabilities initiated during crystallization and amplified under operation. We report that a lattice-matched Prussian blue scaffold directs heterogeneous nucleation to produce highly oriented, strain-relaxed films. Its redox-active Fe-C≡N-Fe network mediates the conversion of Pb⁰ and I⁰ defects, and its rigid open framework suppresses A-site cation redistribution and the resulting electronic inhomogeneity under bias. This strategy yielded...
Single wildfire smoke exposure causes lasting harm, natural experiment in monkeys hints
Infant macaques showed immune changes and signs of faster aging years after inhaling smoke.
Senescence-directed nanotherapy ameliorates fibrosis and overcomes immune exclusion in cancer
Fibrotic remodeling of tissues and tumors establishes immunosuppressive microenvironments that drive organ dysfunction and, in cancer, limit response to immunotherapy. Senescent-like cells are conserved drivers of fibrosis and therapeutic targets, yet their functional heterogeneity complicates therapeutic intervention. Here, we show that P-selectin is expressed by a subset of senescent-like cells in fibrotic tissues and tumors. Leveraging fucoidan-based nanoparticles that bind P-selectin, we...
Nanotherapy against senescence
Targeting senescence decreases fibrosis and boosts the response of cancer cells to immunotherapy.
Structural brain indicators of cognitive performance in middle and late adulthood: The Human Connectome Project in Aging/Aging Adult Brain Connectome cohort
Although cortical thinning and atrophy are well documented in aging and neurodegenerative disease, the cortical structural features associated with preserved or superior cognition across typical adulthood remain incompletely characterized. We examined associations between cortical thickness and cognitive performance in a large, typically aging cohort and tested whether they vary by age and cognitive domain. We analyzed cross-sectional data from cognitively healthy adults in the Human Connectome...
Development and validation of a machine learning-based claims frailty index for predicting mortality, disability, and healthcare utilization in middle-aged and older adults
CONCLUSIONS: A machine learning-derived CFI integrating diagnoses, medications, and procedures demonstrated robust prediction of mortality and other adverse outcomes, supporting its incremental value in population-based frailty assessment.
A reproducible pipeline for processing commercial wearable step-count data in aging cohorts: Application and evaluation in the STRRIDE-PD reunion study
Wearable devices offer the ability to objectively characterize free-living physical activity; however, raw step-count data generated by commercial devices require systematic processing before they can support rigorous inference. We describe a transparent, reproducible standard operating procedure (SOP) for transforming epoch-level step-count data from commercial Garmin devices into participant-level analytic variables and demonstrate its application in the STRRIDE-PD Reunion study: a long-term...
Functional brain network connectivity patterns associated with midlife metabolic syndrome and cognitive vulnerabilities
CONCLUSION: Midlife MetS was associated with modest reductions in within-network DMN connectivity, with abdominal obesity and low HDL cholesterol as the primary contributing MetS components. Reduced DMN connectivity was associated with poorer verbal fluency performance. These findings suggest that subtle differences in higher-order functional brain network organization associated with metabolic syndrome can be detected during midlife and are related to cognitive functioning, highlighting the...
beta-Nicotinamide Mononucleotide Inhibits Cellular Senescence in Mouse C2C12 Skeletal Muscle Cells
β-Nicotinamide mononucleotide (NMN), as the precursor of nicotinamide adenine dinucleotide (NAD^(+)), has remarkable therapeutic potential in aging-associated diseases. Skeletal muscle exhibits not only reduced mass but also impaired strength and function during aging. However, the protective effects of NMN against skeletal muscle cell senescence remain to be fully elucidated. In this study, we used D-galactose (D-gal) to establish a senescence model in C2C12 cells. Our results demonstrate that...
The Role of EVs in the Aging Hematopoietic System
Extracellular vesicles (EVs) are membrane-enclosed nanoparticles that mediate intercellular communication by transferring proteins, nucleic acids, and lipids. Within the hematopoietic system, EVs orchestrate critical signaling between bone marrow (BM) niche cells and hematopoietic stem and progenitor cells (HSPCs) to regulate quiescence, proliferation, and lineage commitment. During aging, senescence and telomere attrition drive a profound remodeling of EV biogenesis and cargo. Aged EVs,...
Mapping the Landscape of AgeTech Standards and Guidelines: A Gray Literature Review
CONCLUSIONS: Although AgeTech standardization is advancing, critical gaps remain. Limited attention to safety, security, privacy, and digital economy and community inclusion raises concerns for trust, equity, and sustainable adoption. Addressing these gaps through targeted and coordinated standardization efforts is essential to support inclusive, trustworthy, and scalable AgeTech solutions in the context of rapid global population aging.