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Keto diet cut liver fat by 67% in a clinical trial
A ketogenic diet outperformed Mediterranean and low-fat diets in several measures of metabolic health during a clinical trial involving people with obesity, prediabetes, and fatty liver disease. All three groups lost about 10% of their body weight, but keto reduced liver fat by 67%, compared with 45% for the other diets. About half of the keto group also no longer qualified as having prediabetes after four to five months.
Dogs may hold surprising clues to human longevity
Dogs and humans may have more in common when it comes to aging than scientists realized. Researchers with the Dog Aging Project found that patterns of small molecules in dogs’ blood were linked to longer or shorter lifespans in remarkably similar ways to those seen in people. These metabolic “fingerprints” could offer clues about the biological processes that drive aging, including metabolism, inflammation, and cellular stress.
Long-term melatonin use linked to 90% higher heart failure risk
People with chronic insomnia who used melatonin long term had a roughly 90% higher risk of developing heart failure over five years, according to a large preliminary study. The findings do not prove melatonin causes heart problems, but they raise new questions about the safety of taking the popular sleep supplement for extended periods.
A male rat model integrating hypertension, chronic cerebral hypoperfusion, and aging recapitulates multimodal cerebral small vessel disease phenotypes
CONCLUSION: In male rats, the SHR+BCAS+D-gal composite model recapitulates the multifactorial background, chronic progression, and multimodal neurological impairment of clinical CSVD at behavioral, neuroimaging, histopathological, and molecular levels. This male rat model may provide a useful experimental platform for mechanistic and interventional studies targeting BBB protection, neuroinflammation, oxidative stress, and white matter repair.
Restoring anticipatory control through cognitive-motor dual-task training improves emotional and executive function in frail older adults
CONCLUSION: These findings indicate that CMDT enhances anticipatory control mechanisms linking brain function to behavior, supporting both emotional regulation and executive efficiency in frail older adults. By embedding cognitive demands within motor actions, this approach provides a low-cost and scalable intervention with increased ecological relevance, offering a promising strategy for addressing multidimensional vulnerability in aging.
Starve-Feed Cycles Direct Quiescence to Proliferation Transitions in Drosophila Follicle Stem Cells via Transcriptional Regulation
Stem cell quiescence is a reversible state in which cells temporarily exit the cell cycle but remain poised to re-enter on cue. Robust protection of the balance between stem cell quiescence and proliferation (Q->P) is critical for long-term tissue health. Proliferation without proper resources drives disease states including cancer or birth defects. Conversely, extended periods of quiescence can lead to irreversible senescence, causing stem cell loss, aging symptoms, and vulnerability to...
Exercise alone or combined with functional foods in aging and age-related diseases: targeting DNA damage, repair pathways, and genome integrity
Aging is fundamentally associated with the gradual accumulation of DNA damage, which is instrumental in the initiation and advancement of age-associated pathologies, including neurodegenerative conditions such as Alzheimer's disease and Parkinson's disease. Recent studies indicate that lifestyle modifications-especially the consumption of functional foods and participation in consistent physical exercise-can influence cellular and molecular processes related to DNA repair, reduction of oxidative...
Your sleep may be hiding an early clue to Alzheimer’s
Frequent micro-awakenings during sleep were linked to higher genetic risk for Alzheimer’s in healthy middle-aged adults who had no symptoms. The discovery raises the possibility that subtle changes during sleep could offer an early warning signal years before memory problems appear.
Scientists discover why damaged nerves struggle to heal
Scientists have identified a protein that acts like a brake on the nervous system’s ability to repair damaged connections. Blocking AHR helped injured nerve fibers regrow and improved movement and sensation in mice with nerve or spinal cord injuries. The discovery could eventually point toward new treatments designed to shift neurons from simply surviving an injury to actively rebuilding themselves.
Experimental eye drops help blind mice see again
Scientists have created light-activated drugs that helped blind mice perceive light again and restored visually guided behavior without gene therapy, implants, or specialized lighting. Even more intriguingly, two of the most promising compounds worked when administered as eye drops, pointing toward a potentially simple new approach to restoring vision.
A common vape flavoring may disrupt early embryo development
A popular vanilla flavoring in e-cigarettes may interfere with some of the earliest steps of human development. In lab experiments, vanillin caused embryonic stem cells to lose their ability to develop normally and pushed them toward forming only certain types of tissue.
Researchers followed 400,000 kids for 20 years and found a lasting pre-K advantage
A 20-year study of 400,000 students found that children who attended public school pre-K earned better grades and test scores through high school than those in other childcare settings. Better-trained teachers and earlier exposure to structured classrooms may help explain why the advantage lasted so long.
Closing the gap in Alzheimer's disease research through the Sex | Gender in Neurodegeneration Consortium
No abstract
Bridging precision agriculture and human medicine through comparative genetics
Comparative genetics aims to resolve the genetic and molecular architecture of complex traits and the evolutionary constraints governing biology. Recent improvements in genome assembly, coupled with population-scale multi-omics, have generated high-resolution maps of genetic and functional variation across species. These advances have been particularly transformative for farmed animals, which have a rich reservoir of genetic diversity and provide an opportunity for systematic, full-lifespan,...
Mitochondrial DNA leakage in oocytes activates cGAS-STING signaling to drive ovarian aging
Ovarian aging precedes decline in many organs, but its mechanisms remain unclear. Here we show that aging oocytes accumulate cytoplasmic mitochondrial DNA (mtDNA) through increased mtDNA leakage, activating the cyclic GMP-AMP synthase (cGAS) pathway to produce cGAMP and trigger stimulator of interferon genes (STING) signaling. Notably, oocyte-derived cGAMP can pass through gap junctions to surrounding granulosa cells (GCs), activating STING signaling in GCs as well. To model age-associated...
Different hypothalamic regions in late-onset Alzheimer's disease and aging: involvement and links with cognitive and non-cognitive features
Early-onset Alzheimer's disease (EOAD) and late-onset Alzheimer's disease (LOAD) have different clinical and neuroimaging characteristics, and non-cognitive deficits usually observed are suggestive of hypothalamic dysfunctions. Here, we assessed in vivo the hypothalamic volumetry in EOAD and LOAD and explored its association with cognitive and non-cognitive features. The hypothalamus and its subunits were segmented on T1-weighted MRIs from 14 younger and 23 elderly controls (EC), 14 EOAD, and 28...
Genome-scale perturb-seq in primary human CD4<sup>+</sup> T cells maps context-specific regulators of T cell programs and human immune traits
Gene regulatory networks encode the fundamental logic of cellular functions, but systematic network mapping remains challenging, especially in cell states relevant to human biology and disease. Here, we perturbed all expressed genes across 22 million primary human CD4^(+) T cells from four donors and developed a probe-based perturb-seq platform to measure the transcriptome effects in cells at rest and after stimulation. These data allowed us to map genes regulating immune pathways, including...
Senescent cells maintain viability through adhesion-dependent fragmentation that promotes debris deposition
Cellular senescence is a state of stable arrest and secretion linked to aging and disease. Here, we identify that senescent cells dispose of large fragments through cell-to-cell adhesion, which we term "senescent-cell adhesion fragments" (SCAFs). Found in many senescent states, including human and mouse cells, and mouse tissues, SCAFs lack nuclear material but contain organelles, including damaged mitochondria. Disrupting adherens junctions decreases SCAF formation but induces senescent-cell...
Neuron-derived SPP1 instructs microglia to limit degeneration
Neurons actively shape immune responses that maintain central nervous system integrity. We identify SPP1 (secreted phosphoprotein 1) as a neuron-derived signal that reprograms microglia into a neuroprotective, homeostatic state after injury and during neurodegeneration. In mouse models of glaucoma and optic nerve damage, neuronal SPP1 enhances microglial autophagy, debris clearance, and anti-inflammatory activity, preserving neuronal survival and visual function. SPP1 is elevated in neurons of...
Hardened ground: ECM stiffness as a unifying biomechanical driver of reproductive stem cell aging
Reproductive aging in the ovary, endometrium, and testis is characterized by progressive decline in regenerative capacity, yet the upstream mechanisms coordinating stem cell dysfunction across these tissues remain incompletely understood. Emerging evidence suggests that alterations in extracellular matrix (ECM) mechanics, particularly age and disease associated increases in tissue stiffness, may contribute to impaired stem cell function through mechanotransductive signaling pathways. In the...