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3 minutes of sprinting does something 90 minutes of exercise does not
A few minutes of sprinting may reshape the bloodstream far more dramatically than a much longer moderate workout. Six 30-second sprints altered nearly a quarter of the blood proteins measured and more than 200 metabolites, while 90 minutes of moderate cycling produced far smaller immediate changes. Many of the proteins affected by sprinting were also associated with lower risks of obesity, type 2 diabetes, and other metabolic diseases.
This weight-loss hormone may protect the liver even without weight loss
A hormone already known for curbing appetite and supporting weight loss may have a surprising second job: protecting the liver from inflammation and scarring. Researchers at McMaster University found that GDF15 activates a previously unknown brain-to-liver pathway that triggers the release of glucocorticoids, helping calm immune activity in the liver.
AI may know how you’ll respond to a vaccine before you get it
AI may be able to predict how strongly someone will respond to a vaccine before they receive it. By analyzing antibody patterns in more than 4,000 people, researchers found signs of “immune readiness” that helped distinguish strong responders from weak ones. Surprisingly, even some healthy people responded poorly, while some immunosuppressed people mounted strong responses.
Hyaluronan deficiency disrupts endothelial glycocalyx integrity and contributes to age-related arterial dysfunction
Aging is accompanied by arterial dysfunction, defined by impaired endothelial function and increased large artery stiffness, yet the contribution of the endothelial glycocalyx (eGC) and its constituent, hyaluronan (HA), to this process remains incompletely understood. We tested the hypothesis that decreasing endothelial HA synthesis via a reduction in endothelial-specific HA synthase 2 (HAS2) compromises eGC integrity and contributes to arterial dysfunction with advancing age. Both...
The Thymic Microenvironment Shapes Age-Related Qualitative Changes in the TCR Repertoire
Ageing impairs immune function, increasing susceptibility to infection, autoimmunity and inflammation. The thymus undergoes involution during childhood, and thymocyte and thymic epithelial cell (TEC) numbers decline. Given that adaptive immunity depends on T-cells recognising diverse antigens via their unique T-cell receptor (TCR), the precise age-related changes in TCR repertoire composition are key to understand immunity. To investigate the influence of age on the thymic TCR repertoire we...
Molecular Mechanisms of Age-Related Taste Dysfunction Deciphered by Spatiotemporal Transcriptomics
Age-related taste dysfunction impairs nutrition and quality of life, contributing to metabolic disorders and frailty in the elderly, yet its cellular and molecular basis remains poorly understood. By integrating single-cell RNA and spatial transcriptomics sequencing, we systematically mapped murine taste bud aging across five developmental stages from neonatal to aged. Our findings reveal that age-associated taste impairment is driven by the progressive depletion of stem/progenitor cell...
Surviving Fibroblasts After Treatment With Mitomycin C Exhibit SASP-Like Phenotype After Glaucoma Filtration Surgery
The clinical outcomes of trabeculectomy, a standard glaucoma filtration surgery (GFS), have dramatically improved with the introduction of mitomycin C (MMC), an antimetabolite widely used to inhibit postoperative scarring. MMC exerts anti-scarring effects primarily by promoting apoptosis and suppressing fibroblast proliferation at the surgical site. However, despite these beneficial effects, MMC also induces the production of inflammatory cytokines, and its full mechanism of action remains...
Aged Mitochondrial DNA Is Associated With Aberrant Acute Exercise-Induced Redox Responses in Human Skeletal Muscle
Redox imbalances and mitochondrial dysfunction are key contributors to age-related declines in skeletal muscle and may contribute to impaired exercise responsiveness. Here, we investigated the influence of aging on skeletal muscle redox at rest and in response to acute exercise, examining how mitochondrial quality and quantity relate to skeletal muscle redox status. Skeletal muscle biopsies were obtained from 12 young (22 ± 4 years) and 10 older adults (66 ± 7 years) before and immediately after...
Aging Alters Hair Cell Physiological Properties in Mice With Late-Onset Age-Related Hearing Loss
Mammalian cochlear hair cells convert acoustic stimuli into electrical signals, which are relayed to the central auditory pathway via auditory neurons. Progressive loss of hair cells and their synapses is a characteristic of age-related hearing loss (ARHL), but the underlying mechanisms remain poorly understood. In this study, we tested the hypothesis that hair cell physiological properties change with age in CBA/CaJ mice, a strain known for its slow ARHL progression. We found that hair cell...
A simple at-home test could cut colorectal cancer death risk by 43%
People who participated in colorectal cancer screening had a 43% lower risk of dying from the disease, according to long-term data from more than 376,000 people in Sweden. The findings suggest that completing a simple at-home screening test could make a major difference in survival.
Scientists discover how gut bacteria “train” the intestine to fight inflammation
A compound made when gut bacteria break down dietary fiber may do more than briefly calm inflammation—it could leave a lasting protective “memory” in the gut. Northwestern Medicine researchers found that butyrate can reprogram intestinal lining cells so they continue encouraging anti-inflammatory immune responses even after the compound is gone. In mice, this effect boosted production of the immune-calming molecule IL-10 and reduced the severity of colitis-like disease.
Ozempic does something unexpected to the brain’s hunger neurons
Ozempic may work in the brain in almost the opposite way scientists expected, activating hunger-linked neurons that appear essential for sustaining fat loss. The surprising discovery in mice could reveal new targets for developing even more effective obesity drugs.
Footprints may reveal biggest known mammal from age of the dinosaurs
Beefy tracks point to a Cretaceous critter as big as a large dog or mountain lion
Knee osteoarthritis isn’t inevitable — here’s what you can do
Knee osteoarthritis can seriously affect mobility and quality of life, but its progression isn’t completely out of your control. Exercise, stronger leg muscles, a healthier diet, and even modest weight loss can dramatically reduce stress on the knees and help keep pain in check.
Schizophrenia’s lost brain connections follow a surprising pattern
Specialized brain scans reveal that schizophrenia is linked to widespread loss of the synapses that connect brain cells, with the left side of the brain hit especially hard. The damage follows a surprisingly organized pattern tied to the brain’s chemistry and wiring. Researchers also identified a left frontal region that may serve as a starting point for the loss.
Scientific spat erupts over claim that bones have key immune vessels
Discovery of lymphatic tubes suggested new possibilities for bone healing, but challenge has prompted dueling papers and publication delay in prominent journal
NASA abandons orbit-boosting rescue mission for space observatory
Novel rescue craft unable to connect with doomed Swift Observatory
The hallmarks of skeletal muscle health
Skeletal muscle is a central determinant of organismal health. Preserving muscle quality is therefore critical for preventing disease and sustaining quality of life across the lifespan. Despite its central role, the field lacks a unifying framework that defines the core properties of skeletal muscle health. Here, we propose a conceptual framework for muscle homeostasis built around seven interconnected hallmarks-metabolism and bioenergetics, proteostasis, genomics, excitability, structure,...
Inhibiting cyclin D1-CDK6 suppresses senescence-associated inflammatory gene expression and age-related functional decline
Cellular senescence contributes to aging and age-related diseases by driving chronic inflammation through the senescence-associated secretory phenotype (SASP), including interferon-stimulated genes (ISGs). Here we confirm and extend previous observations that cyclin D1 (CCND1), a key cell cycle regulator, is paradoxically upregulated across models of nonproliferating senescent cells. We show that CCND1 and its kinase partner CDK6 drive SASP and ISG expression in senescent cells by promoting DNA...
Turning CDK4/6 inhibitors against the dark side of senescence
No abstract