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Common medications may change your gut for years
Common medications may reshape the gut microbiome long after the last dose is taken. In a study of more than 2,500 people, researchers found lasting microbial changes linked not only to antibiotics, but also to antidepressants, beta-blockers, acid-reducing drugs, and benzodiazepines. Some effects were still detectable years later, suggesting past medication use may strongly influence the gut bacteria people carry today.
Bird flu is spreading. Your backyard feeder could make it worse
Backyard bird feeders could become unexpected hotspots for H5N1 as Australia’s bird flu outbreak spreads, bringing species together in ways that rarely occur naturally. Experts say stopping feeding is safest, while smaller amounts of food, no hand-feeding, and careful cleaning can reduce the danger.
China abruptly delays mission to probe Moon’s hidden water
Chang’e-7, which will investigate the origin of and abundance of lunar ice, set back until 2027
Too much or too little sleep may make your body age faster
Both too little and too much sleep may be linked to faster aging throughout the body. Researchers analyzing 23 biological aging clocks found the lowest aging levels among people sleeping about 6.4 to 7.8 hours per day. Short or long sleep was also associated with numerous conditions affecting the brain, heart, lungs, metabolism, and digestive system.
Cholesterol dysregulation in APOE4 astrocytes promotes α-synuclein pathology in miBrains
The pathological hallmarks of neurodegeneration are the aberrant post-translational modification and aggregation of proteins. Genetic factors, like APOE4, increase the prevalence and severity of tau, amyloid, and α-synuclein pathologies. However, the human brain is largely inaccessible during this process, limiting mechanistic understanding. Here, we developed an iPSC-based 3D model that integrates neurons, glia, myelin, and cerebrovascular cells into a human brain-like tissue ("miBrain")....
Targeting addiction to HMGB2-driven transcriptional programs in pancreatic cancer
Pancreatic cancer remains at a stagnant 5-year survival of <13%, attributed to the high heterogeneity and plasticity of these tumors. To circumvent this, we focus on the abundant nuclear protein high mobility group-box protein 2 (HMGB2). HMGB2 depletion is key for establishing replicative senescence in normal cells, but it is significantly overexpressed across multiple cancer types. Here, we combine single-cell and spatial genomics with patient-derived organoids and tumor samples to show how...
Mechanisms and Therapeutic Strategies for VEGFR Inhibitor-Induced Cardiotoxicity and Hepatotoxicity in Cancer Therapy
Considerable progress in oncology has substantially reduced cancer-related mortality, as reflected by the growing number of cancer survivors. In this context, the management of adverse events associated with cancer treatments has become even more important. Small-molecule VEGFR inhibitors are associated with clinically relevant cardiovascular and hepatic adverse events, including arrhythmias, heart failure, liver enzyme elevations, and hepatic failure. This review integrates the clinical...
The Grandmother Hypothesis: A Perspective from Cardiovascular Aging
Human menopause and the prolonged post-reproductive lifespan (PRLS) are distinctive features of female aging with profound implications for long-term health. Evolutionary theories, such as the Grandmother Hypothesis and other models (e.g., intergenerational reproductive conflict), suggest menopause evolved under ancestral conditions of high extrinsic mortality in early life, short lifespans, and inclusive-fitness benefits derived from kin investment. In such environments, postmenopausal survival...
Formononetin attenuates cellular senescence through a FOS-mediated mechanism
Cellular senescence is characterized by cell cycle arrest accompanied by mitochondrial dysfunction. Despite extensive efforts to overcome this stable state of growth arrest, effective strategies for treating cellular senescence have not been identified. In this study, we screened plant-derived secondary metabolites and confirmed that formononetin is a substance that potently induces the proliferation of senescent fibroblasts. Formononetin-induced proliferation was associated with the suppression...
Cross-species identification of conserved and divergent locomotor kinematic strategies using AutoGaitA
Distinct behaviors require the nervous system to execute specialized motor programs, each characterized by unique patterns of body muscle coordination. Whether the execution and adaptation of these programs follow conserved principles across species and perturbations remains unclear. To compare motor programs across species, perturbations, and behaviors, we developed the Python toolbox Automated Gait Analysis (AutoGaitA). Using AutoGaitA and inferring from kinematics, we found that locomotor...
Creb3l1 Overexpression Improves Flexor Tendon Repair in Aged Rats
Aging increases tendon injury incidence and poor repair outcomes, but age-related differences in tendon mechanical properties and underlying mechanisms remain unclear. We first analyzed data from the Global Burden of Disease (GBD) database to characterize the associations between aging and population-level changes in tendon injury burden. We found the age-standardized incidence rate (ASIR) of tendon injuries caused by mechanical force decreased with advancing age, whereas the age-standardized...
Metabolic Profiling of Epigenetic Aging and Its Associations With Aging-Related Phenotypes and Modifiable Lifestyle Factors
Epigenetic aging biomarkers are well-established hallmarks of biological aging, yet their metabolic underpinnings remain largely unexplored. Here, we characterized metabolic signatures associated with five epigenetic aging biomarkers (HorvathAge, HannumAge, DNAmPhenoAge, DunedinPACE, and DNAmTL) and examined their clinical relevance and potential determinants in 7162 Chinese older adults from two cohorts (primary and validation). We observed both shared and distinct metabolic associations across...
Billion-dollar machine aims to set a fusion-energy record — and study nuclear weapons
The exoskeletons are coming (to a store near you)
Can AI ever be conscious? The question stems from a misconception
Patient’s own mitochondria injected into eyes in attempt to restore vision
Frontier-technology markets are too narrow — here’s how to widen them
Gut bacteria may unlock a hidden benefit of vegetables
Gut bacteria can transform nitrate and plant-based iron from vegetables and other foods into protective molecules that may benefit the heart and metabolism. In experimental models, higher levels of these compounds were linked to lower blood pressure, better blood sugar control, healthier blood vessels, and less liver fat.
A major Alzheimer’s risk gene may shrink brain cells years before symptoms
Researchers have uncovered a possible reason why the Alzheimer’s risk gene APOE4 can disrupt the brain long before memory problems begin. In mice, APOE4 increased a protein called Nell2, shrinking neurons and making memory circuits unusually active. That early hyperactivity predicted worse memory later in life. Reducing Nell2 in adult mice reversed the abnormal changes, raising hopes for a new way to intervene before Alzheimer’s progresses.
The dental crown of the future could be 3D-printed while you wait
Researchers have found a way to slash the processing time for 3D-printed zirconia crowns from as much as 100 hours to under 30 minutes. The advance could eventually let dentists print strong, customized permanent crowns for patients within a single appointment.