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Smelling chocolate helped men complete more reps without feeling more tired
Simply smelling chocolate helped men complete more leg extension repetitions without making the workout feel harder, with dark chocolate producing the strongest effect. The researchers think familiar food aromas may influence appetite and motivation by making the brain anticipate eating.
Scientists discover a major brain shift between ages 50 and 75
Scientists have uncovered sweeping changes in how the human brain controls and organizes its genome beginning in midlife, offering new clues to why aging sharply increases the risk of Alzheimer’s and other neurodegenerative diseases. One of the biggest shifts occurred between about ages 50 and 75, when many of the brain’s original immune cells declined and were replaced by cells with more inflammatory characteristics. Researchers also found weakening of cells that help maintain the blood-brain barrier, along with widespread deterioration in the genome’s three-dimensional organization.
Why AI agents invent their own language if you let them chat
“Weird terms” are a natural—but disturbing—byproduct of agent swarms, researchers find
The U.S. Eradicated this flesh-eating parasite. Now it’s back
The flesh eating New World screwworm has returned to the United States, threatening livestock, wildlife, pets and potentially people as it spreads north. A new UC San Diego tracking system aims to predict where the parasite could strike next while officials revive the eradication strategy that defeated it decades ago.
APOE-stratified genome-wide association analyses provide insights into the genetic etiology of Alzheimers's disease
Among the more than 90 identified genetic risk loci for late-onset Alzheimer's disease (AD) and related dementias, the apolipoprotein E (APOE) gene ɛ2/ɛ3/ɛ4 polymorphisms remain the longstanding benchmark for genetic disease risk with a consistently large effect across studies^(1-10). Despite this massive signal, the exact mechanisms by which ɛ4 increases and ɛ2 decreases dementia risk remain poorly understood. Notably, recent trials of anti-amyloid therapies suggest less efficacy and higher...
A microprotein atlas of the human frontal cortex in Alzheimer's disease
Understanding the molecular basis of neurodegeneration requires a comprehensive map of the genome's protein-coding output. Although thousands of small open reading frames (ORFs) are translated in the human brain, proteomic evidence for their encoded microproteins (MPs) (≤150 amino acids (aa)) remains limited. Here, we present a brain MP atlas that integrates transcriptomics, mass spectrometry and deep-learning-predicted spectra across more than 600 postmortem frontal cortex samples with and...
A microprotein atlas of the human frontal cortex in Alzheimer's disease
Understanding the molecular basis of neurodegeneration requires a comprehensive map of the genome's protein-coding output. Although thousands of small open reading frames (ORFs) are translated in the human brain, proteomic evidence for their encoded microproteins (MPs) (≤150 amino acids (aa)) remains limited. Here, we present a brain MP atlas that integrates transcriptomics, mass spectrometry and deep-learning-predicted spectra across more than 600 postmortem frontal cortex samples with and...
Somatic mosaicism in the brain: linking development, ageing and neurodegeneration
Somatic mosaicism is increasingly recognized as a pervasive feature of the human brain and a potential contributor to neurological disease across the lifespan. Unlike germline variants, somatic variants arise post-zygotically and are unevenly distributed across regions, cell types and even individual neurons, enabling focal biological effects that can scale to network-level dysfunction. In this Review, we synthesize current evidence that developmental timing, clonal architecture and...
Associations between multidimensional sleep measures and domain-specific cognitive function across repeated observations in adults aged 55 years and older
Sleep is increasingly recognised as a potentially modifiable factor in cognitive ageing, but evidence is often limited by cross-sectional designs, single sleep measures and global cognitive outcomes. This study examined whether multiple sleep characteristics (device-based and self-report) were associated with domain-specific cognitive function across repeated observations in community-dwelling adults aged 55 years and older. Adults aged ≥ 55 years were assessed at three time points over 2 years...
Duration of smoking cessation and DNA methylation aging clocks among US adults: potential reversibility of smoking-induced biological aging
Tobacco smoking is a critical modifiable risk factor for age-related diseases and mortality. Although smoking cessation is known to improve health outcomes, whether smoking-induced biological aging is reversible upon cessation remains unclear. We investigated the associations of smoking status and cessation duration with epigenetic age acceleration (EAA) using multi-generational DNA methylation clocks. We analyzed data from 1,911 adults aged 50-84 years in the National Health and Nutrition...
Work stress and healthy aging: A conceptual framework for the Semmelweis study and the Semmelweis-EUniWell workplace health promotion model program
Chronic occupational stress is increasingly recognized as a modifiable accelerator of biological aging, yet it remains underappreciated as a target of geroscience-informed public health intervention. This review reframes workplace stress as a life-course determinant of aging trajectories and introduces a translational framework that positions occupational environments as platforms for promoting healthy aging. Drawing on insights from the Semmelweis Study, a large longitudinal occupational...
Exclusive: New NIH research center on vaccine harms takes shape
Clinical researchers will probe complications that can arise after immunization, but some worry about political influence