Aggregator
Diabetes study finds keeping blood sugar too steady may come at a price
People with diabetes reported better quality of life after days when their glucose stayed largely within a healthy range, even when levels fluctuated more than usual. The unexpected finding suggests that pursuing extremely tight glucose control may sometimes come with a hidden lifestyle burden.
Scientists just discovered what coffee really does to your gut and brain
A new study suggests coffee may influence mood and brain function by changing the activity of microbes in the gut. Both caffeinated and decaf coffee were linked to lower stress, depression, and impulsivity, while also producing measurable changes in gut bacteria and metabolites. Decaf was associated with better learning and memory, while caffeinated coffee appeared to reduce anxiety and improve attention.
Blood tests reveal why astronauts get constipated in space
Spaceflight may dramatically change the gut within weeks, causing bacteria to break down more protein as food moves more slowly through the intestines. The shift could help explain astronaut constipation and may have wider effects on health, making it an important concern for future missions to Mars.
Pomegranate compound improves heart function by up to 80% in study
A compound the body can make after eating pomegranates, walnuts, and some berries improved measures of heart function by up to 80% in animal models of a difficult-to-treat form of heart failure. Urolithin A helped stiff heart tissue relax and reduced scarring and abnormal enlargement. It also improved relaxation in engineered human heart tissue.
Regional distribution of mineralized blood vessels in Alzheimer disease and clinicopathological associations: A multicenter autopsy study
Mineralized blood vessels (MBV) are a form of vascular pathology associated with cerebrovascular aging and neurodegeneration; however, their regional distribution and clinicopathological correlates in Alzheimer disease (AD) remain poorly characterized. We examined 265 decedents with intermediate/high AD neuropathologic change from three Alzheimer's Disease Research Centers (Columbia University, University of California San Diego, and University of California Davis). Hematoxylin and eosin-stained...
Tau hyperphosphorylation impairs cooperative binding to microtubules and perturbs organelle trafficking in neurons
Tau, a neuronal microtubule-associated protein (MAP), organizes the axonal cytoskeleton, and regulates intracellular transport. Tau hyperphosphorylation is linked to neurodegeneration in tauopathies, including Alzheimer's disease. Tau binds microtubules cooperatively to form cohesive envelopes, which are thought to control access to the microtubule lattice and regulate the activity of motor proteins and other MAPs. However, how disease-related perturbations affect tau dynamics and its function...
BAG3 coordinates astrocytic proteostasis of Alzheimer's disease-linked proteins via proteasome, autophagy, and retromer interactions
Bcl-2-associated athanogene 3 (BAG3) is a mediator of chaperone-assisted selective autophagy, and in the brain, is most highly expressed in astrocytes. However, its role in astrocytes remains poorly defined. Given the genetic and pathological links of BAG3 to proteostasis and neurodegenerative diseases, we investigated how BAG3 contributes to astrocyte function and Alzheimer's disease (AD). To define its function and relevance, we used single-nucleus RNA sequencing to confirm BAG3 enrichment in...
Hypomorphic STING1/TMEM173 variants may support immuno-metabolic resilience in aging people living with HIV
Antiretroviral therapy (ART) has significantly increased life expectancy of people living with HIV (PLWH). Nonetheless, despite effective virological control, PLWH are faced with accelerated aging, characterized by higher prevalence of age-related comorbidities than the general population. Persistent inflammation and activation of innate immunity seem to drive this immunosenescent phenotype. The cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) pathway is increasingly...
Masking phosphatidylserine prevents neuronal loss in two distinct <em>Drosophila</em> models of neurodegeneration
Neuronal loss is a hallmark of neurodegenerative diseases. Phosphatidylserine (PS), a key "eat me" signal, is exposed on stressed viable neurons, triggering their premature phagocytosis by activated glia. We investigated whether PS masking could serve as a universal strategy to prevent neuronal loss in two distinct Drosophila models of neurodegeneration: an adult-stage-specific knockdown of skpA and a Huntington's disease model initiated during embryogenesis. Both models exhibit neuronal loss,...
Deep Learning Predicts Hematopoietic Stem Cell Aging From 3D Chromatin Images
The functional decline of the hematopoietic system during aging affects organismal function and contributes to reduced healthspan. Quantifying hematopoietic aging holds great scientific and clinical relevance. Alterations in chromatin architecture are a well-established hallmark of aging that encode rich and informative signatures of the aging process, yet they remain largely unexplored as quantitative markers. Here, we present an interpretable deep learning approach based on convolutional...
Autophagy Flux Is Remodeled Sex- and Cell Type-Specifically During Human Aging, and Is Linked to Reduced Physical Function in Older Adults
Autophagy is widely proposed to decline with age; however, direct evidence across human cell types remains limited. Moreover, it is unclear whether age-associated changes in autophagy-gene transcription are accompanied by corresponding changes in autophagic activity, and whether autophagic activity relates to physiological function during aging. We performed transcriptomic and functional autophagy analyses across subject-matched human cell types from a healthy aging cohort. Autophagy-related...
160-million-year-old proteins show surprising power against superbugs
Scientists resurrected antimicrobial peptides from mammals that lived millions of years ago and found that some were more potent against drug-resistant bacteria than modern human versions. These evolutionary relics could provide new clues for designing treatments as antibiotic resistance becomes an increasingly serious threat.
Resetting the body clock could help the brain recover after stroke
Strengthening the body’s natural daily rhythms helped mice recover after stroke by improving the brain’s waste-clearing system and reducing lingering inflammation. The approach worked even when treatment began three days after the stroke, suggesting circadian-based therapies could eventually offer a new way to support long-term recovery.
Paid to peer review: firms are paying researchers to assess manuscripts for journals
Old hearts age backwards: transplanted organs adjust to host's biological age
Vaping in childhood has bigger health risks than we’d thought
Bigger than CRISPR? A guide to the latest genome editors
Stephen Hawking biography explores an ‘exceptionally clear, uncluttered mind’
China now leads the world in trials for next-gen CAR-T therapies
Scientists engineered a glowing cuttlefish. Why was it so hard?
Breakthroughs in genetically altering cephalopods pave way for new studies of perception, brain evolution, and more