Unmasking Fatigue: The Surprising Link to B12 and Folate Levels
Persistent tiredness? Discover how deficiencies in vital B vitamins, B12 and folate, could be silently draining your energy and motivation. Learn more.
Persistent tiredness? Discover how deficiencies in vital B vitamins, B12 and folate, could be silently draining your energy and motivation. Learn more.
Scientists uncover a brain protein, Menin, in the hypothalamus linked to aging in mice. Restoring Menin reversed age signs, and D-serine boosted cognition, opening new research paths.
New research suggests omega-3 fatty acids may improve insulin sensitivity by modulating immune cell function, offering a potential path for managing type 2 diabetes.
Explore how senescent microglia, the brain’s immune cells, contribute to neurodegenerative conditions like Alzheimer’s. Learn about emerging therapies targeting these ‘zombie cells’.
New research suggests omega-3 fish oil may help reduce insulin resistance and inflammation in type 2 diabetes by modulating immune cells. Learn about these promising findings.
New research reveals how aged immune cells, specifically CD8+ T cells, secrete Granzyme K, contributing to cognitive decline in a reversible way.
Biological aging clocks are evolving beyond chronological age. Explore how multi-omics approaches are creating more precise tools for understanding health, disease, and longevity.
Explore how public health, clinical medicine, and geroscience must integrate to tackle chronic age-related diseases and extend healthy human lifespans.
New research reveals the APOE2 gene variant enhances neuronal resilience by reducing DNA damage and cellular senescence, offering clues to brain longevity.
Discover how PM20D1 and N-oleoyl-leucine may boost microglia’s ability to clear amyloid-beta in the brain, offering a novel strategy for Alzheimer’s disease research.
New research reveals how senescent cells in dental pulp contribute to tooth aging, making teeth brittle. Senolytic therapies show promise in restoring dental health.
Emerging research highlights astrocytes, the brain’s support cells, as critical targets for novel therapies against cognitive decline and neurodegenerative diseases.