Astrocyte Fibronectin Emerges as Key Driver of Blood–Brain Barrier Failure in Alzheimer’s Disease
A new Nature Aging study identifies astrocyte-derived fibronectin as the molecular link between the APOE ε4 allele, amyloid pathology, and ...
A new Nature Aging study identifies astrocyte-derived fibronectin as the molecular link between the APOE ε4 allele, amyloid pathology, and ...
New research in Nature Neuroscience shows that Alzheimer's disease disrupts myeloid cell production in the bone marrow via type I ...
New research shows that frontal tau pathology fragments the traveling slow waves of deep sleep, weakening overnight memory consolidation and ...
Deep in the brainstem, a tiny, pigment-darkened cluster of neurons called the locus coeruleus acts as the brain's principal source ...
A comprehensive review finds that gut microbial imbalance drives metabolic, neurodegenerative, cardiovascular and gastrointestinal diseases through defined metabolite signaling pathways.
Cryo-electron microscopy has revealed an entirely new amyloid-β filament fold in the brains of individuals carrying one of the rarest ...
Alzheimer's disease research has spent decades fixated on amyloid plaques and tau tangles, but a team of scientists in China ...
Alzheimer’s disease has long been described through the lens of neurons: the loss of synapses, the accumulation of amyloid-β plaques, ...
The brain depends on an intricate internal recycling system to keep its exceptionally long-lived cells functioning. A new review in ...
A newly identified mechanism may explain how tau protein helps drive Alzheimer’s disease and other tauopathies, according to research from ...
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© 2025 Scienmag - Science Magazine
© 2025 Scienmag - Science Magazine