Antioxidants Reshape Gut Bacteria to Fight Alzheimer's and Parkinson's Disease
New review reveals how antioxidants modify gut microbiota to reduce brain inflammation and slow neurodegenerative disease progression.
Cognitive performance, neuroplasticity, dementia prevention, and brain aging research
478 articles
New review reveals how antioxidants modify gut microbiota to reduce brain inflammation and slow neurodegenerative disease progression.
Comprehensive review reveals multiple supplements may enhance brain recovery after TBI through anti-inflammatory and neuroprotective mechanisms.
Single-cell analysis reveals how the flavonoid fisetin may reduce neuroinflammation in Alzheimer's disease by targeting specific astrocyte subgroups.
Scientists mapped immune receptors across the brain, discovering how IL-17E and IL-17RB in the cortex regulate social interactions.
New review reveals how protective pain signals transform into chronic suffering through neural, immune, and psychological changes.
Study reveals tryptophan metabolites from gut bacteria correlate with brain activity patterns and autism severity in youth.
Multi-omics study reveals how altered gut microbiome in autistic children produces specific proteins and metabolites that cross the blood-brain barrier.
Study of 833 people finds depression linked to premature biological aging in both brain structure and DNA methylation patterns.
Researchers develop 98% accurate plasma protein panel that detects ALS disease process years before clinical onset.
Study shows 2'-fucosyllactose improves cognitive function in mice by modulating gut microbiota and brain serotonin levels.
New review reveals how senescent brain cells fuel Alzheimer's progression and highlights promising senolytic therapies for cognitive protection.
Comprehensive review maps molecular pathways driving vascular dementia, highlighting novel therapeutic approaches.