Cellular Powerhouses Under Attack: How Stroke Damages Brain Energy Centers
New research reveals how stroke disrupts mitochondria and endoplasmic reticulum, offering targets for neuroprotection.
Parkinson's disease, dopamine pathways, movement disorders, and neuroprotection
124 articles
New research reveals how stroke disrupts mitochondria and endoplasmic reticulum, offering targets for neuroprotection.
New research reveals how Parkinson's pathology may originate in the gut and spread to the brain via neural pathways.
New review reveals how gut microbes trigger Alzheimer's, Parkinson's, and other brain diseases via inflammation and toxic metabolites.
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.
Discover how biological rhythms and brain chemicals shape your experience of time and learn science-based tools to optimize focus and productivity.
Discover the neuroscience behind social homeostasis and practical tools for building stronger relationships through shared experiences.
New peptide delivery system restores brain connections and memory function in Alzheimer's models, offering hope for treating cognitive decline.
New drug FP802 disrupts toxic brain signaling, preventing memory loss and brain damage in Alzheimer's mouse models.
New research reveals how a single gene defect causes brain changes resembling multiple neurodegenerative diseases simultaneously.
Pomegranate metabolite urolithin A reduced brain damage and improved recovery in mouse stroke model by blocking inflammation and cell death.
New research reveals distinct protein signatures in skin samples that could help doctors accurately diagnose different neurodegenerative diseases.