High-Salt Diet Worsens Chronic Prostatitis Through Gut Microbiome Disruption
New research reveals how excess salt intake aggravates prostate inflammation by altering gut bacteria and immune cell function.
Gut bacteria diversity, digestive health, probiotics, prebiotics, and the gut-brain axis
318 articles
New research reveals how excess salt intake aggravates prostate inflammation by altering gut bacteria and immune cell function.
Fecal microbiota transplants from healthy adult pigs protected newborn piglets from severe coronavirus diarrhea and death.
Comprehensive review reveals how infant gut bacteria development in first 1000 days determines chronic disease risk throughout life.
New research reveals how specific gut bacteria help the body absorb creatine, potentially offering a novel approach to depression treatment.
Scientists propose integrated approach connecting cellular aging, gut bacteria, and tumor environment to improve cancer prevention and treatment.
Major review reveals how gut microbiome imbalances contribute to neuropsychiatric disorders affecting over 1 billion people worldwide.
Aging reduces beneficial gut bacteria that produce NDGA, a compound that prevents inflammatory bowel disease by blocking immune cell death.
Living at high altitude causes beneficial gut bacteria to decline a decade earlier than at sea level, potentially accelerating aging processes.
Six-year study reveals how Mediterranean diet preserves memory and thinking through beneficial gut bacteria in older adults.
New research reveals how age-related gut bacteria changes accelerate aging and disease, while highlighting promising intervention strategies.
New research reveals why bacteria quickly resist phage cocktails and identifies timing strategies to prevent resistance evolution.
Scientists discover how beneficial gut bacteria produce proteins that bind to inflammatory toxins, potentially reducing chronic inflammation.