Gut Bacteria May Hold Key to Preventing Age-Related Vision Loss
New research reveals how gut microbiome changes with aging contribute to macular degeneration and potential therapeutic approaches.
Gut microbiome, probiotics, gut-brain axis, and digestive health
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New research reveals how gut microbiome changes with aging contribute to macular degeneration and potential therapeutic approaches.
Just 14 days of inactivity changed gut microbiome composition and increased frailty markers, but exercise provided protection.
Systematic review reveals how fiber, nuts, and aging affect how much energy your body actually extracts from food.
First study of its kind reveals age-related gut changes that may support healthy aging through enhanced beneficial bacteria production.
New research reveals how your gut's ability to bounce back from stress could determine your lifespan and healthspan.
New research reveals how microplastics damage intestinal health and gut bacteria in animals, with implications for human health.
New research reveals how gut bacteria and immune aging create a vicious cycle that accelerates inflammaging and offers intervention targets.
New research reveals how gut microbiome diversity predicts brain health and survival, offering targets for dietary interventions.
New research reveals how gut-derived postbiotics could combat brain inflammation and preserve cognitive function as we age.
New review reveals how gut microbiome dysbiosis affects the most aggressive brain tumor through immune and metabolic pathways.
New review reveals how gut microbes metabolize neurological medications, potentially altering their effectiveness for brain diseases.
Scientists identify how mysterious gut bacteria process nutrients, potentially opening new avenues for microbiome-based health interventions.