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◆ Food Research International2026-03-11· Crosstalk

Microbiome crosstalk and nutrition: the interplay between gut microbiota-organ axis and dietary factors

Menşure Nur Çelik, Merve Esra Çıtar Dazıroğlu, Büşra Atabilen Pınar, Maria Francesca Nanì, Barbara Romano, Duygu Ağagündüz, R Capasso

原始摘要(英文原文)· Original abstract
The gut microbiota (GM) is referred to as the central organ due to its dynamic and adaptable contact network with other organs through humoral, immunological, metabolic, endocrine, and neurological pathways. Recent studies have emphasized the concept of the “gut-organ axis”, which shows that the effects of GM go beyond the gastrointestinal system (GIS) and encompass the reciprocal interactions between other organs. Communication along these axis occurs mainly through mediators such as short-chain fatty acids (SCFAs), microbial metabolites, neurotransmitters, cytokines, and hormonal signals. Therefore, imbalances in GM may surpass gut problems and be linked to diseases affecting the brain, liver, lungs, heart, mouth, skin, and many other organs. Understanding these reciprocal interactions can inform strategies for disease prevention and treatment. Emerging evidence suggests that interactions between the GM and other organ-specific metabolites it secretes are dynamic and influenced by various environmental and lifestyle factors, particularly diet. The gut and other organ microbiomes are maintained in balance with the help of nutritional supplements like probiotics, prebiotics, symbiotic, vitamins, omega-3 fatty acids, and dietary fiber. Consuming processed or red meat, high-fat, high-sugar, high-glycemic index foods, and excessive salt can upset this balance and raise the risk of systemic inflammation and disease. The purpose of this review is to examine the interactions between various organ-specific microbiomes in the human body, to elucidate the effects of these interactions on health, and to highlight how microbiome-targeted nutritional interventions can modulate these interactions, potentially affecting disease risk and overall metabolic homeostasis. • Gut microbiota acts as a central organ via multi-organ interactions. • Dysbiosis contributes to systemic diseases beyond the GI tract. • Diet contributes to organ-gut interactions by shaping the gut microbiota, microbial metabolites (including SCFAs), and consequently host immune responses. Dietary patterns as primary modulators of gut-organ axes via microbial metabolites. • Nutritional interventions (probiotics, prebiotics, fiber, omega-3 etc.) modulate gut-organ axis.
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