The Gut–Brain Axis and the Microbiome: Mechanisms and Clinical Implications

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作者
Vadim Osadchiy,Clair R. Martin,Emeran A. Mayer
出处
期刊:Clinical Gastroenterology and Hepatology [Elsevier BV]
卷期号:17 (2): 322-332 被引量:443
标识
DOI:10.1016/j.cgh.2018.10.002
摘要

Background & AimsBased largely on results from preclinical studies, the concept of a brain gut microbiome axis has been established, mediating bidirectional communication between the gut, its microbiome, and the nervous system. Limited data obtained in human beings suggest that alterations in these interactions may play a role in several brain gut disorders.MethodsWe reviewed the preclinical and clinical literature related to the topic of brain gut microbiome interactions.ResultsWell-characterized bidirectional communication channels, involving neural, endocrine, and inflammatory mechanisms, exist between the gut and the brain. Communication through these channels may be modulated by variations in the permeability of the intestinal wall and the blood-brain barrier. Brain gut microbiome interactions are programmed during the first 3 years of life, including the prenatal period, but can be modulated by diet, medications, and stress throughout life. Based on correlational studies, alterations in these interactions have been implicated in the regulation of food intake, obesity, and in irritable bowel syndrome, even though causality remains to be established.ConclusionsTargets within the brain gut microbiome axis have the potential to become targets for novel drug development for brain gut disorders. Based largely on results from preclinical studies, the concept of a brain gut microbiome axis has been established, mediating bidirectional communication between the gut, its microbiome, and the nervous system. Limited data obtained in human beings suggest that alterations in these interactions may play a role in several brain gut disorders. We reviewed the preclinical and clinical literature related to the topic of brain gut microbiome interactions. Well-characterized bidirectional communication channels, involving neural, endocrine, and inflammatory mechanisms, exist between the gut and the brain. Communication through these channels may be modulated by variations in the permeability of the intestinal wall and the blood-brain barrier. Brain gut microbiome interactions are programmed during the first 3 years of life, including the prenatal period, but can be modulated by diet, medications, and stress throughout life. Based on correlational studies, alterations in these interactions have been implicated in the regulation of food intake, obesity, and in irritable bowel syndrome, even though causality remains to be established. Targets within the brain gut microbiome axis have the potential to become targets for novel drug development for brain gut disorders.
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