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Microbiota-gut-brain Axis in Health and Neurological Disease: Interactions Between Gut Microbiota and the Nervous System

Overview
Journal J Cell Mol Med
Date 2024 Sep 20
PMID 39300699
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Abstract

Along with mounting evidence that gut microbiota and their metabolites migrate endogenously to distal organs, the 'gut-lung axis,' 'gut-brain axis,' 'gut-liver axis' and 'gut-renal axis' have been established. Multiple animal recent studies have demonstrated gut microbiota may also be a key susceptibility factor for neurological disorders such as Alzheimer's disease, Parkinson's disease and autism. The gastrointestinal tract is innervated by the extrinsic sympathetic and vagal nerves and the intrinsic enteric nervous system, and the gut microbiota interacts with the nervous system to maintain homeostatic balance in the host gut. A total of 1507 publications on the interactions between the gut microbiota, the gut-brain axis and neurological disorders are retrieved from the Web of Science to investigate the interactions between the gut microbiota and the nervous system and the underlying mechanisms involved in normal and disease states. We provide a comprehensive overview of the effects of the gut microbiota and its metabolites on nervous system function and neurotransmitter secretion, as well as alterations in the gut microbiota in neurological disorders, to provide a basis for the possibility of targeting the gut microbiota as a therapeutic agent for neurological disorders.

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References
1.
Warnecke T, Schafer K, Claus I, Del Tredici K, Jost W . Gastrointestinal involvement in Parkinson's disease: pathophysiology, diagnosis, and management. NPJ Parkinsons Dis. 2022; 8(1):31. PMC: 8948218. DOI: 10.1038/s41531-022-00295-x. View

2.
Ge X, Ding C, Zhao W, Xu L, Tian H, Gong J . Antibiotics-induced depletion of mice microbiota induces changes in host serotonin biosynthesis and intestinal motility. J Transl Med. 2017; 15(1):13. PMC: 5237163. DOI: 10.1186/s12967-016-1105-4. View

3.
Meerschaert K, Davis B, Smith-Edwards K . New Insights on Extrinsic Innervation of the Enteric Nervous System and Non-neuronal Cell Types That Influence Colon Function. Adv Exp Med Biol. 2022; 1383:133-139. DOI: 10.1007/978-3-031-05843-1_13. View

4.
Cho Y, Chang J, Chang H . Production of gamma-aminobutyric acid (GABA) by Lactobacillus buchneri isolated from kimchi and its neuroprotective effect on neuronal cells. J Microbiol Biotechnol. 2007; 17(1):104-9. View

5.
Liu Y, Sanderson D, Mian M, McVey Neufeld K, Forsythe P . Loss of vagal integrity disrupts immune components of the microbiota-gut-brain axis and inhibits the effect of Lactobacillus rhamnosus on behavior and the corticosterone stress response. Neuropharmacology. 2021; 195:108682. DOI: 10.1016/j.neuropharm.2021.108682. View