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Bacterial metabolites of human gut microbiota correlating with depression of the microbiota-gut-brain axis induced scientists to study the role of gut microbiota (GM) in the pathogenesis

Gut Microbiome Dysbiosis as a Potential Risk Factor for Idiopathic Toe-Walking in Children: A Review by the imbalance of gut microbiota metabolites as a result of dysbiosis. This review delves into the exciting

Gut microbiome signature of Viliuisk encephalomyelitis in Yakuts includes an increase in microbes linked to lean body mass and eating behaviour. Gut microbiome is one of the factors that might be involved in VE pathogenesis. Results: Here we

Role of certain nutrients in nervous system development and possible modulatory effects of complementary feeding, B12, and A, long-chain polyunsaturated fatty acids, gut microbiota-brain axis functioning

Nutritional modulation of the intestinal microbiota: future opportunities for the prevention and treatment of neuroimmune and neuroinflammatory disease© 2018 Elsevier Inc. The gut-brain-axis refers to the bidirectional communication between

Роль отдельных нутриентов в развитии нервной системы и возможное модулирующее влияние прикорма1, B12, and A, long-chain polyunsaturated fatty acids, gut microbiota-brain axis

Микробиота кишечника у пациентов с ремиттирующим рассеянным склерозом on the whole body. It is especially important to study patterns of functioning of the gut-brain axis

Protective effects of probiotics on cognitive and motor functions, anxiety level, visceral sensitivity, oxidative stress and microbiota in mice with antibiotic-induced dysbiosis in regulation of physiological functions. The gut–brain axis imbalance due to gut dysbiosis is associated with a

Excess fermentation and lactic acidosis as detrimental functions of the gut microbes in treatment-naive TB patients capacity of the gut community, which is a key axis of impact on the host’s immunity. Methods: We used deep

The putative antidepressant mechanisms of probiotic bacteria: Relevant genes and proteins—namely, secreted proteins, peptides and cell wall components—are most likely to be entangled in the gut–brain axis

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