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Role of brain-gut-muscle axis in human health and energy homeostasis

能量稳态 骨骼肌 肠-脑轴 肠神经系统 平衡 生物 肌动蛋白 内分泌学 内科学 中枢神经系统 刺激 胃肠道 肠道菌群 神经科学 医学 生物化学 肥胖
作者
Yunju Yin,Qiuping Guo,Xihong Zhou,Yehui Duan,Yuhuan Yang,Saiming Gong,Mengmeng Han,Yating Liu,Zhikang Yang,Qinghua Chen,Fengna Li
出处
期刊:Frontiers in Nutrition [Frontiers Media]
卷期号:9: 947033-947033 被引量:51
标识
DOI:10.3389/fnut.2022.947033
摘要

The interrelationship between brain, gut and skeletal muscle plays a key role in energy homeostasis of the body, and is becoming a hot topic of research. Intestinal microbial metabolites, such as short-chain fatty acids (SCFAs), bile acids (BAs) and tryptophan metabolites, communicate with the central nervous system (CNS) by binding to their receptors. In fact, there is a cross-talk between the CNS and the gut. The CNS, under the stimulation of pressure, will also affect the stability of the intestinal system, including the local intestinal transport, secretion and permeability of the intestinal system. After the gastrointestinal tract collects information about food absorption, it sends signals to the central system through vagus nerve and other channels to stimulate the secretion of brain-gut peptide and produce feeding behavior, which is also an important part of maintaining energy homeostasis. Skeletal muscle has receptors for SCFAs and BAs. Therefore, intestinal microbiota can participate in skeletal muscle energy metabolism and muscle fiber conversion through their metabolites. Skeletal muscles can also communicate with the gut system during exercise. Under the stimulation of exercise, myokines secreted by skeletal muscle causes the secretion of intestinal hormones, and these hormones can act on the central system and affect food intake. The idea of the brain-gut-muscle axis is gradually being confirmed, and at present it is important for regulating energy homeostasis, which also seems to be relevant to human health. This article focuses on the interaction of intestinal microbiota, central nervous, skeletal muscle energy metabolism, and feeding behavior regulation, which will provide new insight into the diagnostic and treatment strategies for obesity, diabetes, and other metabolic diseases.
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