胆汁酸:肠道-大脑轴中的沟通渠道。
Bile Acids: A Communication Channel in the Gut-Brain Axis.
机构信息
Translational Laboratories in Genetic Medicine, Agency for Science, Technology and Research, 8A Biomedical Grove, Singapore, 138648, Singapore.
Yong Loo Lin School of Medicine, National University of Singapore, Singapore, 117597, Singapore.
出版信息
Neuromolecular Med. 2021 Mar;23(1):99-117. doi: 10.1007/s12017-020-08625-z. Epub 2020 Oct 21.
Bile acids are signalling hormones involved in the regulation of several metabolic pathways. The ability of bile acids to bind and signal through their receptors is modulated by the gut microbiome, since the microbiome contributes to the regulation and synthesis of bile acids as well to their physiochemical properties. From the gut, bacteria have been shown to send signals to the central nervous system via their metabolites, thus affecting the behaviour and brain function of the host organism. In the last years it has become increasingly evident that bile acids affect brain function, during normal physiological and pathological conditions. Although bile acids may be synthesized locally in the brain, the majority of brain bile acids are taken up from the systemic circulation. Since the composition of the brain bile acid pool may be regulated by the action of intestinal bacteria, it is possible that bile acids function as a communication bridge between the gut microbiome and the brain. However, little is known about the molecular mechanisms and the physiological roles of bile acids in the central nervous system. The possibility that bile acids may be a direct link between the intestinal microbiome and the brain is also an understudied subject. Here we review the influence of gut bacteria on the bile acid pool composition and properties, as well as striking evidence showing the role of bile acids as neuroactive molecules.
胆汁酸是参与调节多种代谢途径的信号激素。由于肠道微生物组有助于调节和合成胆汁酸及其理化性质,因此胆汁酸结合并通过其受体发出信号的能力受到肠道微生物组的调节。从肠道中可以看出,细菌通过其代谢物向中枢神经系统发送信号,从而影响宿主生物体的行为和大脑功能。近年来,越来越明显的是,胆汁酸在正常生理和病理条件下影响大脑功能。尽管胆汁酸可能在大脑中局部合成,但大多数脑胆汁酸是从全身循环中摄取的。由于脑胆汁酸池的组成可能受肠道细菌的作用调节,因此胆汁酸可能作为肠道微生物群和大脑之间的通讯桥梁发挥作用。然而,对于胆汁酸在中枢神经系统中的分子机制和生理作用知之甚少。胆汁酸可能是肠道微生物群和大脑之间的直接联系,这也是一个研究不足的课题。在这里,我们回顾了肠道细菌对胆汁酸库组成和性质的影响,以及令人瞩目的证据表明胆汁酸作为神经活性分子的作用。