BDRD Research Institute, JINIS Biopharmaceuticals Inc, 948-9 Dunsan, Bongdong, Wanju, Chonbuk, 565-902, South Korea.
Protein Cell. 2013 Jun;4(6):403-14. doi: 10.1007/s13238-013-3017-x. Epub 2013 May 18.
Brain and the gastrointestinal (GI) tract are intimately connected to form a bidirectional neurohumoral communication system. The communication between gut and brain, knows as the gut-brain axis, is so well established that the functional status of gut is always related to the condition of brain. The researches on the gut-brain axis were traditionally focused on the psychological status affecting the function of the GI tract. However, recent evidences showed that gut microbiota communicates with the brain via the gut-brain axis to modulate brain development and behavioral phenotypes. These recent findings on the new role of gut microbiota in the gut-brain axis implicate that gut microbiota could associate with brain functions as well as neurological diseases via the gut-brain axis. To elucidate the role of gut microbiota in the gut-brain axis, precise identification of the composition of microbes constituting gut microbiota is an essential step. However, identification of microbes constituting gut microbiota has been the main technological challenge currently due to massive amount of intestinal microbes and the difficulties in culture of gut microbes. Current methods for identification of microbes constituting gut microbiota are dependent on omics analysis methods by using advanced high tech equipment. Here, we review the association of gut microbiota with the gut-brain axis, including the pros and cons of the current high throughput methods for identification of microbes constituting gut microbiota to elucidate the role of gut microbiota in the gut-brain axis.
大脑和胃肠道(GI)紧密相连,形成一个双向的神经激素通讯系统。肠道和大脑之间的通讯,即肠道-大脑轴,已经得到了很好的证实,肠道的功能状态总是与大脑的状况有关。肠道-大脑轴的研究传统上集中在影响胃肠道功能的心理状态上。然而,最近的证据表明,肠道微生物群通过肠道-大脑轴与大脑交流,调节大脑发育和行为表型。这些关于肠道微生物群在肠道-大脑轴中的新作用的最新发现表明,肠道微生物群可以通过肠道-大脑轴与大脑功能以及神经疾病相关。为了阐明肠道微生物群在肠道-大脑轴中的作用,精确识别构成肠道微生物群的微生物组成是一个必要的步骤。然而,由于肠道微生物数量巨大,以及肠道微生物的培养困难,目前识别构成肠道微生物群的微生物一直是主要的技术挑战。目前用于识别肠道微生物群的微生物的方法依赖于使用先进的高科技设备进行组学分析方法。在这里,我们综述了肠道微生物群与肠道-大脑轴的关联,包括目前用于识别肠道微生物群的微生物的高通量方法的优缺点,以阐明肠道微生物群在肠道-大脑轴中的作用。