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The microbial-mammalian metabolic axis: a critical symbiotic relationship

机译:微生物-哺乳动物代谢轴:关键的共生关系

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Purpose of reviewThe microbial-mammalian symbiosis plays a critical role in metabolic health. Microbial metabolites emerge as key messengers in the complex communication between the gut microbiota and their host. These chemical signals are mainly derived from nutritional precursors, which in turn are also able to modify gut microbiota population. Recent advances in the characterization of the gut microbiome and the mechanisms involved in this symbiosis allow the development of nutritional interventions. This review covers the latest findings on the microbial-mammalian metabolic axis as a critical symbiotic relationship particularly relevant to clinical nutrition.Recent findingsThe modulation of host metabolism by metabolites derived from the gut microbiota highlights the importance of gut microbiota in disease prevention and causation. The composition of microbial populations in our gut ecosystem is a critical pathophysiological factor, mainly regulated by diet, but also by the host's characteristics (e.g. genetics, circadian clock, immune system, age). Tailored interventions, including dietary changes, the use of antibiotics, prebiotic and probiotic supplementation and faecal transplantation are promising strategies to manipulate microbial ecology.SummaryThe microbiome is now considered as an easily reachable target to prevent and treat related diseases. Recent findings in both mechanisms of its interactions with host metabolism and in strategies to modify gut microbiota will allow us to develop more effective treatments especially in metabolic diseases.
机译:审查目的微生物-哺乳动物共生在代谢健康中起关键作用。微生物代谢物是肠道菌群与其宿主之间复杂交流的关键信使。这些化学信号主要来自营养前体,而营养前体又能够改变肠道微生物群。肠道微生物组的鉴定及其共生机制的最新进展使得人们可以开展营养干预措施。这篇综述涵盖了微生物-哺乳动物代谢轴上的最新发现,这是与临床营养特别相关的关键共生关系。最近发现肠道微生物群代谢产物对宿主代谢的调节突出了肠道微生物群在疾病预防和因果关系中的重要性。肠道生态系统中微生物种群的组成是关键的病理生理因素,主要受饮食调节,但也受宿主特征(例如遗传学,昼夜节律,免疫系统,年龄)的调节。量身定制的干预措施包括饮食变化,抗生素的使用,益生元和益生菌的补充以及粪便移植是操纵微生物生态学的有前途的策略。总结现在,微生物组被认为是预防和治疗相关疾病的容易达到的目标。其与宿主代谢相互作用的机制以及改变肠道菌群的策略的最新发现将使我们能够开发出更有效的治疗方法,尤其是在代谢疾病中。

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