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短链脂肪酸对宿主生理学的微生物调节作用。

Microbial Regulation of Host Physiology by Short-chain Fatty Acids.

机构信息

Host-Microbe Interactomics, Animal Sciences Group, Wageningen University, Wageningen, The Netherlands.

Host-Microbe Interactomics, Animal Sciences Group, Wageningen University, Wageningen, The Netherlands.

出版信息

Trends Microbiol. 2021 Aug;29(8):700-712. doi: 10.1016/j.tim.2021.02.001. Epub 2021 Mar 2.

Abstract

Our ancestral diet consisted of much more nondigestible fiber than that of many societies today. Thus, from an evolutionary perspective the human genome and its physiological and nutritional requirements are not well aligned to modern dietary habits. Fiber reaching the colon is anaerobically fermented by the gut bacteria, which produce short-chain fatty acids (SCFAs) as metabolic by-products. SCFAs play a role in intestinal homeostasis, helping to explain why changes in the microbiota can contribute to the pathophysiology of human diseases. Recent research has shown that SCFAs can also have effects on tissues and organs beyond the gut, through their circulation in the blood. SCFAs not only signal through binding to cognate G-protein-coupled receptors on endocrine and immune cells in the body but also induce epigenetic changes in the genome through effects on the activity of histone acetylase and histone deacetylase enzymes. Furthermore, epigenetic imprinting likely occurs in utero, highlighting the importance of the maternal diet in early life. Here we review current understanding of how SCFAs impact on human and animal physiology and discuss the potential applications of SCFAs in the prevention and treatment of human diseases.

摘要

我们祖先的饮食中含有比当今许多社会更多的不可消化纤维。因此,从进化的角度来看,人类的基因组及其生理和营养需求与现代饮食习惯并不完全匹配。纤维到达结肠后,被肠道细菌进行无氧发酵,产生短链脂肪酸(SCFAs)作为代谢副产物。SCFAs 在肠道稳态中发挥作用,有助于解释为什么微生物群的变化会导致人类疾病的病理生理学变化。最近的研究表明,SCFAs 也可以通过在血液中的循环对肠道以外的组织和器官产生影响。SCFAs 不仅通过与体内内分泌和免疫细胞上的同源 G 蛋白偶联受体结合来传递信号,还通过影响组蛋白乙酰化酶和组蛋白去乙酰化酶的活性来诱导基因组的表观遗传变化。此外,表观遗传印记可能在子宫内发生,突出了母亲在生命早期饮食的重要性。在这里,我们综述了目前对 SCFAs 如何影响人类和动物生理学的理解,并讨论了 SCFAs 在预防和治疗人类疾病方面的潜在应用。

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