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短链脂肪酸:连接饮食、微生物组和免疫。

Short-chain fatty acids: linking diet, the microbiome and immunity.

机构信息

Lydia Becker Institute of Immunology and Inflammation, Faculty of Biology Medicine and Health, University of Manchester, Manchester Academic Health Science Centre, Manchester, UK.

Translational Gastroenterology Unit, University of Oxford, Oxford, UK.

出版信息

Nat Rev Immunol. 2024 Aug;24(8):577-595. doi: 10.1038/s41577-024-01014-8. Epub 2024 Apr 2.

Abstract

The short-chain fatty acids (SCFAs) butyrate, propionate and acetate are microbial metabolites and their availability in the gut and other organs is determined by environmental factors, such as diet and use of antibiotics, that shape the diversity and metabolism of the microbiota. SCFAs regulate epithelial barrier function as well as mucosal and systemic immunity via evolutionary conserved processes that involve G protein-coupled receptor signalling or histone deacetylase activity. Indicatively, the anti-inflammatory role of butyrate is mediated through direct effects on the differentiation of intestinal epithelial cells, phagocytes, B cells and plasma cells, and regulatory and effector T cells. Intestinally derived SCFAs also directly and indirectly affect immunity at extra-intestinal sites, such as the liver, the lungs, the reproductive tract and the brain, and have been implicated in a range of disorders, including infections, intestinal inflammation, autoimmunity, food allergies, asthma and responses to cancer therapies. An ecological understanding of microbial communities and their interrelated metabolic states, as well as the engineering of butyrogenic bacteria may support SCFA-focused interventions for the prevention and treatment of immune-mediated diseases.

摘要

短链脂肪酸(SCFAs),如丁酸、丙酸和乙酸,是微生物代谢产物,其在肠道和其他器官中的可用性取决于环境因素,如饮食和抗生素的使用,这些因素会影响微生物群的多样性和代谢。SCFAs 通过涉及 G 蛋白偶联受体信号或组蛋白去乙酰化酶活性的进化保守过程,调节上皮屏障功能以及黏膜和全身免疫。值得注意的是,丁酸的抗炎作用是通过直接作用于肠道上皮细胞、吞噬细胞、B 细胞和浆细胞以及调节性和效应 T 细胞的分化来介导的。肠道衍生的 SCFAs 还直接和间接影响肠道外部位的免疫,如肝脏、肺部、生殖道和大脑,并与一系列疾病有关,包括感染、肠道炎症、自身免疫、食物过敏、哮喘和对癌症治疗的反应。对微生物群落及其相互关联的代谢状态的生态理解,以及丁酸盐产生菌的工程化,可能支持以 SCFA 为重点的干预措施,以预防和治疗免疫介导的疾病。

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