Department of Cellular and Molecular Medicine, Arizona Center for the Biology of Complex Diseases and Asthma and Airway Disease Research Center, The University of Arizona, Tucson, AZ, USA.
Curr Opin Immunol. 2021 Oct;72:215-220. doi: 10.1016/j.coi.2021.06.002. Epub 2021 Jun 26.
Environmental, maternal and early life microbial/immune networks program human developmental trajectories and health outcomes and strongly modify allergic disease risk. The effects of environmental microbiota are illustrated by the 'farm effect' (the protection against asthma and allergy conferred by growing up on a traditional farm) and other natural experiments in populations exposed to microbe-rich environments. The role of gut microbiome maturation in the asthma/allergy trajectory is demonstrated by the most recent farm studies, which identified microbial metabolites specifically associated with asthma protection, and studies in other cohorts, which defined dynamic microbial community profiles associated with allergic disease phenotypes. Current and future studies in germ-free mice associated with gut microbiota from human disease states are providing novel mechanistic insights into the role of microbiota in shaping immune function and allergic disease susceptibility.
环境、母体和生命早期的微生物/免疫网络塑造了人类的发育轨迹和健康结果,并强烈改变了过敏疾病的风险。环境微生物群的影响可以通过“农场效应”(在传统农场中长大可预防哮喘和过敏)和其他在微生物丰富环境中暴露的人群中的自然实验来说明。肠道微生物组成熟在哮喘/过敏轨迹中的作用可以通过最近的农场研究来证明,这些研究确定了与哮喘保护特别相关的微生物代谢产物,以及其他队列研究,这些研究定义了与过敏疾病表型相关的动态微生物群落特征。目前和未来在无菌小鼠中进行的与来自人类疾病状态的肠道微生物群相关的研究为微生物在塑造免疫功能和过敏疾病易感性方面的作用提供了新的机制见解。