生物
嗜酸性粒细胞
固有层
小肠
肠粘膜
免疫学
肠上皮
运动性
细胞生物学
势垒函数
人口
微生物学
上皮
内科学
内分泌学
医学
遗传学
哮喘
社会学
人口学
作者
Aline Ignácio,Kathleen Shah,Jeremiah Bernier‐Latmani,Yasmin Köller,Gillian Coakley,Mati Moyat,Romain Hamelin,Florence Armand,Nicholas C. Wong,Hena R. Ramay,C Thomson,Regula Burkhard,Haozhe Wang,Antoine Dufour,Markus B. Geuking,Braedon McDonald,Tatiana V. Petrova,Nicola Harris,Kathy D. McCoy
出处
期刊:Immunity
[Cell Press]
日期:2022-07-01
卷期号:55 (7): 1250-1267.e12
被引量:35
标识
DOI:10.1016/j.immuni.2022.05.014
摘要
The intestine harbors a large population of resident eosinophils, yet the function of intestinal eosinophils has not been explored. Flow cytometry and whole-mount imaging identified eosinophils residing in the lamina propria along the length of the intestine prior to postnatal microbial colonization. Microscopy, transcriptomic analysis, and mass spectrometry of intestinal tissue revealed villus blunting, altered extracellular matrix, decreased epithelial cell turnover, increased gastrointestinal motility, and decreased lipid absorption in eosinophil-deficient mice. Mechanistically, intestinal epithelial cells released IL-33 in a microbiota-dependent manner, which led to eosinophil activation. The colonization of germ-free mice demonstrated that eosinophil activation in response to microbes regulated villous size alterations, macrophage maturation, epithelial barrier integrity, and intestinal transit. Collectively, our findings demonstrate a critical role for eosinophils in facilitating the mutualistic interactions between the host and microbiota and provide a rationale for the functional significance of their early life recruitment in the small intestine.
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