失调
免疫学
发病机制
肠道菌群
炎症性肠病
促炎细胞因子
溃疡性结肠炎
生物
结肠炎
微生物群
免疫系统
炎症
微生物学
疾病
医学
病理
遗传学
作者
Hiroko Nagao‐Kitamoto,Andrew B. Shreiner,Merritt Gillilland,Sho Kitamoto,Chiharu Ishii,Akiyoshi Hirayama,Peter Kuffa,Mohamad El–Zaatari,Helmut Grasberger,Anna M. Seekatz,Peter Higgins,Vincent B. Young,Shinji Fukuda,John Y. Kao,Nobuhiko Kamada
标识
DOI:10.1016/j.jcmgh.2016.02.003
摘要
Gut dysbiosis is closely involved in the pathogenesis of inflammatory bowel disease (IBD). However, it remains unclear whether IBD-associated gut dysbiosis contributes to disease pathogenesis or is merely secondary to intestinal inflammation. We established a humanized gnotobiotic (hGB) mouse system to assess the functional role of gut dysbiosis associated with 2 types of IBD: Crohn's disease (CD) and ulcerative colitis (UC).Germ-free mice were colonized by the gut microbiota isolated from patients with CD and UC, and healthy controls. Microbiome analysis, bacterial functional gene analysis, luminal metabolome analysis, and host gene expression analysis were performed in hGB mice. Moreover, the colitogenic capacity of IBD-associated microbiota was evaluated by colonizing germ-free colitis-prone interleukin 10-deficient mice with dysbiotic patients' microbiota.Although the microbial composition seen in donor patients' microbiota was not completely reproduced in hGB mice, some dysbiotic features of the CD and UC microbiota (eg, decreased diversity, alteration of bacterial metabolic functions) were recapitulated in hGB mice, suggesting that microbial community alterations, characteristic for IBD, can be reproduced in hGB mice. In addition, colonization by the IBD-associated microbiota induced a proinflammatory gene expression profile in the gut that resembles the immunologic signatures found in CD patients. Furthermore, CD microbiota triggered more severe colitis than healthy control microbiota when colonized in germ-free interleukin 10-deficient mice.Dysbiosis potentially contributes to the pathogenesis of IBD by augmenting host proinflammatory immune responses. Transcript profiling: GSE73882.
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