Fecal let-7b and miR-21 directly modulate the intestinal microbiota, driving chronic inflammation

生物 炎症 粪便 粪便细菌疗法 肠道菌群 免疫学 微生物学 抗生素 艰难梭菌
作者
Maite Casado‐Bedmar,Maryline Roy,Louis Berthet,Jean‐Pierre Hugot,Chunhua Yang,Hana Manceau,Katell Peoc’h,Benoît Chassaing,Didier Merlin,Émilie Viennois
出处
期刊:Gut microbes [Informa]
卷期号:16 (1) 被引量:5
标识
DOI:10.1080/19490976.2024.2394249
摘要

Inflammatory bowel diseases (IBD) etiology is multifactorial. Luminal microRNAs (miRNAs) have been suspected to play a role in the promotion of chronic inflammation, but the extent to which fecal miRNAs are interacting with the intestinal ecosystem in a way that contribute to diseases, including IBD, remains unknown. Here, fecal let-7b and miR-21 were found elevated, associated with inflammation, and correlating with multiple bacteria in IBD patients and IL-10–/– mice, model of spontaneous colitis. Using an in vitro microbiota modeling system, we revealed that these two miRNAs can directly modify the composition and function of complex human microbiota, increasing their proinflammatory potential. In vivo investigations revealed that luminal increase of let-7b drastically alters the intestinal microbiota and enhances macrophages' associated proinflammatory cytokines (TNF, IL-6, and IL-1β). Such proinflammatory effects are resilient and dependent on the bacterial presence. Moreover, we identified that besides impairing the intestinal barrier function, miR-21 increases myeloperoxidase and antimicrobial peptides secretion, causing intestinal dysbiosis. More importantly, in vivo inhibition of let-7b and miR-21 with anti-miRNAs significantly improved the intestinal mucosal barrier function and promoted a healthier host-microbiota interaction in the intestinal lining, which altogether conferred protection against colitis. In summary, we provide evidence of the functional significance of fecal miRNAs in host-microbiota communication, highlighting their therapeutic potential in intestinal inflammation and dysbiosis-related conditions, such as IBD.

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