Opposing diet, #microbiome, and metabolite mechanisms regulate inflammatory #bowel disease in a genetically susceptible host

Highlights

•Dietary fiber-deprived gut microbiota elicits lethal colitis in Il10−/− mice

•Mucolytic gut bacteria weaken mucus and drive inflammatory immune responses

•Alterations in bacterial IgA coating and increased NK cells precede inflammation

•Exclusive enteral nutrition promotes bacterial isobutyrate, reducing inflammation

Summary

Inflammatory bowel diseases (IBDs) are chronic conditions characterized by periods of spontaneous intestinal inflammation and are increasing in industrialized populations. Combined with host genetics, diet and gut bacteria are thought to contribute prominently to IBDs, but mechanisms are still emerging. In mice lacking the IBD-associated cytokine, interleukin-10, we show that a fiber-deprived gut microbiota promotes the deterioration of colonic mucus, leading to lethal colitis. Inflammation starts with the expansion of natural killer cells and altered immunoglobulin-A coating of some bacteria. Lethal colitis is then driven by Th1 immune responses to increased activities of mucin-degrading bacteria that cause inflammation first in regions with thinner mucus. A fiber-free exclusive enteral nutrition diet also induces mucus erosion but inhibits inflammation by simultaneously increasing an anti-inflammatory bacterial metabolite, isobutyrate. Our findings underscore the importance of focusing on microbial functions—not taxa—contributing to IBDs and that some diet-mediated functions can oppose those that promote disease.

https://www.cell.com/cell-host-microbe/fulltext/S1931-3128(24)00060-X