Dietary fiber is a critical determinant of pathologic ILC2 responses and intestinal inflammation

Author:

Arifuzzaman Mohammad1234ORCID,Won Tae Hyung56ORCID,Yano Hiroshi1234ORCID,Uddin Jazib1234ORCID,Emanuel Elizabeth R.12347ORCID,Hu Elin1234ORCID,Zhang Wen1234ORCID,Li Ting-Ting1234ORCID,Jin Wen-Bing1234ORCID,Grier Alex1234ORCID,Kashyap Sanchita1234ORCID, ,Artis David,Longman Randy,Sonnenberg Gregory F.,Scherl Ellen,Sockolow Robbyn,Lukin Dana,Jacob Vinita,Sahyoun Laura,Mintz Michael,Gogokhia Lasha,Ciecierega Thomas,Solomon Aliza,Bergman Arielle,Chein Kimberley,Gordon Elliott,Ramos Michelle,Castro Ochoa Kenny Joselin,de Godoy Victoria Ribeiro,Brcic-Susak Adriana,Oguntunmibi Seun,Garone Dario,Mason Caitlin,Guo Chun-Jun1234ORCID,Schroeder Frank C.56ORCID,Artis David123478ORCID

Affiliation:

1. Jill Roberts Institute for Research in Inflammatory Bowel Disease, Weill Cornell Medicine, Cornell University 1 , New York, NY, USA

2. Friedman Center for Nutrition and Inflammation, Weill Cornell Medicine, Cornell University 2 , New York, NY, USA ,

3. Weill Cornell Medicine, Cornell University 3 Division of Gastroenterology and Hepatology, Joan and Sanford I. Weill Department of Medicine, , New York, NY, USA

4. Weill Cornell Medicine, Cornell University 4 Department of Microbiology and Immunology, , New York, NY, USA

5. Boyce Thompson Institute, C 7 Department of Chemistry and Chemical Biology, , Ithaca, NY, USA

6. ornell University 7 Department of Chemistry and Chemical Biology, , Ithaca, NY, USA

7. Immunology and Microbial Pathogenesis Program, Weill Cornell Medicine, Cornell University 5 , New York, NY, USA

8. Allen Discovery Center for Neuroimmune Interactions 6 , New York, NY, USA

Abstract

Innate lymphoid cells (ILCs) can promote host defense, chronic inflammation, or tissue protection and are regulated by cytokines and neuropeptides. However, their regulation by diet and microbiota-derived signals remains unclear. We show that an inulin fiber diet promotes Tph1-expressing inflammatory ILC2s (ILC2INFLAM) in the colon, which produce IL-5 but not tissue-protective amphiregulin (AREG), resulting in the accumulation of eosinophils. This exacerbates inflammation in a murine model of intestinal damage and inflammation in an ILC2- and eosinophil-dependent manner. Mechanistically, the inulin fiber diet elevated microbiota-derived bile acids, including cholic acid (CA) that induced expression of ILC2-activating IL-33. In IBD patients, bile acids, their receptor farnesoid X receptor (FXR), IL-33, and eosinophils were all upregulated compared with controls, implicating this diet–microbiota–ILC2 axis in human IBD pathogenesis. Together, these data reveal that dietary fiber–induced changes in microbial metabolites operate as a rheostat that governs protective versus pathologic ILC2 responses with relevance to precision nutrition for inflammatory diseases.

Funder

Crohn’s and Colitis Foundation

AGA Research Foundation

W.M. Keck Foundation

Howard Hughes Medical Institute

Jill Roberts Institute for Research in IBD

Kenneth Rainin Foundation

Sanders Family Foundation

Rosanne H. Silbermann Foundation

Linda and Glenn Greenberg

Allen Discovery Center

Paul G. Allen Frontiers Group

Paul G. Allen Family Foundation

National Institutes of Health

Weill Cornell Medicine Research Assistance for Primary Parents Initiative

CURE for IBD

Publisher

Rockefeller University Press

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