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Essential role of IFN-γ in T cell–associated intestinal inflammation
Yoshihiro Eriguchi, Kiminori Nakamura, Yuki Yokoi, Rina Sugimoto, Shuichiro Takahashi, Daigo Hashimoto, Takanori Teshima, Tokiyoshi Ayabe, Michael E. Selsted, André J. Ouellette
Yoshihiro Eriguchi, Kiminori Nakamura, Yuki Yokoi, Rina Sugimoto, Shuichiro Takahashi, Daigo Hashimoto, Takanori Teshima, Tokiyoshi Ayabe, Michael E. Selsted, André J. Ouellette
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Research Article Gastroenterology Inflammation

Essential role of IFN-γ in T cell–associated intestinal inflammation

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Abstract

Paneth cells contribute to small intestinal homeostasis by secreting antimicrobial peptides and constituting the intestinal stem cell (ISC) niche. Certain T cell–mediated enteropathies are characterized by extensive Paneth cell depletion coincident with mucosal destruction and dysbiosis. In this study, mechanisms of intestinal crypt injury have been investigated by characterizing responses of mouse intestinal organoids (enteroids) in coculture with mouse T lymphocytes. Activated T cells induced enteroid damage, reduced Paneth cell and Lgr5+ ISC mRNA levels, and induced Paneth cell death through a caspase-3/7–dependent mechanism. IFN-γ mediated these effects, because IFN-γ receptor–null enteroids were unaffected by activated T cells. In mice, administration of IFN-γ induced enteropathy with crypt hyperplasia, villus shortening, Paneth cell depletion, and modified ISC marker expression. IFN-γ exacerbated radiation enteritis, which was ameliorated by treatment with a selective JAK1/2 inhibitor. Thus, IFN-γ induced Paneth cell death and impaired regeneration of small intestinal epithelium in vivo, suggesting that IFN-γ may be a useful target for treating defective mucosal regeneration in enteric inflammation.

Authors

Yoshihiro Eriguchi, Kiminori Nakamura, Yuki Yokoi, Rina Sugimoto, Shuichiro Takahashi, Daigo Hashimoto, Takanori Teshima, Tokiyoshi Ayabe, Michael E. Selsted, André J. Ouellette

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Figure 10

IFN-γ modulation of ileal crypt cell proliferation in response to irradiation injury.

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IFN-γ modulation of ileal crypt cell proliferation in response to irradi...
(A) Schematics of the study to determine effects of TBI, IFN-γ, and ruxolitinib on intestinal epithelium in mice. Ileum tissue was collected 48 hours after TBI and analyzed. (B) IHC staining of Ki-67 in mouse ileal sections. Control (C), IFN-γ (I), IFN-γ + ruxolitinib (IR), TBI (T), TBI + IFN-γ (TI), and TBI + IFN-γ + ruxolitinib (TIR) are shown. Scale bars: 100 μm. (C) Ki-67+ cell numbers per longitudinal crypt section were counted in 30 ileal crypts per mouse. Data from 5 different C57BL/6 mice in each group were combined from 2 separate experiments and are shown as mean ± SD. Tukey’s multiple comparisons test was used to compare the each cohort. Statistical results of data in C are presented in Supplemental Table 5.

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