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幽门螺杆菌诱导的肠道炎症中 Th17 细胞的可塑性。

Th17-cell plasticity in Helicobacter hepaticus-induced intestinal inflammation.

机构信息

Centre for Immunology and Infection, Department of Biology and Hull York Medical School, University of York, York, UK.

出版信息

Mucosal Immunol. 2013 Nov;6(6):1143-56. doi: 10.1038/mi.2013.11. Epub 2013 Mar 6.

Abstract

Bacterial-induced intestinal inflammation is crucially dependent on interleukin (IL)-23 and is associated with CD4(+) T helper type 1 (Th1) and Th17 responses. However, the relative contributions of these subsets during the induction and resolution of colitis in T-cell-sufficient hosts remain unknown. We report that Helicobacter hepaticus-induced typhlocolitis in specific pathogen-free IL-10(-/-) mice is associated with elevated frequencies and numbers of large intestinal interferon (IFN)-γ(+) and IFN-γ(+)IL-17A(+) CD4(+) T cells. By assessing histone modifications and transcript levels in IFN-γ(+), IFN-γ(+)IL-17A(+), and IL-17A(+) CD4(+) T cells isolated from the inflamed intestine, we show that Th17 cells are predisposed to upregulate the Th1 program and that they express IL-23R but not IL-12R. Using IL-17A fate-reporter mice, we further demonstrate that H. hepaticus infection gives rise to Th17 cells that extinguish IL-17A secretion and turn on IFN-γ within 10 days post bacterial inoculation. Together, our results suggest that bacterial-induced Th17 cells arising in disease-susceptible hosts contribute to intestinal pathology by switching phenotype, transitioning via an IFN-γ(+)IL-17A(+) stage, to become IFN-γ(+) ex-Th17 cells.

摘要

细菌诱导的肠道炎症主要依赖于白细胞介素 (IL)-23,与 CD4+辅助性 T 细胞 1(Th1)和 Th17 反应有关。然而,在 T 细胞充足的宿主中,这些亚群在结肠炎的诱导和缓解过程中的相对贡献尚不清楚。我们报告称,在无特定病原体的 IL-10(-/-) 小鼠中,嗜胆菌属诱导的伤寒性结肠炎与大肠中干扰素 (IFN)-γ(+)和 IFN-γ(+)IL-17A(+) CD4+T 细胞的频率和数量升高有关。通过评估从炎症肠道中分离出的 IFN-γ(+)、IFN-γ(+)IL-17A(+)和 IL-17A(+) CD4+T 细胞中的组蛋白修饰和转录水平,我们表明 Th17 细胞易于上调 Th1 程序,并且它们表达 IL-23R 但不表达 IL-12R。使用 IL-17A 命运报告小鼠,我们进一步表明,嗜胆菌属感染导致 Th17 细胞在细菌接种后 10 天内熄灭 IL-17A 分泌并开启 IFN-γ。总之,我们的结果表明,在易感宿主中产生的细菌诱导的 Th17 细胞通过表型转换,通过 IFN-γ(+)IL-17A(+)阶段过渡,成为 IFN-γ(+)效应 Th17 细胞,从而有助于肠道病理学。

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