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首页> 外文期刊>The Journal of Experomental Medicine >IL-31–IL-31R interactions negatively regulate type 2 inflammation in the lung
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IL-31–IL-31R interactions negatively regulate type 2 inflammation in the lung

机译:IL-31–IL-31R相互作用负面调节肺中的2型炎症

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Interleukin (IL) 31Rα (glycoprotein 130–like monocyte receptor and glycoprotein 130–like receptor) heterodimerizes with oncostatin M receptor β to bind IL-31, a cytokine expressed preferentially by CD4+ T helper type 2 (Th2) cells. However, the functions of IL-31–IL-31R signaling in immune regulation remain unknown. Here, we identify a novel role for IL-31R in limiting type 2 inflammation in the lung. After intravenous injection of Schistosoma mansoni eggs, IL-31Rα?/? mice developed severe pulmonary inflammation, characterized by an increase in the area of granulomatous inflammation, increased numbers of resistin-like molecule α+ cells, and enhanced collagen deposition compared to WT counterparts. In vitro, macrophages generated from IL-31Rα?/? mice promoted enhanced ovalbumin-specific CD4+ T cell proliferation and purified naive CD4+ T cells from IL-31Rα?/? mice exhibited enhanced proliferation and expression of Th2 cytokines, identifying a T cell– and macrophage-intrinsic regulatory function for IL-31R signaling. In contrast, the generation of CD4+ T cell–mediated Th1 responses were normal in IL-31Rα?/? mice, suggesting that the regulatory role of IL-31R signaling is limited to type 2 responses. Together, these data implicate IL-31R signaling as a novel negative regulatory pathway that specifically limits type 2 inflammation.
机译:白介素(IL)31Rα(糖蛋白130样单核细胞受体和糖蛋白130样受体)与制瘤素M受体β异源二聚体结合IL-31,IL-31是CD4 + T辅助2型(Th2)细胞优先表达的细胞因子。但是,IL-31–IL-31R信号在免疫调节中的功能仍然未知。在这里,我们确定IL-31R在限制肺部2型炎症中的新作用。曼氏血吸虫卵静脉注射后,IL-31Rαα/β小鼠发展为严重的肺部炎症,其特征是肉芽肿性炎症的面积增加,抵抗素样分子α+细胞的数量增加,并且与WT对应物相比,胶原蛋白沉积增加。在体外,由IL-31Rαβ/β产生的巨噬细胞。小鼠促进了卵白蛋白特异性CD4 + T细胞增殖的增强,并从IL-31Rαβ/β纯化了幼稚的CD4 + T细胞。小鼠表现出增强的Th2细胞因子增殖和表达,从而确定了针对IL-31R信号传导的T细胞和巨噬细胞内在调节功能。相反,在IL-31Rαβ/β中,CD4 + T细胞介导的Th1反应的产生是正常的。提示IL-31R信号传导的调节作用仅限于2型应答。总之,这些数据暗示IL-31R信号传导是特异性限制2型炎症的新型负调控途径。

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