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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >An efferocytosis-induced, IL-4-dependent macrophage-iNKT cell circuit suppresses sterile inflammation and is defective in murine CGD.
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An efferocytosis-induced, IL-4-dependent macrophage-iNKT cell circuit suppresses sterile inflammation and is defective in murine CGD.

机译:由红细胞增多症诱导的依赖IL-4的巨噬细胞-iNKT细胞回路抑制无菌炎症,并且在鼠CGD中有缺陷。

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Efferocytosis of apoptotic neutrophils by macrophages following tissue injury is fundamental to the resolution of inflammation and initiation of tissue repair. Using a sterile peritonitis model in mice, we identified interleukin (IL)-4-producing efferocytosing macrophages in the peritoneum that activate invariant natural killer T (iNKT) cells to produce cytokines including IL-4, IL-13, and interferon-γ. Importantly, IL-4 from macrophages contributes to alternative activation of peritoneal exudate macrophages and augments type 2 cytokine production from NKT cells to suppress inflammation. The increased peritonitis in mice deficient in IL-4, NKT cells, or IL-4Rα expression on myeloid cells suggested that each is a key component for resolution of sterile inflammation. The reduced NAD phosphate oxidase is also critical for this model, because in mice with X-linked chronic granulomatous disease (X-CGD) that lack oxidase subunits, activation of iNKT cells by X-CGD peritoneal exudate macrophages was impaired during sterile peritonitis, resulting in enhanced and prolonged inflammation in these mice. Therefore, efferocytosis-induced IL-4 production and activation of IL-4-producing iNKT cells by macrophages are immunomodulatory events in an innate immune circuit required to resolve sterile inflammation and promote tissue repair.
机译:组织损伤后巨噬细胞对凋亡中性粒细胞的泡腾作用是炎症消退和组织修复开始的基础。我们在小鼠中使用无菌腹膜炎模型,我们确定了腹膜中产生白介素(IL)-4的红细胞巨噬细胞,这些巨噬细胞激活了不变的自然杀伤T(iNKT)细胞以产生包括IL-4,IL-13和干扰素-γ在内的细胞因子。重要的是,巨噬细胞的IL-4有助于腹膜分泌液巨噬细胞的替代激活,并增强NKT细胞产生的2型细胞因子,从而抑制炎症。缺乏IL-4,NKT细胞或髓样细胞上IL-4Rα表达的小鼠腹膜炎增加,提示每种都是解决无菌性炎症的关键因素。减少的NAD磷酸氧化酶对该模型也至关重要,因为在缺乏X连锁慢性肉芽肿病(X-CGD)的小鼠中缺乏氧化酶亚基,在无菌性腹膜炎期间X-CGD腹膜分泌液巨噬细胞对iNKT细胞的激活受到损害,从而这些小鼠的炎症增强和延长。因此,由巨噬细胞引起的红细胞增多症诱导的IL-4产生和IL-4产生的iNKT细胞的激活是解决无菌炎症和促进组织修复所需的先天免疫回路中的免疫调节事件。

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