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Phagocyte respiratory burst activates macrophage erythropoietin signalling to promote acute inflammation resolution

机译:吞噬细胞呼吸爆发激活巨噬细胞促红细胞生成素信号传导,促进急性炎症消退

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Inflammation resolution is an active process, the failure of which causes uncontrolled inflammation which underlies many chronic diseases. Therefore, endogenous pathways that regulate inflammation resolution are fundamental and of wide interest. Here, we demonstrate that phagocyte respiratory burst-induced hypoxia activates macrophage erythropoietin signalling to promote acute inflammation resolution. This signalling is activated following acute but not chronic inflammation. Pharmacological or genetical inhibition of the respiratory burst suppresses hypoxia and macrophage erythropoietin signalling. Macrophage-specific erythropoietin receptor-deficient mice and chronic granulomatous disease (CGD) mice, which lack the capacity for respiratory burst, display impaired inflammation resolution, and exogenous erythropoietin enhances this resolution in WT and CGD mice. Mechanistically, erythropoietin increases macrophage engulfment of apoptotic neutrophils via PPARγ, promotes macrophage removal of debris and enhances macrophage migration to draining lymph nodes. Together, our results provide evidences of an endogenous pathway that regulates inflammation resolution, with important implications for treating inflammatory conditions.
机译:消炎是一个活跃的过程,其失败会导致不受控制的炎症,这是许多慢性疾病的基础。因此,调节炎症消退的内源性途径是基本的并且引起广泛关注。在这里,我们证明吞噬细胞呼吸爆发诱导的缺氧激活巨噬细胞促红细胞生成素信号传导,以促进急性炎症的解决。该信号在急性但不是慢性炎症后被激活。呼吸爆发的药理或遗传学抑制作用可抑制缺氧和巨噬细胞促红细胞生成素信号传导。巨噬细胞特异性促红细胞生成素受体缺陷型小鼠和慢性肉芽肿性疾病(CGD)小鼠缺乏呼吸爆发的能力,炎症反应减弱,而外源促红细胞生成素在WT和CGD小鼠中增强了这种分辨率。从机理上讲,促红细胞生成素通过PPARγ增加凋亡中性粒细胞的巨噬细胞吞噬,促进巨噬细胞清除碎屑并增强巨噬细胞迁移至引流淋巴结。总之,我们的结果提供了调节炎症消退的内源性途径的证据,对治疗炎症性疾病具有重要意义。

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