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NOX2 protects against progressive lung injury and multiple organ dysfunction syndrome

机译:NOX2可防止进行性肺损伤和多器官功能障碍综合征

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Systemic inflammatory response syndrome (SIRS) is a common clinical condition in patients in intensive care units that can lead to complications, including multiple organ dysfunction syndrome (MODS). MODS carries a high mortality rate, and it is unclear why some patients resolve SIRS, whereas others develop MODS. Although oxidant stress has been implicated in the development of MODS, several recent studies have demonstrated a requirement for NADPH oxidase 2 (NOX2)-derived oxidants in limiting inflammation. We recently demonstrated that NOX2 protects against lung injury and mortality in a murine model of SIRS. In the present study, we investigated the role of NOX2-derived oxidants in the progression from SIRS to MODS. Using a murine model of sterile systemic inflammation, we observed significantly greater illness and subacute mortality in gp91phox-/y (NOX2-deficient) mice compared with wild-type mice. Cellular analysis revealed continued neutrophil recruitment to the peritoneum and lungs of the NOX2-deficient mice and altered activation states of both neutrophils and macrophages. Histological examination showed multiple organ pathology indicative of MODS in the NOX2-deficient mice, and several inflammatory cytokines were elevated in lungs of the NOX2-deficient mice. Overall, these data suggest that NOX2 function protects against the development of MODS and is required for normal resolution of systemic inflammation.
机译:系统性炎症反应综合征(SIRS)是重症监护病房患者的常见临床疾病,可能导致并发症,包括多器官功能障碍综合征(MODS)。 MODS的死亡率很高,目前尚不清楚为什么有些患者会解决SIRS,而另一些患者会发展MODS。尽管氧化应激与MODS的发展有关,但最近的一些研究表明,在限制炎症反应中,需要NADPH氧化酶2(NOX2)衍生的氧化剂。我们最近证明,在SIRS鼠模型中,NOX2可防止肺部损伤和死亡。在本研究中,我们调查了NOX2衍生氧化剂在从SIRS到MODS进程中的作用。使用无菌的系统性炎症的小鼠模型,我们观察到与野生型小鼠相比,gp91phox- / y(NOX2缺陷型)小鼠的疾病和亚急性死亡率显着提高。细胞分析显示嗜中性粒细胞持续募集到NOX2缺陷小鼠的腹膜和肺部,嗜中性粒细胞和巨噬细胞的激活状态均发生了改变。组织学检查显示,在NOX2缺陷型小鼠中,多种器官病理指示了MODS,并且在NOX2缺陷型小鼠的肺中升高了几种炎性细胞因子。总体而言,这些数据表明NOX2功能可防止MODS的发展,并且是正常解决全身性炎症所必需的。

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