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本文引用的文献

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Functional PU.1 in macrophages has a pivotal role in NF-κB activation and neutrophilic lung inflammation during endotoxemia.功能性 PU.1 在巨噬细胞中具有关键作用,可在脓毒症期间激活 NF-κB 和嗜中性粒细胞性肺炎症。
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Mitochondrial reactive oxygen species promote production of proinflammatory cytokines and are elevated in TNFR1-associated periodic syndrome (TRAPS).线粒体活性氧簇促进前炎性细胞因子的产生,并且在肿瘤坏死因子受体 1 相关周期性综合征(TRAPS)中升高。
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A prenylated p47phox-p67phox-Rac1 chimera is a Quintessential NADPH oxidase activator: membrane association and functional capacity.一个 prenylated p47phox-p67phox-Rac1 嵌合体是一种典型的 NADPH 氧化酶激活剂:膜结合和功能能力。
J Biol Chem. 2010 Aug 13;285(33):25485-99. doi: 10.1074/jbc.M110.113779. Epub 2010 Jun 7.
4
The regulation of IL-10 production by immune cells.免疫细胞中 IL-10 产生的调节。
Nat Rev Immunol. 2010 Mar;10(3):170-81. doi: 10.1038/nri2711. Epub 2010 Feb 15.
5
Mycobacterium tuberculosis evades macrophage defenses by inhibiting plasma membrane repair.结核分枝杆菌通过抑制质膜修复来逃避巨噬细胞的防御。
Nat Immunol. 2009 Aug;10(8):899-906. doi: 10.1038/ni.1758. Epub 2009 Jun 28.
6
p47phox, the phagocyte NADPH oxidase/NOX2 organizer: structure, phosphorylation and implication in diseases.p47phox,吞噬细胞NADPH氧化酶/NOX2组织者:结构、磷酸化及在疾病中的意义
Exp Mol Med. 2009 Apr 30;41(4):217-25. doi: 10.3858/emm.2009.41.4.058.
7
Regulation of interferon and Toll-like receptor signaling during macrophage activation by opposing feedforward and feedback inhibition mechanisms.巨噬细胞激活过程中,通过相反的前馈和反馈抑制机制对干扰素和Toll样受体信号进行调节。
Immunol Rev. 2008 Dec;226:41-56. doi: 10.1111/j.1600-065X.2008.00707.x.
8
Genetic deficiency of NADPH oxidase does not diminish, but rather enhances, LPS-induced acute inflammatory responses in vivo.烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶的基因缺陷不会减弱,反而会增强体内脂多糖(LPS)诱导的急性炎症反应。
Free Radic Biol Med. 2009 Mar 15;46(6):791-8. doi: 10.1016/j.freeradbiomed.2008.12.003. Epub 2008 Dec 24.
9
ROS-deficient monocytes have aberrant gene expression that correlates with inflammatory disorders of chronic granulomatous disease.活性氧缺乏的单核细胞具有异常的基因表达,这与慢性肉芽肿病的炎症性疾病相关。
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10
Oxidative innate immune defenses by Nox/Duox family NADPH oxidases.Nox/Duox家族NADPH氧化酶介导的氧化型固有免疫防御
Contrib Microbiol. 2008;15:164-187. doi: 10.1159/000136357.

活性氧在脂多糖诱导的肺炎症中的保护作用通过调节白细胞介素-10 的表达实现。

Protective role of reactive oxygen species in endotoxin-induced lung inflammation through modulation of IL-10 expression.

机构信息

Section of Pulmonary, Critical Care, Sleep, and Allergy, Department of Medicine, University of Illinois, Chicago, IL 60612, USA.

出版信息

J Immunol. 2012 Jun 1;188(11):5734-40. doi: 10.4049/jimmunol.1101323. Epub 2012 Apr 30.

DOI:10.4049/jimmunol.1101323
PMID:22547702
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3358534/
Abstract

Reactive oxygen species (ROS) generated by NADPH oxidase are generally known to be proinflammatory, and it seems to be counterintuitive that ROS play a critical role in regulating the resolution of the inflammatory response. However, we observed that deficiency of the p47(phox) component of NADPH oxidase in macrophages was associated with a paradoxical accentuation of inflammation in a whole animal model of noninfectious sepsis induced by endotoxin. We have confirmed this observation by interrogating four separate in vivo models that use complementary methodology including the use of p47(phox-/-) mice, p47(phox-/-) bone marrow chimera mice, adoptive transfer of macrophages from p47(phox-/-) mice, and an isolated perfused lung edema model that all point to a relationship between excessive acute inflammation and p47(phox) deficiency in macrophages. Mechanistic data indicate that ROS deficiency in both cells and mice results in decreased production of IL-10 in response to treatment with LPS, at least in part, through attenuation of the Akt-GSK3-β signal pathway and that it can be reversed by the administration of rIL-10. Our data support the innovative concept that generation of ROS is essential for counterregulation of acute lung inflammation.

摘要

活性氧(ROS)由 NADPH 氧化酶产生,通常被认为具有促炎作用,而 ROS 在调节炎症反应的消退中起着关键作用,这似乎有违直觉。然而,我们观察到,巨噬细胞中 NADPH 氧化酶的 p47(phox) 成分缺失与内毒素诱导的非传染性败血症的整体动物模型中的炎症异常加剧有关。我们通过询问包括使用 p47(phox-/-) 小鼠、p47(phox-/-) 骨髓嵌合体小鼠、从 p47(phox-/-) 小鼠中过继转移巨噬细胞以及离体灌注肺水肿模型在内的四种不同的体内模型证实了这一观察结果,这些模型都指向了急性炎症过度和巨噬细胞中 p47(phox) 缺失之间的关系。机制数据表明,ROS 在细胞和小鼠中的缺乏导致 LPS 治疗时 IL-10 的产生减少,至少部分原因是通过 Akt-GSK3-β 信号通路的衰减,并且可以通过给予 rIL-10 逆转。我们的数据支持这样一个创新的概念,即 ROS 的产生对于急性肺炎症的反向调节是必不可少的。