首页> 美国卫生研究院文献>American Journal of Respiratory and Critical Care Medicine >Red Blood Cells Homeostatically Bind Mitochondrial DNA through TLR9 to Maintain Quiescence and to Prevent Lung Injury
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Red Blood Cells Homeostatically Bind Mitochondrial DNA through TLR9 to Maintain Quiescence and to Prevent Lung Injury

机译:红细胞通过TLR9稳态结合线粒体DNA以保持静止并防止肺损伤

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摘要

>Rationale: Potentially hazardous CpG-containing cell-free mitochondrial DNA (cf-mtDNA) is routinely released into the circulation and is associated with morbidity and mortality in critically ill patients. How the body avoids inappropriate innate immune activation by cf-mtDNA remains unknown. Because red blood cells (RBCs) modulate innate immune responses by scavenging chemokines, we hypothesized that RBCs may attenuate CpG-induced lung inflammation through direct scavenging of CpG-containing DNA.>Objectives: To determine the mechanisms of CpG-DNA binding to RBCs and the effects of RBC-mediated DNA scavenging on lung inflammation.>Methods: mtDNA on murine RBCs was measured under basal conditions and after systemic inflammation. mtDNA content on human RBCs from healthy control subjects and trauma patients was measured. Toll-like receptor 9 (TLR9) expression on RBCs and TLR9-dependent binding of CpG-DNA to RBCs were determined. A murine model of RBC transfusion after CpG-DNA–induced lung injury was used to investigate the role of RBC-mediated DNA scavenging in mitigating lung injury in vivo.>Measurements and Main Results: Under basal conditions, RBCs bind CpG-DNA. The plasma-to-RBC mtDNA ratio is low in naive mice and in healthy volunteers but increases after systemic inflammation, demonstrating that the majority of cf-mtDNA is RBC-bound under homeostatic conditions and that the unbound fraction increases during inflammation. RBCs express TLR9 and bind CpG-DNA through TLR9. Loss of TLR9-dependent RBC-mediated CpG-DNA scavenging increased lung injury in vivo.>Conclusions: RBCs homeostatically bind mtDNA, and RBC-mediated DNA scavenging is essential in mitigating lung injury after CpG-DNA. Our data suggest a role for RBCs in regulating lung inflammation during disease states where cf-mtDNA is elevated, such as sepsis and trauma.
机译:>原理:含有潜在危险的含CpG的无细胞线粒体DNA(cf-mtDNA)通常会释放到血液中,并与重症患者的发病率和死亡率相关。人体如何避免通过cf-mtDNA不适当地进行的先天免疫激活仍然未知。由于红细胞(RBC)通过清除趋化因子来调节先天性免疫应答,因此我们假设红细胞可以通过直接清除含CpG的DNA来减轻CpG诱导的肺部炎症。>目的:以确定CpG的机制-DNA与RBC的结合以及RBC介导的DNA清除对肺部炎症的影响。>方法:在基础条件下和全身性炎症后,测定小鼠RBC上的mtDNA。测量了健康对照对象和创伤患者的人RBC上的mtDNA含量。确定了RBC上的Toll样受体9(TLR9)表达以及CpG-DNA与RBC的TLR9依赖性结合。使用CpG-DNA引起的肺损伤后的RBC输血小鼠模型来研究RBC介导的DNA清除在减轻体内肺损伤中的作用。>测量和主要结果::在基础条件下,RBC结合CpG-DNA。在幼稚的小鼠和健康志愿者中,血浆与RBC的mtDNA比率较低,但在全身炎症后会增加,这表明大多数cf-mtDNA在稳态条件下与RBC结合,并且未结合的分数在炎症过程中增加。红细胞表达TLR9并通过TLR9结合CpG-DNA。失去TLR9依赖性的RBC介导的CpG-DNA清除会增加体内肺损伤。>结论: RBC稳态结合mtDNA,而RBC介导的DNA清除对于减轻CpG-DNA后的肺损伤至关重要。我们的数据表明,在cf-mtDNA升高的疾病状态(如败血症和创伤)中,红细胞在调节肺部炎症中发挥作用。

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