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首页> 外文期刊>Vox Sanguinis: International Journal of Blood Transfusion and Immunohaematology >RAGE interacts with the necroptotic protein RIPK3 and mediates transfusion-induced danger signal release
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RAGE interacts with the necroptotic protein RIPK3 and mediates transfusion-induced danger signal release

机译:愤怒与necroptotic蛋白质RIPK3交互和调节transfusion-induced危险信号释放

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摘要

RBC transfusion is associated with increased morbidity and mortality in critically ill patients. Endothelial cell necroptosis and subsequent damage-associated molecular pattern (DAMP) release has been identified as a mechanism of injury following RBC transfusion. Mounting evidence implicates the pro-inflammatory pattern recognition receptor, Receptor for Advanced Glycation End Products (RAGE), in initiating cell death programmes such as necroptosis. Here, we demonstrate the role of RAGE in endothelial necroptosis, as deletion of RAGE attenuates necroptotic cell death in response to TNF alpha, LPS or CpG-DNA. We show direct interaction of RAGE with the critical mediator of necroptosis, Receptor Interacting Protein Kinase 3 (RIPK3), during necroptosis. Furthermore, we observe decreased plasma High Mobility Group Box 1 (HMGB1) and RIPK3 levels in RAGE deficient mice compared to WT mice post-transfusion, substantiating the role for RAGE in transfusion-induced DAMP releasein vivo. Collectively, these findings underscore RAGE as an essential mediator of regulated necrosis and post-transfusion DAMP release. Further studies to understand the role of RAGE and the necroptotic pathway in transfusion-induced organ injury may offer key targets to mitigate transfusion-related risks, including the risk of ARDS, in susceptible hosts.
机译:红细胞输血与增加有关发病率和死亡率在病危病人。后续有关分子模式(湿)释放已被确认为一种机制受伤后红细胞输血。证据牵连到炎性的模式先进的识别受体,受体糖化终端产品(愤怒),在启动细胞死亡necroptosis等项目。证明在内皮的作用necroptosis,删除愤怒变弱necroptotic细胞死亡在肿瘤坏死因子α,有限合伙人或CpG-DNA。愤怒的关键中介necroptosis,受体相互作用蛋白激酶3 (RIPK3),在necroptosis。降低血浆高机动组框1(HMGB1)和愤怒RIPK3水平不足的老鼠WT老鼠输血后相比,充实愤怒的角色transfusion-induced潮湿releasein体内。总的来说,这些发现强调了愤怒的一个重要中介坏死和监管输血后潮湿的释放。理解necroptotic愤怒和所扮演的角色通路transfusion-induced器官损伤为减轻摘要提供关键目标风险,包括ARDS的风险,容易受到影响主机。

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