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Role of NLRP3 Inflammasomes for Rhabdomyolysis-induced Acute Kidney Injury

机译:NLRP3炎性体在横纹肌溶解性急性肾脏损伤中的作用

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Rhabdomyolysis is one of the main causes of community-acquired acute kidney injury (AKI). Although inflammation is involved in the pathogenesis of rhabdomyolysis-induced AKI (RIAKI), little is known about the mechanism that triggers inflammation during RIAKI. Recent evidence has indicated that sterile inflammation triggered by tissue injury can be mediated through multiprotein complexes called the inflammasomes. Therefore, we investigated the role of NLRP3 inflammasomes in the pathogenesis of RIAKI using a glycerol-induced murine rhabdomyolysis model. Inflammasome-related molecules were upregulated in the kidney of RIAKI. Renal tubular injury and dysfunction preceded leukocyte infiltration into the kidney during the early phase of RIAKI, and they were markedly attenuated in mice deficient in NLRP3, ASC, caspase-1, and interleukin (IL)-1β compared with those in wild-type mice. No difference in leukocyte infiltration was observed between wild-type and NLRP3-deficient mice. Furthermore, NLRP3 deficiency strikingly suppressed the expression of renal injury markers and inflammatory cytokines and apoptosis of renal tubular cells. These results demonstrated that NLRP3 inflammasomes contribute to inflammation, apoptosis, and tissue injury during the early phase of RIAKI and provide new insights into the mechanism underlying the pathogenesis of RIAKI.
机译:横纹肌溶解症是社区获得性急性肾损伤(AKI)的主要原因之一。尽管炎症与横纹肌溶解诱导的AKI(RIAKI)的发病机理有关,但对于RIAKI期间引发炎症的机制知之甚少。最近的证据表明,由组织损伤触发的无菌炎症可以通过称为炎症小体的多蛋白复合物来介导。因此,我们使用甘油诱导的鼠横纹肌溶解模型研究了NLRP3炎性小体在RIAKI发病机理中的作用。炎性体相关分子在RIAKI的肾脏中被上调。在RIAKI早期,肾小管损伤和功能障碍先于白细胞浸润到肾脏,与野生型小鼠相比,NLRP3,ASC,caspase-1和白介素(IL)-1β缺陷型小鼠的肾小管损伤和功能障碍明显减弱。 。在野生型和NLRP3缺陷型小鼠之间未观察到白细胞浸润的差异。此外,NLRP3缺乏显着抑制了肾损伤标志物的表达和炎性细胞因子以及肾小管细胞的凋亡。这些结果表明,NLRP3炎性小体在RIAKI的早期阶段促成炎症,凋亡和组织损伤,并为RIAKI发病机理提供了新的见解。

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