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Protective Effects of Evodiamine against LPS-Induced Acute Kidney Injury through Regulation of ROS-NF-κB-Mediated Inflammation

机译:Evodiamine对LPS诱导的急性肾损伤的保护作用通过调节ROS-NF-κB介导的炎症

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摘要

Acute kidney injury (AKI) is a critical care syndrome, which is usually associated with sepsis-related endotoxemia. Evodiamine (EVO) is an active ingredient of many traditional medicinal formulations that possess a battery of biological activities. In the study, we aimed to evaluate the potential protective effect of EVO against lipopolysaccharide- (LPS-) induced AKI and cytotoxicity. LPS-resulted pathological injuries were significantly ameliorated by the administration of EVO. EVO reduced the levels of blood urea nitrogen (BUN) and creatinine in LPS-treated rats. EVO also inhibited LPS-induced reduction of cell viability in NRK-52E cells. LPS-resulting increase of TNFα and IL-1β in both serum and kidney of rats and NRK-52E cells was inhibited by EVO. LPS-induced increase of P65 NF-κB expression was markedly inhibited by EVO. EVO-induced reduction of TNFα and IL-1β expression in LPS-treated cells was blocked by overexpression of P65 NF-κB. Moreover, the increase of cell viability in LPS-treated cells induced by EVO was remarkably suppressed by overexpression of P65 NF-κB. LPS-resulting increase of reactive oxygen species (ROS) production was suppressed by EVO. H2O2 suppressed EVO-induced decrease of P65 NF-κB expression and increase of cell viability in LPS-treated NRK-52E cells. Moreover, the antioxidant NAC significantly promoted EVO-induced decrease of P65 NF-κB expression and increase of cell viability in LPS-treated NRK-52E cells. In conclusion, EVO had crucial protective effects against LPS-induced AKI and cytotoxicity through the antioxidant activities and thus the inhibition of inflammation. Our data highlight EVO as a potential candidate for the development of new strategies for the treatment of AKI.
机译:急性肾损伤(AKI)是危重病综合征,这通常与败血症有关的内毒素血症。吴茱萸碱(EVO)是许多传统的药用制剂,其具有的生物学活性的电池的活性成分。在这项研究中,我们的目的是评估对脂多糖(LPS-)诱导AKI和细胞毒性EVO的潜在的保护作用。 LPS-导致病理损伤由EVO的管理进行了显著改善。 EVO在LPS处理的大鼠减少的血液尿素氮(BUN)和肌酐的水平。 EVO也抑制LPS诱导的NRK-52E细胞减少细胞存活力的。 LPS-所得大鼠和NRK-52E细胞的血清和肾脏被EVO抑制在TNFα的增加和IL-1β。 P65 NF-κB表达的LPS诱导的增加显着通过EVO抑制。在LPS处理的细胞的TNFα和IL-1β表达的EVO诱导的还原阻断P65 NF-κB的过表达。此外,细胞存活率在由EVO诱导LPS处理的细胞的增加由P65 NF-κB的过表达显着抑制。 LPS-所得反应性氧物质的增加(ROS)生产由EVO抑制。 H2O2抑制P65 NF-κB表达的EVO诱导的降低和LPS处理的NRK-52E细胞的细胞活力的增加。此外,抗氧化剂NAC显著促进P65 NF-κB表达的EVO诱导的减少和细胞活力的增加LPS处理的NRK-52E细胞。总之,EVO已经通过抗氧化活性,从而炎症的抑制对LPS诱导的AKI和细胞毒性重要的保护作用。我们的数据突出EVO作为新战略的发展AKI的治疗的潜在候选人。

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