首页> 外文期刊>International journal of molecular medicine >Salidroside attenuates oxidized low-density lipoprotein-induced endothelial cell injury via promotion of the AMPK/SIRT1 pathway
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Salidroside attenuates oxidized low-density lipoprotein-induced endothelial cell injury via promotion of the AMPK/SIRT1 pathway

机译:Salidroside通过促进AMPK / SIRT1途径衰减氧化低密度脂蛋白诱导的内皮细胞损伤

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Oxidized low-density lipoprotein (ox-LDL)-induced endothelial damage contributes to the initiation and pathogenesis of atherosclerosis. Salidroside can alleviate atherosclerosis and attenuate endothelial cell injury induced by ox-LDL. However, the mechanisms involved in this process are not fully understood. Therefore, the purpose of the present study was to investigate the role of the adenosine monophosphate-activated protein kinase (AMPK)/sirtuin (SIRT)1 pathway in the protection of salidroside against ox-LDL-induced human umbilical vein endothelial cells (HUVECs) injuries. The results revealed that salidroside reverses ox-LDL-induced HUVECs injury as demonstrated by the upregulation of cell viability and downregulation of LDH release. In addition, salidroside increased the expression of the SIRT1 protein in ox-LDL-treated HUVECs. Next, it was demonstrated that SIRT1 knockdown induced by transfection with small interfering (si)RNA targeting SIRT1 (siSRT1) abolished the protection of salidroside against ox-LDL-induced HUVECs injuries. This was illustrated by a decrease in cell viability and an increase in LDH release, caspase-3 activity and apoptosis rate. Furthermore, salidroside mitigated ox-LDL-induced reactive oxygen species production, upregulated malondialdehyde content and NADPH oxidase 2 expression and decreased superoxide dismutase and glutathione peroxidase activities, while these effects were also reversed by siSIRT1 transfection. In addition, it was demonstrated that salidroside suppressed ox-LDL-induced mitochondrial dysfunction as demonstrated by the increase in mitochondrial membrane potential and decreases in cytochrome c expression, and Bax/Bcl-2 reductions. However, these effects were eliminated by SIRT1 knockdown. Finally, it was demonstrated that salidroside significantly upregulated the phosphorylated-AMPK expression in ox-LDL-treated HUVECs and AMPK knockdown induced by transfection with AMPK siRNA (siAMPK) leads to elimination of the salidroside-induced increase in cell viability and the decrease in LDH release. Notably, siAMPK transfection further decreased the expression of SIRT1. In conclusion, these results suggested that salidroside protects HUVECs against ox-LDL injury through inhibiting oxidative stress and improving mitochondrial dysfunction, which were dependent on activating the AMPK/SIRT1 pathway.
机译:氧化低密度脂蛋白(OX-LDL)诱导的内皮损伤有助于动脉粥样硬化的启动和发病机制。 Salidroside可以缓解动脉粥样硬化并衰减由Ox-LDL诱导的内皮细胞损伤。然而,该过程中涉及的机制尚不完全理解。因此,本研究的目的是探讨腺苷一磷酸酯活化蛋白激酶(AMPK)/ SIRT素(SIRT)1途径在保护Salidroside对OX-LDL诱导的人脐静脉内皮细胞(HUVEC)中的作用伤害。结果表明,Salidroside通过细胞活力的上调和LDH释放的下调来逆转Ox-LDL诱导的Huvecs损伤。此外,Salidroside在OX-LDL处理的Huvec中增加了SIRT1蛋白的表达。接下来,证明通过用小干扰(Si)RNA靶向SIRT1(SISRT1)诱导的SIRT1敲除(SISRT1),废除了Salidroside对Ox-LDL诱导的Huvecs损伤的保护。这是通过细胞活力的降低和LDH释放的增加,Caspase-3活性和凋亡率来说明。此外,SALIDROSIDE缓释的OX-LDL诱导的反应性氧物质生产,上调丙二醛含量和NADPH氧化酶2表达和降低的超氧化物歧化酶和谷胱甘肽过氧化物酶活性,而这些效果也通过SISIRT1转染逆转。此外,证明Salidroside抑制了Ox-LDL诱导的线粒体功能障碍,如线粒体膜电位的增加所证明的,并降低细胞色素C表达,以及Bax / Bcl-2的降低。然而,SIRT1敲低消除了这些效果。最后,证明Salidroside显着上调了通过用AMPK siRNA(Siampk)转染的Ox-LDL处理的Huvecs和AMPK敲低的磷酸化-AMPK表达,导致消除Salidroside诱导的细胞活力增加和LDH的减少释放。值得注意的是,Siampk转染进一步降低了SIRT1的表达。总之,这些结果表明Salidroside通过抑制氧化应激和改善线粒体功能障碍来保护Huvecs免受OX-LDL损伤,这取决于激活AMPK / SIRT1途径。

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