首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Impact of Cyanidin-3-Glucoside on Glycated LDL-Induced NADPH Oxidase Activation Mitochondrial Dysfunction and Cell Viability in Cultured Vascular Endothelial Cells
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Impact of Cyanidin-3-Glucoside on Glycated LDL-Induced NADPH Oxidase Activation Mitochondrial Dysfunction and Cell Viability in Cultured Vascular Endothelial Cells

机译:Cyanidin-3-葡萄糖苷对培养的血管内皮细胞中糖化的LDL诱导的NADPH氧化酶活化线粒体功能障碍和细胞活力的影响

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摘要

Elevated levels of glycated low density lipoprotein (glyLDL) are frequently detected in diabetic patients. Previous studies demonstrated that glyLDL increased the production of reactive oxygen species (ROS), activated NADPH oxidase (NOX) and suppressed mitochondrial electron transport chain (mETC) enzyme activities in vascular endothelial cells (EC). The present study examined the effects of cyanidin-3-glucoside (C3G), a type of anthocyanin abundant in dark-skinned berries, on glyLDL-induced ROS production, NOX activation and mETC enzyme activity in porcine aortic EC (PAEC). Co-treatment of C3G prevented glyLDL-induced upregulation of NOX4 and intracellular superoxide production in EC. C3G normalized glyLDL-induced inhibition on the enzyme activities of mETC Complex I and III, as well as the abundances of NADH dehydrogenase 1 in Complex I and cytochrome b in Complex III in EC. Blocking antibody for the receptor of advanced glycation end products (RAGE) prevented glyLDL-induced changes in NOX and mETC enzymes. Combination of C3G and RAGE antibody did not significantly enhance glyLDL-induced inhibition of NOX or mETC enzymes. C3G reduced glyLDL-induced RAGE expression with the presence of RAGE antibody. C3G prevented prolonged incubation with the glyLDL-induced decrease in cell viability and the imbalance between key regulators for cell viability (cleaved caspase 3 and B cell Lyphoma-2) in EC. The findings suggest that RAGE plays an important role in glyLDL-induced oxidative stress in vascular EC. C3G may prevent glyLDL-induced NOX activation, the impairment of mETC enzymes and cell viability in cultured vascular EC.
机译:在糖尿病患者中经常检测到糖化低密度脂蛋白(glyLDL)水平升高。先前的研究表明,glyLDL可增加血管内皮细胞(EC)中活性氧(ROS),活化NADPH氧化酶(NOX)的产生并抑制线粒体电子转运链(mETC)酶的活性。本研究检验了花青素-3-葡萄糖苷(C3G)(一种深色皮肤浆果中丰富的花色苷)对glyLDL诱导的猪主动脉EC(PAEC)中ROS的产生,NOX活化和mETC酶活性的影响。 C3G的共同治疗阻止了glyLDL诱导的EC中NOX4的上调和细胞内超氧化物的产生。 C3G将glyLDL诱导的对mETC复合体I和III的酶活性以及EC中复合体I中复合物I中的NADH脱氢酶1和细胞色素b的丰度进行了标准化抑制。晚期糖基化终产物(RAGE)受体的封闭抗体可防止glyLDL诱导的NOX和mETC酶变化。 C3G和RAGE抗体的组合不能显着增强glyLDL诱导的NOX或mETC酶抑制作用。在存在RAGE抗体的情况下,C3G降低了glyLDL诱导的RAGE表达。 C3G阻止了长时间孵育,glyLDL诱导的细胞活力下降以及EC中细胞活力的关键调节因子(裂解的caspase 3和B细胞Lyphoma-2)之间的不平衡。这些发现表明,RAGE在glyLDL诱导的血管EC氧化应激中起重要作用。 C3G可能阻止glyLDL诱导的NOX活化,mETC酶的损伤以及培养的血管EC中的细胞活力。

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