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The role of endogenous reactive oxygen species in oxymatrine-induced caspase-3-dependent apoptosis in human melanoma A375 cells.

机译:内源性活性氧在人黑色素瘤A375细胞中氧化苦参碱诱导的caspase-3依赖性细胞凋亡中的作用。

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Rapid increases in incidence and mortality of human malignant melanoma are observed worldwide; thus, the development of new effective chemicals to control melanoma is urgent. In this study, the cytotoxic effect of oxymatrine, a natural quinolizidine alkaloid, against three human melanoma cell lines (A375, Sk-Mel-28, MM96L) and the underlying mechanisms were investigated. Oxymatrine killed all three human melanoma cell lines in a dose-dependent manner. The compound also dose-dependently caused apoptosis in human melanoma A375 cells. In addition, oxymatrine induced a remarkable change in mitochondrial membrane potential and triggered the release of cytochrome c from mitochondria to cytosol. Furthermore, this small compound resulted in a marked activation of capase-3, caspase-9, and poly (ADP-ribose) polymerase, while caspase-3 inhibitor Z-DEVD-FMK significantly reversed the proapoptotic effect of oxymatrine in A375 cells. Moreover, oxymatrine also dose-dependently increased the generation of reactive oxygen species in A375 cells, and N-acetylcysteine, a reactive oxygen species production inhibitor, almost completely blocked oxymatrine-induced apoptosis. In conclusion, our findings suggest that oxymatrine triggers oxidative stress, resulting in the collapse of the mitochondrial transmembrane potential, which in turn leads to cytochrome c release and apoptosis through the intrinsic caspase-9/caspase-3 pathway in human melanoma A375 cells.
机译:在世界范围内观察到人类恶性黑色素瘤的发病率和死亡率迅速增加;因此,迫切需要开发新的有效化学物质来控制黑色素瘤。在这项研究中,研究了天然苦参碱生物碱氧化苦参碱对三种人黑素瘤细胞系(A375,Sk-Mel-28,MM96L)的细胞毒性作用及其潜在机制。氧化苦参碱以剂量依赖性方式杀死所有三种人类黑素瘤细胞系。该化合物还剂量依赖性地引起人黑素瘤A375细胞的凋亡。此外,氧化苦参碱诱导线粒体膜电位发生显着变化,并触发细胞色素c从线粒体释放到细胞质中。此外,这种小化合物导致capase-3,caspase-9和聚(ADP-核糖)聚合酶显着活化,而caspase-3抑制剂Z-DEVD-FMK则显着逆转了氧化苦参碱在A375细胞中的促凋亡作用。此外,氧化苦参碱还可以剂量依赖性地增加A375细胞中活性氧的产生,而活性氧产生抑制剂N-乙酰半胱氨酸几乎完全阻断了氧化苦参碱诱导的细胞凋亡。总之,我们的发现表明,氧化苦参碱触发氧化应激,导致线粒体跨膜电位的崩溃,继而导致细胞色素c释放并通过人类黑素瘤A375细胞中固有的caspase-9 / caspase-3途径凋亡。

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