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首页> 外文期刊>European Journal of Pharmacology: An International Journal >[6]-Gingerol induces caspase 3 dependent apoptosis and autophagy in cancer cells: Drug-DNA interaction and expression of certain signal genes in HeLa cells
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[6]-Gingerol induces caspase 3 dependent apoptosis and autophagy in cancer cells: Drug-DNA interaction and expression of certain signal genes in HeLa cells

机译:[6] -Giglingerol诱导癌细胞中的Caspase 3依赖性凋亡和自噬:药物-DNA相互作用和Hela细胞中某些信号基因的表达

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[6]-Gingerol, a pharmacologically important bioactive component of ginger, has been reported to have anti-hyperglycemic, anti-cancer and anti-oxidative properties, but mechanisms through which these are achieved are largely unclear. The present study focuses on apoptosis and autophagy, two key events of anti-cancer activity, in HeLa cells treated with [6]-gingerol. The treated cells showed several morphological changes, including externalization of phosphatidyl serine, degradation of DNA and increase in TUNEL positivity. Furthermore, there was depolarization of mitochondrial membrane potential, providing evidence of mitochondria mediated apoptosis. The expression of caspase 3 and PARP was increased in cells exposed to [6]-gingerol. Circular dichroism study for testing drug-DNA interaction with both calf thymus and nuclear DNA as target revealed that the drug had potential to bind with the nuclear DNA and induce conformational changes of DNA. The over-expression of NFkβ, AKT and Bcl2 genes in cancer cells was down-regulated by [6]-gingerol treatment. On the other hand the expression levels of TNFα, Bax and cytochrome c were enhanced in [6]-gingerol treated cells. Thus, overall results suggest that [6]-gingerol has potential to bind with DNA and induce cell death by autophagy and caspase 3 mediated apoptosis.
机译:[6]据报道,姜的药理学上重要的生物活性成分,据报道,抗高血糖,抗癌和抗氧化性能,但是通过这些机制通过这些机制在很大程度上不清楚。本研究重点介绍凋亡和自噬,抗癌活性的两个关键事件,在用[6] -LIGNEROL治疗的HELA细胞中。处理过的细胞显示出几种形态变化,包括磷脂酰丝氨酸的外化,DNA的降解并增加TUNEL积极性。此外,有线粒体膜势的去极化,提供了线粒体介导的细胞凋亡的证据。在暴露于[6] -gingerol的细胞中,Caspase 3和PARP的表达增加。用于测试药物-DNA与小牛胸腺和核DNA的循环二色性研究作为靶标显示该药物具有与核DNA结合的可能性,并诱导DNA的构象变化。癌细胞中NFKβ,AKT和BCL2基因的过表达受[6] -Giglingerol治疗。另一方面,TNFα,Bax和细胞色素C的表达水平增强了[6] -gergederol处理的细胞中。因此,总体结果表明,[6] - Giglgingerol具有与DNA与DNA结合的潜力,并通过自噬和Caspase 3介导的凋亡诱导细胞死亡。

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