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Induction of apoptosis by piperine in human cervical adenocarcinoma via ROS mediated mitochondrial pathway and caspase-3 activation

机译:ROS介导的线粒体途径和caspase-3激活诱导胡椒碱诱导人宫颈腺癌细胞凋亡

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Piperine (1-piperoylpeperdine), a nitrogenous pungent substance, is present in the fruits of black pepper (Piper nigrum Linn.) and long pepper (Piper longum Linn.). It possesses several pharmacological properties and has been extensively explored for its anti-cancerous activities. The mechanism underlying its anti-cancer potential in human cervical adenocarcinoma (HeLa) cells is not well interpreted. The anti-proliferative effect and the mode of action of piperine were investigated through some potent markers of apoptosis viz.reactive oxygen species (ROS) generation, cellular apoptosis and loss of mitochondrial membrane potential (MMP). DNA fragmentation, cell cycle kinetics, caspase-3 activity and cell migration assays were also conducted to observe the efficacy of piperine against HeLa cells. The results showed that piperine exposure induces apoptosis significantly in a dose-dependent manner and inhibits the growth of HeLa cells with an increase in ROS generation, nuclear condensation and delayed wound healing. In addition, piperine also encourages cell death by the loss of MMP, DNA fragmentation and the activation of caspase-3. Growth inhibition of HeLa cells was found to be associated with G2/M phase arrest and sub-G1 accumulation. The present study provides useful insight into the apoptotic potential of piperine and further in vivo and clinical studies will be needed for its validation and in the finding of more effective and least toxic regimens against cervical cancer.
机译:黑胡椒(Piper nigrum Linn。)和长胡椒(Piper longum Linn。)的果实中含有胡椒碱(1-piperoylpeperdine),一种含氮的刺激性物质。它具有几种药理特性,并已对其抗癌活性进行了广泛的研究。其在人类宫颈腺癌(HeLa)细胞中抗癌潜能的潜在机制尚未得到很好的解释。通过一些有效的凋亡标志物,即活性氧(ROS)的产生,细胞凋亡和线粒体膜电位(MMP)的丧失,研究了胡椒碱的抗增殖作用和作用方式。还进行了DNA片段化,细胞周期动力学,caspase-3活性和细胞迁移分析,以观察胡椒碱对HeLa细胞的功效。结果表明,胡椒碱暴露以剂量依赖性方式显着诱导凋亡,并抑制HeLa细胞的生长,并增加ROS生成,核浓缩和伤口愈合延迟。此外,胡椒碱还通过丢失MMP,DNA片段化和caspase-3活化来促进细胞死亡。发现HeLa细胞的生长抑制与G2 / M期停滞和亚G1积累有关。本研究为胡椒碱的凋亡潜力提供了有用的见识,进一步的体内和临床研究将需要其验证和寻找更有效和毒性最小的宫颈癌治疗方案。

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