首页> 美国卫生研究院文献>Evidence-based Complementary and Alternative Medicine : eCAM >Bothrops jararaca and Bothrops erythromelas Snake Venoms Promote Cell Cycle Arrest and Induce Apoptosis via the Mitochondrial Depolarization of Cervical Cancer Cells
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Bothrops jararaca and Bothrops erythromelas Snake Venoms Promote Cell Cycle Arrest and Induce Apoptosis via the Mitochondrial Depolarization of Cervical Cancer Cells

机译:Bothrops jararaca和Bothrops erythromelas蛇毒液通过宫颈癌细胞线粒体去极化促进细胞周期阻滞并诱导凋亡。

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摘要

Bothrops jararaca (BJ) and Bothrops erythromelas (BE) are viper snakes found in South-Southeast and Northeast regions of Brazil, respectively. Snake venoms are bioactive neurotoxic substances synthesized and stored by venom glands, with different physiological and pharmacological effects, recently suggesting a possible preference for targets in cancer cells; however, mechanisms of snakes have been little studied. Here, we investigated the mechanism responsible for snake crude venoms toxicity in cultured cervical cancer cells SiHa and HeLa. We show that BJ and BE snake crude venoms exert cytotoxic effects to these cells. The percentage of apoptotic cells and cell cycle analysis and cell proliferation were assessed by flow cytometry and MTT assay. Detection of mitochondrial membrane potential (Rhodamine-123), nuclei morphological change, and DNA fragmentation were examined by staining with DAPI. The results showed that both the BJ and BE venoms were capable of inhibiting tumor cell proliferation, promoting cytotoxicity and death by apoptosis of target SiHa and HeLa cells when treated with BJ and BE venoms. Furthermore, data revealed that both BJ venoms in SiHa cell promoted nuclear condensation, fragmentation, and formation of apoptotic bodies by DAPI assay, mitochondrial damage by Rhodamine-123, and cell cycle block in the G1-G0 phase. BJ and BE venoms present anticancer potential, suggesting that both Bothrops venoms could be used as prototypes for the development of new therapies.
机译:Bothrops jararaca(BJ)和Bothrops erythromelas(BE)是分别在巴西的东南和东北地区发现的毒蛇。蛇毒是由毒腺合成和储存的具有生物活性的神经毒性物质,具有不同的生理和药理作用,最近表明在癌细胞中可能更倾向于靶标。然而,关于蛇的机制还很少研究。在这里,我们调查了在培养的宫颈癌细胞SiHa和HeLa中导致蛇粗毒毒性的机制。我们表明,BJ和BE蛇毒液对这些细胞发挥细胞毒性作用。通过流式细胞术和MTT分析评估凋亡细胞的百分比以及细胞周期分析和细胞增殖。通过DAPI染色检测线粒体膜电位(Rhodamine-123)的检测,细胞核形态变化和DNA片段化。结果表明,BJ和BE毒液处理BJ和BE毒液后均能抑制肿瘤细胞增殖,并通过靶标SiHa和HeLa细胞的凋亡促进细胞毒性和死亡。此外,数据显示,通过DAPI分析,SiHa细胞中的两种BJ毒液均促进了核浓缩,分裂和凋亡小体的形成,若丹明-123破坏了线粒体,并阻止了G1-G0期的细胞周期。 BJ和BE毒液具有抗癌潜力,这表明Bothrops毒液均可用作开发新疗法的原型。

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