首页> 美国卫生研究院文献>International Journal of Oncology >Theaflavin-3 3′-digallate induces apoptosis and G2 cell cycle arrest through the Akt/MDM2/p53 pathway in cisplatin-resistant ovarian cancer A2780/CP70 cells
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Theaflavin-3 3′-digallate induces apoptosis and G2 cell cycle arrest through the Akt/MDM2/p53 pathway in cisplatin-resistant ovarian cancer A2780/CP70 cells

机译:Theaflavin-33-digallate通过抗Akt / MDM2 / p53途径诱导顺铂耐药卵巢癌A2780 / CP70细胞凋亡和G2细胞周期阻滞

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摘要

Ovarian cancer is the most lethal gynecological cancer among women worldwide. Adverse side effects and acquired resistance to conventional platinum based chemotherapy are major impediments in ovarian cancer treatment, and drive the development of more selective anticancer drugs that target cancer-specific defects. In this study, theaflavin-3, 3′-digallate (TF3), the major theaflavin monomer in black tea, exhibited a potent growth inhibitory effect on the cisplatin-resistant ovarian cancer A2780/CP70 cells (IC50, 23.81 μM), and was less cytotoxic to a normal ovarian IOSE-364 cells (IC50, 59.58 μM) than to the cancer cells. Flow cytometry analysis indicated that TF3 induced preferential apoptosis and G2 cell cycle arrest in A2780/CP70 cells with respect to IOSE-364 cells. TF3 induced apoptosis through both the intrinsic and extrinsic apoptotic pathways, and caused G2 cell cycle arrest via cyclin B1 in A2780/CP70 cells. The p53 protein played an important role in TF3-induced apoptosis and G2 cell cycle arrest. TF3 might upregulate the p53 expression via the Akt/MDM2 pathway. Our findings help elucidate the mechanisms by which TF3 may contribute to the prevention and treatment of platinum-resistant ovarian cancer.
机译:卵巢癌是全世界女性中最致命的妇科癌症。不利的副作用和对常规铂类化学疗法的耐药性是卵巢癌治疗的主要障碍,并推动了针对癌症特定缺陷的更具选择性的抗癌药物的开发。在本研究中,茶黄素3中的茶黄素3是主要的茶黄素单体,theaflavin-3、3'-digallate(TF3)对顺铂耐药的卵巢癌A2780 / CP70细胞(IC50,23.81μM)表现出有效的生长抑制作用,并且对正常卵巢IOSE-364细胞(IC50,59.58μM)的细胞毒性小于对癌细胞的细胞毒性。流式细胞仪分析表明,相对于IOSE-364细胞,TF3诱导了A2780 / CP70细胞的优先凋亡和G2细胞周期停滞。 TF3通过内在和外在凋亡途径诱导凋亡,并通过A2780 / CP70细胞中的细胞周期蛋白B1导致G2细胞周期停滞。 p53蛋白在TF3诱导的凋亡和G2细胞周期阻滞中起重要作用。 TF3可能通过Akt / MDM2途径上调p53表达。我们的发现有助于阐明TF3可能有助于预防和治疗铂耐药性卵巢癌的机制。

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