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The green tea catechin epigallocatechin gallate induces cell cycle arrest and shows potential synergism with cisplatin in biliary tract cancer cells

机译:绿茶儿茶素EpigallocateChin Gallate诱导细胞周期骤停,并表现出胆道癌细胞中顺铂的潜在协同作用

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Background The green tea catechin epigallocatechin gallate (EGCG) was shown to effectively inhibit tumor growth in various types of cancer including biliary tract cancer (BTC). For most BTC patients only palliative therapy is possible, leading to a median survival of about one year. Chemoresistance is a major problem that contributes to the high mortality rates of BTC. The aim of this study was to investigate the cytotoxic effect of EGCG alone or in combination with cisplatin on eight BTC cell lines and to investigate the cellular anti-cancer mechanisms of EGCG. Methods The effect of EGCG treatment alone or in combination with the standard chemotherapeutic cisplatin on cell viability was analyzed in eight BTC cell lines. Additionally, we analyzed the effects of EGCG on caspase activity, cell cycle distribution and gene expression in the BTC cell line TFK-1. Results EGCG significantly reduced cell viability in all eight BTC cell lines (p??5?μM). Combined EGCG and cisplatin treatment showed a synergistic cytotoxic effect in five cell lines and an antagonistic effect in two cell lines. Furthermore, EGCG reduced the mRNA levels of various cell cycle-related genes, while increasing the expression of the cell cycle inhibitor p21 and the apoptosis-related death receptor 5 (p?Conclusions EGCG shows various anti-cancer effects in BTC cell lines and might therefore be a potential anticancer drug for future studies in BTC. Additionally, EGCG displays a synergistic cytotoxic effect with cisplatin in most tested BTC cell lines.
机译:背景技术绿茶儿茶素EpigallocateChin gallate(EGCG)被证明是有效地抑制各种类型的癌症中的肿瘤生长,包括胆道癌症(BTC)。对于大多数BTC患者,只有姑息治疗才能,导致一年大约一年的中位生存率。 ChemioLateistance是有助于BTC的高死亡率的主要问题。本研究的目的是探讨EGCG的细胞毒性效果单独或与连杆细胞系中的顺铂组合,并研究EGCG的细胞抗癌机制。方法分析了八种BTC细胞系中单独或与标准化学治疗性顺铂相结合的EGCG处理的影响。另外,我们分析了EGCG对BTC细胞系TFK-1中的Caspase活性,细胞周期分布和基因表达的影响。结果EGCG在所有八种BTC细胞系中显着降低了细胞活力(P ?? 5?μm)。组合的EGCG和顺铂治疗显示了五种细胞系中的协同细胞毒性作用和两种细胞系中的拮抗作用。此外,EGCG降低了各种细胞周期相关基因的mRNA水平,同时增加了细胞周期抑制剂P21和凋亡相关死亡受体5的表达(P?结论EGCG在BTC细胞系中显示各种抗癌作用,并且可能因此,成为BTC的未来研究的潜在抗癌药物。另外,EGCG在大多数测试的BTC细胞系中显示与顺铂的协同细胞毒性作用。

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