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Involvement of p53 and nuclear factor-kappaB signaling pathway for the induction of G1-phase cell cycle arrest of cholangiocarcinoma cell lines by isomorellin

机译:p53和核因子-κB信号传导通路参与异莫瑞林诱导胆管癌细胞系G1期细胞周期阻滞

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Cell cycle arrest is closely linked to apoptosis. Isomorellin - a caged xanthone isolated from Garcinia hanburyi - induced apoptosis in cholangiocarcinoma (CCA) cell lines. To elucidate potential anticancer mechanisms, we investigated the effects of isomorellin on the growth, cell cycle progression, cell cycle regulated protein expression and nuclear factor-kappa B (NF-κB) activation of KKU-100 and KKU-M156 CCA cell lines; using sulforhodamine B assay, flow cytometry and Western blot analysis. The growth of both CCA cell lines was significantly inhibited by isomorellin treatment in a time- and dose-dependent manner. The respective IC _(50) value of isomorellin for KKU-100 cells was 6.2±0.13, 5.1±0.11 and 3.5±0.25 μM at 24, 48 and 72h. By comparison, the respective IC _(50) value for KKU-M156 cells was 1.9±0.22, 1.7±0.14 and 1.5±0.14 μM at 24, 48 and 72 h. The growth inhibition of CCA cells by isomorellin was through the G0/G1 phase arrest mediated by inhibition of NF-κB activation, up-regulation of p53, p21 and p27 and down-regulation of cyclin D1, cyclin E, Cdk4 and Cdk2 protein levels. Our research suggests that isomorellin induces cell cycle arrest and apoptosis in CCA cell lines through p53 and the NF-κ-B-signaling pathway. The growth inhibitory potential of isomorellin was comparable to that of gambogic acid. Isomorellin shows potential as a therapeutic agent against human cholangiocarcinoma.
机译:细胞周期停滞与凋亡密切相关。异黄素-一种从汉藤(Garcinia hanburyi)分离的笼状黄酮-诱导胆管癌(CCA)细胞系凋亡。为了阐明潜在的抗癌机制,我们研究了异雷莫林对KKU-100和KKU-M156 CCA细胞系的生长,细胞周期进程,细胞周期调节蛋白表达和核因子-κB(NF-κB)活化的影响;使用磺基罗丹明B检测,流式细胞仪和Western blot分析。两种异莫瑞林处理均以时间和剂量依赖性方式显着抑制了两种CCA细胞系的生长。在24、48和72h时,KKU-100细胞的异雷莫林的IC_(50)值分别为6.2±0.13、5.1±0.11和3.5±0.25μM。相比之下,KKU-M156细胞在24、48和72 h时各自的IC_(50)值为1.9±0.22、1.7±0.14和1.5±0.14μM。异莫瑞林对CCA细胞的生长抑制作用是通过抑制NF-κB活化,上调p53,p21和p27以及下调cyclin D1,cyclin E,Cdk4和Cdk2蛋白水平介导的G0 / G1期阻滞。我们的研究表明异莫瑞林通过p53和NF-κB信号通路诱导CCA细胞株的细胞周期停滞和凋亡。异瑞林的生长抑制潜能与藤黄酸相当。异瑞林显示出作为抗人胆管癌的治疗剂的潜力。

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