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首页> 外文期刊>Gynecologic Oncology: An International Journal >7 Methyl indole ethyl isothiocyanate causes ROS mediated apoptosis and cell cycle arrest in endometrial cancer cells
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7 Methyl indole ethyl isothiocyanate causes ROS mediated apoptosis and cell cycle arrest in endometrial cancer cells

机译:7吲哚甲基异硫氰酸乙酯导致ROS介导的子宫内膜癌细胞凋亡和细胞周期停滞

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Objective: Chemotherapy options for advanced endometrial cancer are limited and newer therapeutic agents are urgently needed. This study describes the therapeutic potential of 7 Methyl-indole ethyl isothiocyanate (7Me-IEITC) in endometrial cancer cell lines. Methods: 7Me-IEITC was synthesized in our laboratory. The cell viability of 7Me-IEITC treated ECC-1 and KLE endometrial cancer cell was determined by MTS assay. Morphology and apoptosis were further confirmed by DAPI-staining and TUNEL assay. The measurement of reactive oxygen species (ROS), mitochondrial transmembrane depolarization potential (ΔΨm) and cell cycle phase was determined by FACS analysis. Expression of proteins involved in apoptosis, survival and cell-cycle progression was analyzed by Western blotting. Results: 7Me-IEITC reduced the viability of the ECC-1 and KLE cancer cell-lines (IC 50 ~ 2.5-10 μM) in a dose dependent fashion. 7Me-IEITC treatment caused mitochondrial transmembrane potential reduction, elevated the production of ROS, leading to activation of apoptosis in endometrial cancer KLE and ECC-1 cells. 7Me-IEITC treatment activated Bad, suppressed Bcl2 phosphorylation followed by PARP-1 deactivation and caspase 3 and 7 activation. 7Me-IEITC treatment arrested the progression of KLE cells in S-phase and caused CDC25 and cyclin-D1 downregulation. Pre-treatment with ascorbic acid abrogated 7Me-IEITC induced apoptosis in ECC-1 and KLE cells, suggesting that 7Me-IEITC mediated cytotoxicity is primarily through ROS production. Conclusion: 7Me-IEITC demonstrated promising cytotoxic effects in endometrial cancer cell line model.
机译:目的:晚期子宫内膜癌的化学疗法选择有限,迫切需要更新的治疗药物。这项研究描述了7甲基吲哚异硫氰酸乙酯(7Me-IEITC)在子宫内膜癌细胞系中的治疗潜力。方法:本实验室合成了7Me-IEITC。通过MTS测定来确定7Me-IEITC处理的ECC-1和KLE子宫内膜癌细胞的细胞生存力。通过DAPI染色和TUNEL测定进一步证实形态和凋亡。通过FACS分析测定活性氧(ROS),线粒体跨膜去极化电势(ΔΨm)和细胞周期相。通过蛋白质印迹分析涉及凋亡,存活和细胞周期进程的蛋白质的表达。结果:7Me-IEITC以剂量依赖性方式降低了ECC-1和KLE癌细胞系(IC 50〜2.5-10μM)的活力。 7Me-IEITC治疗引起线粒体跨膜电位降低,ROS产生增加,导致子宫内膜癌KLE和ECC-1细胞凋亡的活化。 7Me-IEITC处理激活Bad,抑制Bcl2磷酸化,然后PARP-1失活以及caspase 3和7激活。 7Me-IEITC治疗阻止了SLE期KLE细胞的进展,并导致CDC25和cyclin-D1下调。用抗坏血酸预处理可以消除7Me-IEITC诱导的ECC-1和KLE细胞凋亡,这表明7Me-IEITC介导的细胞毒性主要是通过ROS产生。结论:7Me-IEITC在子宫内膜癌细胞系模型中显示出有希望的细胞毒性作用。

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