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DNA修复蛋白作为帕罗西汀在胃癌细胞AGS中诱导细胞毒性的靶点。

DNA repair proteins as the targets for paroxetine to induce cytotoxicity in gastric cancer cell AGS.

作者信息

Liu Bang-Hung, Yuan Tein-Ming, Huang Chih-Jou, Hsu Duan-Ting, Chen Shi-Wen, Hsiao Nai-Wan, Lin Sheng-Chih, Wu Shu-Wan, Lin Yi-Mei J, Chuang Show-Mei

机构信息

Institute of Biomedical Sciences, National Chung Hsing University Taichung 402, Taiwan.

Department of Surgery, Feng Yuan Hospital, Ministry of Health and Welfare Taichung 420, Taiwan.

出版信息

Am J Cancer Res. 2022 Apr 15;12(4):1465-1483. eCollection 2022.

Abstract

To evaluate the potential anticancer effects of 1175 FDA-approved drugs, cell viability screening was performed using 25 human cancer cell lines covering 14 human cancer types. Here, we focus on the action of paroxetine, which demonstrated greater toxicity toward human gastric adenocarcinoma cell-line AGS cells compared with the other FDA-approved drugs, exhibiting an IC50 value lower than 10 μM. Evaluation of the underlying novel mechanisms revealed that paroxetine can enhance DNA damage in gastric cancer cells and involves downregulation of Rad51, HR23B and ERCC1 expression and function, as well as nucleotide shortage. Enhancement of autophagy counteracted paroxetine-induced apoptosis but did not affect paroxetine-induced DNA damage. Paroxetine also enhanced ROS generation in AGS cells, but a ROS scavenger did not improve paroxetine-mediated DNA damage, apoptosis, or autophagy, suggesting ROS might play a minor role in paroxetine-induced cell toxicity. In contrast, paroxetine did not enhance DNA damage, apoptosis, or autophagy in another insensitive gastric adenocarcinoma cell-line MKN-45 cells. Interestingly, co-administration of paroxetine with conventional anticancer agents sensitized MKN-45 cells to these agents: co-treated cells showed increased apoptosis relative to MKN-45 cells treated with the anticancer agent alone. Unequivocally, these data suggest that for the first time that paroxetine triggers cytotoxicity and DNA damage in AGS cells at least partly by reducing the gene expression of Rad51, HR23B, and ERCC1. Our findings also suggest that paroxetine is a promising candidate anticancer agent and/or chemosensitizing agent for use in combination with other anticancer drugs in cancer therapy. The molecular mechanisms underlying the anticancer activity of co-treatment with paroxetine and chemotherapy appear to be complex and are worthy of further investigation.

摘要

为评估1175种美国食品药品监督管理局(FDA)批准药物的潜在抗癌作用,使用涵盖14种人类癌症类型的25种人类癌细胞系进行了细胞活力筛选。在此,我们重点关注帕罗西汀的作用,与其他FDA批准的药物相比,它对人胃腺癌细胞系AGS细胞表现出更大的毒性,其半数抑制浓度(IC50)值低于10μM。对潜在新机制的评估显示,帕罗西汀可增强胃癌细胞中的DNA损伤,并涉及Rad51、HR23B和ERCC1表达及功能的下调以及核苷酸短缺。自噬增强可抵消帕罗西汀诱导的细胞凋亡,但不影响帕罗西汀诱导的DNA损伤。帕罗西汀还增强了AGS细胞中活性氧(ROS)的生成,但ROS清除剂并不能改善帕罗西汀介导的DNA损伤、细胞凋亡或自噬,这表明ROS在帕罗西汀诱导的细胞毒性中可能起次要作用。相比之下,帕罗西汀在另一种不敏感的胃腺癌细胞系MKN - 45细胞中并未增强DNA损伤、细胞凋亡或自噬。有趣的是,帕罗西汀与传统抗癌药物联合使用可使MKN - 45细胞对这些药物敏感:联合处理的细胞相对于单独用抗癌药物处理的MKN - 45细胞显示出凋亡增加。明确地说,这些数据首次表明帕罗西汀至少部分通过降低Rad51、HR23B和ERCC1的基因表达在AGS细胞中引发细胞毒性和DNA损伤。我们的研究结果还表明,帕罗西汀是一种有前景的候选抗癌药物和/或化学增敏剂,可在癌症治疗中与其他抗癌药物联合使用。帕罗西汀与化疗联合治疗的抗癌活性背后的分子机制似乎很复杂,值得进一步研究。

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