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Combined modalities of resistance in an oxaliplatin-resistant human gastric cancer cell line with enhanced sensitivity to 5-fluorouracil

机译:对奥沙利铂耐药的人胃癌细胞株对5-氟尿嘧啶敏感性增强的联合耐药模式

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摘要

[[abstract]]To identify mechanisms underlying oxaliplatin resistance, a subline of the human gastric adenocarcinoma TSGH cell line, S3, was made resistant to oxaliplatin by continuous selection against increasing drug concentrations. Compared with the parental TSGH cells, the S3 subline showed 58- fold resistance to oxaliplatin; it also displayed 11-, 2-, and 4.7- fold resistance to cis- diammine- dichloroplatinum ( II) ( CDDP), copper sulphate, and arsenic trioxide, respectively. Interestingly, S3 cells were fourfold more susceptible to 5- fluorouracilinduced cytotoxicity due to downregulation of thymidylate synthase. Despite elevated glutathione levels in S3 cells, there was no alteration of resistant phenotype to oxaliplatin or CDDP when cells were co- treated with glutathione- depleting agent, l- buthionine( S, R)- sulphoximine. Cellular CDDP and oxaliplatin accumulation was decreased in S3 cells. In addition, amounts of oxaliplatin- and CDDP - DNA adducts in S3 cells were about 15 and 40% of those seen with TSGH cells, respectively. Western blot analysis showed increased the expression level of copper transporter ATP7A in S3 cells compared with TSGH cells. Partial reversal of the resistance of S3 cells to oxaliplatin and CDDP was observed by treating cell with ATP7A- targeted siRNA oligonucleotides or P- type ATPaseinhibitor sodium orthovanadate. Besides, host reactivation assay revealed enhanced repair of oxaliplatin- or CDDP- damaged DNA in S3 cells compared with TSGH cells. Together, our results show that the mechanism responsible for oxaliplatin and CDDP resistance in S3 cells is the combination of increased DNA repair and overexpression of ATP7A. Downregulation of thymidylate synthase in S3 cells renders them more susceptible to 5- fluorouracil- induced cytotoxicity. These findings could pave ways for future efforts to overcome oxaliplatin resistance.
机译:[[摘要]]为了确定奥沙利铂耐药性的潜在机制,通过不断选择药物浓度增加,使人胃腺癌TSGH细胞系S3的亚系对奥沙利铂具有耐药性。与亲代TSGH细胞相比,S3亚系显示出对奥沙利铂的抗性是58倍。它还显示出对顺二氨二氯铂(II)(CDDP),硫酸铜和三氧化二砷的11倍,2倍和4.7倍的抗性。有趣的是,由于胸苷酸合酶的下调,S3细胞对5-氟尿嘧啶诱导的细胞毒性的敏感性提高了四倍。尽管S3细胞中的谷胱甘肽水平升高,但是当将细胞与谷胱甘肽耗竭剂1-丁硫氨酸(S,R)-磺胺嘧啶共同处理时,对奥沙利铂或CDDP的耐药表型没有改变。 S3细胞中细胞CDDP和奥沙利铂的积累减少。此外,S3细胞中的奥沙利​​铂和CDDP-DNA加合物的量分别约为TSGH细胞的15%和40%。 Western印迹分析表明,与TSGH细胞相比,S3细胞中铜转运蛋白ATP7A的表达水平增加。通过用靶向ATP7A的siRNA寡核苷酸或P型ATP酶抑制剂原钒酸钠处理细胞,观察到S3细胞对奥沙利铂和CDDP的抗性部分逆转。此外,宿主再活化试验显示,与TSGH细胞相比,S3细胞中草酸铂或CDDP损伤的DNA修复增强。总之,我们的结果表明,负责S3细胞中奥沙利铂和CDDP抗性的机制是DNA修复增强和ATP7A过表达的组合。 S3细胞中胸苷酸合酶的下调使它们更易受5-氟尿嘧啶诱导的细胞毒性作用。这些发现可能为将来克服奥沙利铂耐药性的努力铺平道路。

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    Chen, CC;

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  • 年度 2008
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