谷胱甘肽在肿瘤化疗顺铂耐药调控中的作用。

Metal-Based Drugs Pub Date : 2010-01-01 Epub Date: 2010-09-14 DOI:10.1155/2010/430939
Helen H W Chen, Macus Tien Kuo
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引用次数: 220

摘要

关于谷胱甘肽(GSH)在调节顺铂(CDDP)敏感性并影响其最终细胞杀伤能力方面的作用,已经提出了三种机制:(i)谷胱甘肽可能作为促进哺乳动物细胞中多药耐药蛋白2- (MRP2-)介导的CDDP外排的辅助因子,因为MRP2转染的细胞被证明具有CDDP抗性;(ii)基于许多抗cddp细胞过度表达GSH和γ-谷氨酰半胱氨酸合成酶(γ-GCS) (GSH生物合成的限速酶),GSH可能作为一种氧化还原调节细胞保护剂;(iii)谷胱甘肽可作为铜螯合剂。升高的GSH表达会耗尽细胞生物可利用的Cu库,导致高亲和力Cu转运蛋白(hCtr1)的上调,这也是一种CDDP转运蛋白。这已经证明,通过转染γ-GCS过度表达GSH可使CDDP毒性增敏。这篇综述描述了这三种模型是如何建立的,并批判性地回顾了它们在肿瘤细胞治疗中对CDDP细胞毒性的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Role of glutathione in the regulation of Cisplatin resistance in cancer chemotherapy.

Three mechanisms have been proposed for the role of glutathione (GSH) in regulating cisplatin (CDDP) sensitivities that affects its ultimate cell-killing ability: (i) GSH may serve as a cofactor in facilitating multidrug resistance protein 2- (MRP2-) mediated CDDP efflux in mammalian cells, since MRP2-transfected cells were shown to confer CDDP resistance; (ii) GSH may serve as a redox-regulating cytoprotector based on the observations that many CDDP-resistant cells overexpress GSH and γ-glutamylcysteine synthesis (γ-GCS), the rate-limiting enzyme for GSH biosynthesis; (iii) GSH may function as a copper (Cu) chelator. Elevated GSH expression depletes the cellular bioavailable Cu pool, resulting in upregulation of the high-affinity Cu transporter (hCtr1) which is also a CDDP transporter. This has been demonstrated that overexpression of GSH by transfection with γ-GCS conferred sensitization to CDDP toxicity. This review describes how these three models were developed and critically reviews their importance to overall CDDP cytotoxicity in cancer cell treatments.

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