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丝裂霉素C耐药的人膀胱癌细胞系对顺铂交叉耐药的机制

Mechanism of cross-resistance to cisplatin in a mitomycin C-resistant human bladder cancer cell line.

作者信息

Singh S V, Xu B H, Jani J P, Emerson E O, Backes M G, Rihn C, Scalamogna D, Stemmler N, Specht S, Blanock K

机构信息

Mercy Cancer Institute, Mercy Hospital, Pittsburgh, PA, USA.

出版信息

Int J Cancer. 1995 May 4;61(3):431-6. doi: 10.1002/ijc.2910610326.

Abstract

This study was undertaken to elucidate the mechanism(s) of cross-resistance to cisplatin (CDDP) in a mitomycin C (MMC)-resistant human bladder cancer cell line, J82/MMC. The J82/MMC cell line displayed 2- to 3-fold cross-resistance to CDDP and carboplatin when compared to the parental J82/WT cells. Drug uptake studies revealed that cross-resistance to CDDP in the J82/MMC cell line was independent of reduced platinum accumulation. The J82/MMC cell line exhibited approximately a 1.5-fold resistance to cadmium chloride, an indicator for increased metallothionein (MT) content, when compared to the J82/WT cells. Northern blot analysis showed a 2.7-fold higher level of MT-IIA mRNA in the J82/MMC cell line compared with J82/WT. We have reported previously that, whereas glutathione (GSH) level is comparable in these cells, GSH transferase (GST) activity is significantly higher in the J82/MMC cell line compared with J82/WT. Results of the present study showed that the elevated GST activity in the J82/MMC cell line was due to an over-expression of pi-type GST protein. Although buthionine-S,R-sulfoximine (BSO)-induced GSH depletion significantly enhanced CDDP cytotoxicity in both cell lines, the magnitude of potentiation was markedly higher in J82/MMC cells (about 2.1-fold) relative to J82/WT (about 1.6-fold). Our results suggest that cross-resistance to CDDP in the J82/MMC cell line may be due to alterations in cellular thiols.

摘要

本研究旨在阐明丝裂霉素C(MMC)耐药的人膀胱癌细胞系J82/MMC对顺铂(CDDP)产生交叉耐药的机制。与亲代J82/WT细胞相比,J82/MMC细胞系对CDDP和卡铂表现出2至3倍的交叉耐药性。药物摄取研究表明,J82/MMC细胞系对CDDP的交叉耐药与铂积累减少无关。与J82/WT细胞相比,J82/MMC细胞系对氯化镉(金属硫蛋白(MT)含量增加的指标)表现出约1.5倍的耐药性。Northern印迹分析显示,与J82/WT相比,J82/MMC细胞系中MT-IIA mRNA水平高2.7倍。我们之前报道过,尽管这些细胞中的谷胱甘肽(GSH)水平相当,但与J82/WT相比,J82/MMC细胞系中的谷胱甘肽转移酶(GST)活性显著更高。本研究结果表明,J82/MMC细胞系中GST活性升高是由于pi型GST蛋白的过表达。尽管丁硫氨酸-S,R-亚砜亚胺(BSO)诱导的GSH耗竭显著增强了两种细胞系中CDDP的细胞毒性,但J82/MMC细胞(约2.1倍)相对于J82/WT(约1.6倍)的增强幅度明显更高。我们的结果表明,J82/MMC细胞系对CDDP的交叉耐药可能是由于细胞内硫醇的改变。

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