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药物在药物敏感的MES-SA子宫肉瘤细胞中溶酶体蓄积,但在多药耐药的MES-SA/Dx5子宫肉瘤细胞中无此现象。

Lysosomal accumulation of drugs in drug-sensitive MES-SA but not multidrug-resistant MES-SA/Dx5 uterine sarcoma cells.

作者信息

Wang E, Lee M D, Dunn K W

机构信息

Department of Medicine, Indiana University School of Medicine, Indianapolis, Indiana 46202-5116, USA.

出版信息

J Cell Physiol. 2000 Aug;184(2):263-74. doi: 10.1002/1097-4652(200008)184:2<263::AID-JCP15>3.0.CO;2-F.

Abstract

Sequestration of drugs in intracellular vesicles has been associated with multidrug-resistance (MDR), but it is not clear why vesicular drug accumulation, which depends upon intracellular pH gradients, should be associated with MDR. Using a human uterine sarcoma cell line (MES-SA) and a doxorubicin (DOX)-resistant variant cell line (Dx-5), which expresses p-glycoprotein (PGP), we have addressed the relationship between multidrug resistance, vesicular acidification, and vesicular drug accumulation. Consistent with a pH-dependent mechanism of vesicular drug accumulation, studies of living cells vitally labeled with multiple probes indicate that DOX and daunorubicin (DNR) predominately accumulate in lysosomes, whose lumenal pH was measured at < 4.5, but are not detected in endosomes, whose pH was measured at 5.9. However, vesicular DOX accumulation is more pronounced in the drug-sensitive MES-SA cells and minimal in Dx5 cells even when cellular levels of DOX are increased by verapamil treatment. While lysosomal accumulation of DOX correlated well with pharmacologically induced differences in lysosome pH in MES-SA cells, lysosomal accumulation was minimal in Dx5 cells regardless of lysosomal pH. We found no differences in the pH of either endosomes or lysosomes between MES-SA and Dx5 cells, suggesting that, in contrast to other MDR cell systems, the drug-resistant Dx5 cells are refractory to pH-dependent vesicular drug accumulation. These studies demonstrate that altered endomembrane pH regulation is not a necessary consequence of cell transformation, and that vesicular sequestration of drugs is not a necessary characteristic of MDR.

摘要

药物在细胞内囊泡中的隔离与多药耐药性(MDR)有关,但尚不清楚为何依赖细胞内pH梯度的囊泡药物积累会与MDR相关。我们使用了一种人子宫肉瘤细胞系(MES-SA)和一种表达P-糖蛋白(PGP)的阿霉素(DOX)耐药变异细胞系(Dx-5),来研究多药耐药性、囊泡酸化和囊泡药物积累之间的关系。与囊泡药物积累的pH依赖性机制一致,用多种探针进行活体标记的活细胞研究表明,DOX和柔红霉素(DNR)主要积聚在溶酶体中,其腔内pH值经测量小于4.5,但在内体中未检测到,内体的pH值经测量为5.9。然而,即使通过维拉帕米处理增加细胞内DOX水平,囊泡DOX积累在药物敏感的MES-SA细胞中更明显,而在Dx5细胞中则最小。虽然DOX在溶酶体中的积累与MES-SA细胞中溶酶体pH的药理学诱导差异密切相关,但无论溶酶体pH如何,DOX在Dx5细胞中的溶酶体积累都最小。我们发现MES-SA和Dx5细胞的内体或溶酶体pH没有差异,这表明与其他MDR细胞系统不同,耐药的Dx5细胞对pH依赖性囊泡药物积累具有抗性。这些研究表明,内膜pH调节的改变不是细胞转化的必然结果,并且药物的囊泡隔离不是MDR的必要特征。

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