表达大鼠多药耐药相关蛋白1 (rMRP1)的重组Madin-Darby犬肾细胞系的建立和鉴定

AAPS PharmSci Pub Date : 2004-03-09 DOI:10.1208/ps060108
Ziping Yang, Micha Horn, Joanne Wang, Danny D Shen, Rodney J Y Ho
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引用次数: 11

摘要

除了内源性底物外,多药耐药相关蛋白1 (MRP1)是介导多种抗肿瘤药物、葡萄糖醛酸缀合物和谷胱甘肽外排转运的主要蛋白之一。据报道,小鼠和人MRP1的底物选择性有显著差异。由于临床前药物处置和药代动力学研究经常在大鼠身上进行,我们最近克隆了大鼠MRP1 (rMRP1),并证明rMRP1在转染的细胞外排钙黄蛋白中表达,钙黄蛋白是人类MRP1常用的荧光底物。为了进一步表征MRP1的大鼠同源性,我们分离了一株稳定表达重组rMRP1的细胞系。研究人员测试了这些细胞运输钙黄蛋白和一系列化疗药物的能力。我们的研究结果表明,表达rMRP1的细胞始终以比对照细胞高5倍的速度排出钙黄蛋白。rMRP1转染的细胞,像它们的人类同源物一样,可以赋予对长春花生物碱(长春新碱和长春新碱)和蒽环类药物(柔红霉素和阿霉素)的耐药性,MRP1赋予的耐药性可以被mrp特异性抑制剂部分消除。我们还研究了rMRP1在分化的Madin-Darby犬肾细胞(MDCK)细胞中的表达对经上皮通透性的影响。MRP1转运活动是定向的,如定向长春花碱转运所证明的那样。总的来说,我们的研究结果表明,rMRP1的细胞表达,就像它的人类同源物一样,可以赋予对抗癌药物的抗性。
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Development and characterization of a recombinant Madin-Darby canine kidney cell line that expresses rat multidrug resistance-associated protein 1 (rMRP1).

Multidrug resistance-associated protein 1 (MRP1) is one of the major proteins shown to mediate efflux transport of a broad range of antitumor drugs, glucuronide conjugates, and glutathione, in addition to endogenous substrates. Significant differences in substrate selectivity were reported for murine and human MRP1. As preclinical drug disposition and pharmacokinetics studies are often conducted in rats, we have recently cloned the rat MRP1 (rMRP1) and demonstrated that rMRP1 expressed in transfected cells effluxes calcein, a commonly used fluorescence substrate for human MRP1. To further characterize the rat ortholog of MRP1, we isolated a cell line stably expressing recombinant rMRP1. These cells were tested for their ability to transport calcein and a range of chemotherapeutic drugs. Our results showed that cells expressing rMRP1 consistently efflux calcein at a rate 5-fold greater than control cells. The rMRP1 transfected cells, like their human ortholog, can confer drug resistance to vinca alkaloid (vinblastine and vincristine) and anthracycline drugs (daunorubcin and doxorubicin), and the resistance conferred by the MRP1 can be partially abolished by the MRP-specific inhibitors. The transepithelial permeability due to rMRP1 expression in differentiated Madin-Darby canine kidney cells (MDCK) cells was also investigated. The MRP1 transport activity is directional, as demonstrated by directional vinblastine transport. Collectively, our results demonstrate that the cellular expression of rMRP1, like its human ortholog, could confer resistance to anticancer drugs.

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