首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Development of a fluorescence-based assay for drug interactions with human Multidrug Resistance Related Protein (MRP2; ABCC2) in MDCKII-MRP2 membrane vesicles.
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Development of a fluorescence-based assay for drug interactions with human Multidrug Resistance Related Protein (MRP2; ABCC2) in MDCKII-MRP2 membrane vesicles.

机译:开发基于荧光的检测药物与MDCKII-MRP2膜囊泡中人多药耐药相关蛋白(MRP2; ABCC2)相互作用的方法。

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PURPOSE: To establish a fluorescence-based assay for drug interactions with the ABC-export-protein MRP2 (ABCC2). METHODS: Apical membrane vesicles were isolated by differential centrifugation from polarized MDCKII cells and MDCKII cells transfected with human MRP2. Vesicle fractions were characterized by electron microscopy, determination of the marker enzyme alkaline phosphatase and Western blot analysis of MRP2. Vesicle orientation was determined by measurement of 5'-nucleotidase activity in the absence and in the presence of detergents. To assess MRP2 activity, the uptake of the fluorescent MRP2-substrate 5-(6)-carboxy-2',7'-dichlorofluorescein (CDF) was determined in the absence and in the presence of other compounds potentially interacting with MRP2. RESULTS: Apical membrane vesicles could be isolated from cells in considerable purity as indicated by electron microscopy, enrichment of alkaline phosphatase and high enrichment of MRP2 in vesicles of MDCKII-MRP2 cells. About half of the vesicles showed "inside-out" orientation. CDF was taken up into the membrane vesicles in a time- and concentration-dependent manner following a Michaelis-Menten type of kinetics with a K(M) of 39 microM and a V(max) of 465.3 fmol/(mgprotein x min). Thereby, uptake into vesicles from transfected cells was significantly higher than uptake into vesicles from control cells. Presence of known MRP2-substrates/inhibitors in the incubation medium decreased CDF uptake into the vesicles in a concentration-dependent manner, whereas nonsubstrates/inhibitors had no effect. CONCLUSIONS: This CDF-based uptake assay can be used as a rapid and sensitive screening system to assess drug interactions with human MRP2 and therefore represents a useful tool in compound profiling.
机译:目的:建立基于荧光的分析方法,用于与ABC出口蛋白MRP2(ABCC2)相互作用的药物。方法:通过差速离心从极化的MDCKII细胞和转染人MRP2的MDCKII细胞中分离出顶膜囊泡。通过电子显微镜,标记酶碱性磷酸酶的测定和MRP2的蛋白质印迹分析来表征囊泡级分。通过在不存在和存在去污剂的情况下测量5'-核苷酸酶活性来确定囊泡取向。为了评估MRP2活性,在不存在和存在可能与MRP2相互作用的其他化合物的情况下,测定了荧光MRP2底物5-(6)-羧基-2',7'-二氯荧光素(CDF)的摄取。结果:通过电子显微镜,碱性磷酸酶的富集和MCK2在MDCKII-MRP2细胞的囊泡中的高度富集,可以从细胞中分离出高纯度的顶膜囊泡。大约一半的囊泡表现出“由内而外”的取向。 CDF遵循Michaelis-Menten动力学类型,以K(M)为39 microM,V(max)为465.3 fmol /(mg蛋白质x分钟),以时间和浓度依赖性的方式被吸收到膜囊泡中。因此,转染细胞对囊泡的摄取显着高于对照细胞对囊泡的摄取。温育培养基中存在已知的MRP2底物/抑制剂会以浓度依赖的方式降低CDF吸收到囊泡中,而非底物/抑制剂则没有作用。结论:这种基于CDF的摄取测定法可用作快速灵敏的筛选系统,以评估药物与人MRP2的相互作用,因此代表了化合物谱分析中的有用工具。

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