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与人P-糖蛋白结合特性的表征:[3H]维拉帕米放射性配体结合测定法的开发。

Characterization of binding properties to human P-glycoprotein: development of a [3H]verapamil radioligand-binding assay.

作者信息

Döppenschmitt S, Langguth P, Regårdh C G, Andersson T B, Hilgendorf C, Spahn-Langguth H

机构信息

School of Pharmacy, Martin-Luther-University Halle-Wittenberg, Halle (Saale), Germany.

出版信息

J Pharmacol Exp Ther. 1999 Jan;288(1):348-57.

PMID:9862789
Abstract

Interaction with the exsorptive transporter P-glycoprotein (P-gp) is a possible source of peculiarities in drug pharmacokinetics, including dose-dependent absorption, drug-drug interactions, intestinal secretion, and limited permeability of the blood-brain barrier. Among the established in vitro methods of the analysis of drug interactions with P-gp, none directly quantifies the affinity of ligands with P-gp. Instead, they measure the result of a membrane permeation and a receptor-binding process; this may lead to difficulties in the interpretation of results. An assay for quantification of drug affinity to the transporter is presented on the basis of the radioligand-binding assay principle. This has the advantage of directly quantifying the interaction between drugs and P-gp. Because of the reversible and competitive interaction of numerous substrates with P-gp, a radioligand-binding assay was developed by taking [3H]verapamil and [3H]vinblastine as radioligands and the human intestinal Caco-2 cells, overexpressed with P-gp by culturing in the presence of vinblastine or transfecting with multidrug resistance gene MDR-1 as receptor preparation. The assay was performed in 96-well plates and has the potential to be used as a high-throughput method. A clear induction of the expression of P-gp was demonstrated in the Caco-2 cells grown in the presence of vinblastine, as well as in the transfected cells, although to a lesser extent. Both radioligands were shown to bind to P-gp. Verapamil was the radioligand of choice for further investigations due to its lower nonspecific binding to the transporter preparation. Kinetics as well as specificity of the binding of verapamil to the P-gp preparation were demonstrated. A two-affinity model was found to adequately describe the data derived from saturation as well as from competition experiments, in accordance with previous findings on two exsorption sites for P-gp. The binding properties of [3H]verapamil and [3H]vinblastine to a P-gp preparation derived from induced Caco-2 cells are described. The concentration-dependent displacement of the radioligand by nonlabeled substrates for P-gp should be a suitable principle for the determination of drug affinity to the respective binding sites at the human intestinal multidrug transporter P-gp.

摘要

与外排转运体P-糖蛋白(P-gp)相互作用可能是药物药代动力学特性的一个来源,这些特性包括剂量依赖性吸收、药物相互作用、肠道分泌以及血脑屏障的通透性受限。在已确立的分析药物与P-gp相互作用的体外方法中,没有一种能直接量化配体与P-gp的亲和力。相反,它们测量的是膜渗透和受体结合过程的结果;这可能导致结果解释上的困难。基于放射性配体结合测定原理,提出了一种定量药物与转运体亲和力的测定方法。这具有直接量化药物与P-gp之间相互作用的优点。由于众多底物与P-gp存在可逆和竞争性相互作用,以[3H]维拉帕米和[3H]长春碱作为放射性配体,通过在长春碱存在下培养或用多药耐药基因MDR-1转染使P-gp过表达的人肠道Caco-2细胞作为受体制备物,开发了一种放射性配体结合测定法。该测定在96孔板中进行,有潜力用作高通量方法。在长春碱存在下生长的Caco-2细胞以及转染细胞中均显示出P-gp表达的明显诱导,尽管程度较小。两种放射性配体均显示与P-gp结合。由于维拉帕米与转运体制备物的非特异性结合较低,因此它是进一步研究的首选放射性配体。证明了维拉帕米与P-gp制备物结合的动力学以及特异性情况。根据先前关于P-gp两个外排位点的研究结果,发现双亲和力模型能够充分描述来自饱和实验以及竞争实验的数据。描述了[3H]维拉帕米和[3H]长春碱与诱导的Caco-2细胞来源的P-gp制备物的结合特性。P-gp的非标记底物对放射性配体的浓度依赖性置换应是测定药物对人肠道多药转运体P-gp各自结合位点亲和力的合适原理。

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