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钠依赖性多种维生素转运体在MDCK-MDR1细胞中的功能特性及其作为药物递送靶点的应用。

Functional characterization of sodium-dependent multivitamin transporter in MDCK-MDR1 cells and its utilization as a target for drug delivery.

作者信息

Luo Shuanghui, Kansara Viral S, Zhu Xiaodong, Mandava Nanda K, Pal Dhananjay, Mitra Ashim K

机构信息

Division of Pharmaceutical Science, School of Pharmacy, University of Missouri-Kansas City, 5005 Rockhill Road, Kansas City, Missouri 64110-2499, USA.

出版信息

Mol Pharm. 2006 May-Jun;3(3):329-39. doi: 10.1021/mp0500768.

Abstract

The objective of this research is to characterize a sodium-dependent multivitamin transporter (SMVT) in MDCK-MDR1 cells (Madin-Darby canine kidney cells transfected with the human MDR1 gene) and to investigate the feasibility of utilizing the MDCK-MDR1 cell line as an in vitro model to study the permeability of biotin-conjugated prodrugs of anti-HIV protease inhibitors. Mechanism of [3H]biotin uptake and transport was delineated. Transepithelial permeability of the biotin-conjugated prodrug, i.e., biotin-saquinavir, was also studied. Reverse transcription polymerase chain reaction (RT-PCR) was carried out to confirm the existence of SMVT in MDCK-MDR1 cells. Biotin uptake was Na+, pH, and temperature dependent, but energy independent. Uptake of biotin was found to be saturable with a Km of 13.0 microM, Vmax 21.5 of pmol min-1 (mg of protein)-1, and Kd of 0.12 microL min-1 (mg of protein)-1. Both apical and basal uptake and transepithelial transport of [3H]biotin showed that SMVT localized predominantly on the apical membrane of MDCK-MDR1 cells. [3H]Biotin uptake was inhibited by excess unlabeled biotin and its structural analogues, i.e., desthiolbiotin and valeric acid, and other vitamins such as lipoic acid and pantothenic acid, but not by acetic acid, benzoic acid, biotin methyl ester, and biocytin. Biotin-saquinavir caused lowering of [3H]biotin uptake, which indicates that it is recognized by SMVT. Apical to basal transport of [3H]biotin was also significantly inhibited in the presence of excess biotin or biotin-saquinavir. Transepithelial transport studies of biotin-saquinavir in MDCK-MDR1, wild type MDCK, and Caco-2 cells revealed that permeability of biotin-saquinavir was similar in all three cell lines. A band of SMVT mRNA at 862 bp was identified by RT-PCR. A sodium-dependent multivitamin transporter, SMVT, responsible for biotin uptake and transport, was identified and functionally characterized in MDCK-MDR1 cells. Therefore, the MDCK-MDR1 cell line may be utilized as an in vitro model to study the permeability of biotin-conjugated prodrugs such as HIV protease inhibitors.

摘要

本研究的目的是对MDCK-MDR1细胞(转染了人MDR1基因的Madin-Darby犬肾细胞)中的钠依赖性多种维生素转运体(SMVT)进行表征,并研究利用MDCK-MDR1细胞系作为体外模型来研究抗HIV蛋白酶抑制剂的生物素共轭前药通透性的可行性。阐述了[3H]生物素摄取和转运的机制。还研究了生物素共轭前药即生物素-沙奎那韦的跨上皮通透性。进行逆转录聚合酶链反应(RT-PCR)以确认MDCK-MDR1细胞中SMVT的存在。生物素摄取依赖于Na+、pH和温度,但不依赖能量。发现生物素摄取具有饱和性,Km为13.0 microM,Vmax为21.5 pmol min-1(mg蛋白质)-1,Kd为0.12 microL min-1(mg蛋白质)-1。[3H]生物素的顶端和基底摄取以及跨上皮转运均表明SMVT主要定位于MDCK-MDR1细胞的顶端膜上。[3H]生物素摄取受到过量未标记生物素及其结构类似物即脱硫生物素和戊酸以及其他维生素如硫辛酸和泛酸的抑制,但不受乙酸、苯甲酸、生物素甲酯和生物胞素的抑制。生物素-沙奎那韦导致[3H]生物素摄取降低,这表明它被SMVT识别。在存在过量生物素或生物素-沙奎那韦的情况下,[3H]生物素从顶端到基底的转运也受到显著抑制。在MDCK-MDR1、野生型MDCK和Caco-2细胞中对生物素-沙奎那韦进行的跨上皮转运研究表明,生物素-沙奎那韦在所有三种细胞系中的通透性相似。通过RT-PCR鉴定出一条862 bp的SMVT mRNA条带。在MDCK-MDR1细胞中鉴定并对负责生物素摄取和转运的钠依赖性多种维生素转运体SMVT进行了功能表征。因此,MDCK-MDR1细胞系可作为体外模型用于研究生物素共轭前药如HIV蛋白酶抑制剂的通透性。

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