Bhardwaj Rajinder K, Herrera-Ruiz Dea, Sinko Patrick J, Gudmundsson Olafur S, Knipp Gregory
Department of Pharmaceutics, Ernest Mario School of Pharmacy, Rutgers, NJ 08854-8022, USA.
J Pharmacol Exp Ther. 2005 Sep;314(3):1093-100. doi: 10.1124/jpet.105.087148. Epub 2005 May 18.
In the present investigation, the uptake and transport kinetics of valacyclovir (VACV), 5-aminolevulinic acid (5-ALA), and benzylpenicillin (BENZ) were studied in stably transfected Madin-Darby canine kidney (MDCK)/human peptide transporter 1 (hPepT1)-V5&His clonal cell lines expressing varying levels of epitope-tagged hPepT1 protein (low, medium, and high expression) and in Caco-2 cells to delineate hPepT1-mediated transport kinetics. These compounds were selected due to the fact that they are known PepT1 substrates, yet also have affinity for other transporters. Caco-2 cells, traditionally used for studying peptide-based drug transport, were included for comparison purposes. The time, pH, sodium, and concentration dependence of cellular uptake and permeability were measured using mock, clonal hPepT1-MDCK, and Caco-2 cells. A pH-dependent effect was observed in the hPepT1-expressing clones and Caco-2 cells, with an increase of 1.96-, 1.84-, and 2.05-fold for VACV, 5-ALA, and BENZ uptake, respectively, at pH 6 versus 7.4 in the high-expressing hPepT1 cells. BENZ uptake was significantly decreased in Caco-2 and MDCK cells in Na(+)-depleted buffer, whereas VACV uptake only decreased in Caco-2 cells. Concentration-dependent uptake studies in the mock-corrected hPepT1-MDCK and Caco-2 cells demonstrated hPepT1 affinity ranking of VACV > 5-ALA > BENZ. The apical-to-basal apparent permeability coefficient (P(app)) values of VACV, 5-ALA, and BENZ in mock-corrected hPepT1-MDCK cells showed solely hPepT1-mediated transport in contrast to Caco-2 cells. Lower K(m) values and higher P(app) in Caco-2 cells compared with hPepT1-MDCK cells suggested the involvement of multiple transporters in Caco-2 cells. Thus, hPepT1-MDCK cells corrected for endogenous transporter expression may be a more appropriate model for screening compounds for their affinity to hPepT1.
在本研究中,在稳定转染的表达不同水平表位标记的人肽转运体1(hPepT1)蛋白(低、中、高表达)的Madin-Darby犬肾(MDCK)/人肽转运体1(hPepT1)-V5&His克隆细胞系以及Caco-2细胞中研究了伐昔洛韦(VACV)、5-氨基酮戊酸(5-ALA)和苄青霉素(BENZ)的摄取和转运动力学,以描绘hPepT1介导的转运动力学。选择这些化合物是因为它们是已知的PepT1底物,但对其他转运体也有亲和力。传统上用于研究基于肽的药物转运的Caco-2细胞被纳入用于比较目的。使用mock、克隆的hPepT1-MDCK和Caco-2细胞测量细胞摄取和通透性的时间、pH、钠和浓度依赖性。在表达hPepT1的克隆细胞和Caco-2细胞中观察到pH依赖性效应,在高表达hPepT1细胞中,pH 6时VACV、5-ALA和BENZ摄取分别比pH 7.4时增加1.96倍、1.84倍和2.05倍。在无钠缓冲液中,Caco-2和MDCK细胞中BENZ摄取显著降低,而VACV摄取仅在Caco-2细胞中降低。在经mock校正的hPepT1-MDCK和Caco-2细胞中的浓度依赖性摄取研究表明,VACV > 5-ALA > BENZ的hPepT1亲和力排序。与Caco-2细胞相比,经mock校正的hPepT1-MDCK细胞中VACV、5-ALA和BENZ的顶侧到基底的表观渗透系数(P(app))值仅显示hPepT1介导的转运。与hPepT1-MDCK细胞相比,Caco-2细胞中较低的K(m)值和较高的P(app)值表明Caco-2细胞中存在多种转运体参与。因此,针对内源性转运体表达进行校正的hPepT1-MDCK细胞可能是筛选化合物对hPepT1亲和力的更合适模型。