Lash Lawrence H, Putt David A, Cai Hongliang
Department of Pharmacology, Wayne State University School of Medicine, 540 East Canfield Avenue, Detroit, MI 48201, United States.
Toxicology. 2006 Dec 7;228(2-3):200-18. doi: 10.1016/j.tox.2006.08.035. Epub 2006 Sep 1.
To further develop primary cultures of human proximal tubular (hPT) cells for study of drug disposition, we determined kinetics and protein expression of several key transporters for organic anions and cations, peptides, and neutral amino acids. p-Aminohippurate uptake exhibited similar kinetics as published values, was inhibited by cephaloridine, cimetidine, methotrexate, and urate, consistent with function of both organic anion transporter 1 (OAT1) and OAT3. Transport rates by organic cation transporters (OCTs) were up to three-fold higher than those of OATs. Of the OCT substrates tested, triethanolamine exhibited the highest transport rates across the basolateral membrane (BLM). OCTN1 exhibited high-affinity, low-capacity BLM transport of l-carnitine. Glycylsarcosine transport by PepT2 was rapid and comparable to that of OCTs. Amino acid System L on the BLM exhibited comparable kinetic parameters for transport of l-leucine as the OATs. Efflux of verapamil across the brush-border membrane by P-glycoprotein was very rapid. Expression of carriers was generally maintained throughout 5 days of culture. Of the four OAT proteins studied (OAT1-4), expression of OAT1 and OAT3 was the most readily detected and exhibited interindividual variation. OCTN2 was the major OCT in hPT cells. Expression was also quantified for multidrug resistance-associated proteins 2 and 5 and P-glycoprotein. These results show that primary cultures of hPT cells express a diverse array of transporters for major classes of important drugs and are suitable for study of drug transport and disposition and assessment of potential drug-drug interactions in human kidney.
为了进一步培养人近端肾小管(hPT)细胞原代培养物以用于药物处置研究,我们测定了几种有机阴离子和阳离子、肽以及中性氨基酸关键转运蛋白的动力学和蛋白表达。对氨基马尿酸摄取表现出与已发表值相似的动力学,受到头孢菌素、西咪替丁、甲氨蝶呤和尿酸盐的抑制,这与有机阴离子转运蛋白1(OAT1)和OAT3的功能一致。有机阳离子转运蛋白(OCTs)的转运速率比OATs高至三倍。在所测试的OCT底物中,三乙醇胺在基底外侧膜(BLM)上表现出最高的转运速率。OCTN1对左旋肉碱表现出高亲和力、低容量的BLM转运。PepT2介导的甘氨酰肌氨酸转运迅速,与OCTs相当。BLM上的氨基酸系统L对L-亮氨酸的转运表现出与OATs相当的动力学参数。维拉帕米通过P-糖蛋白从刷状缘膜的外排非常迅速。在整个5天培养过程中,载体的表达通常得以维持。在所研究的四种OAT蛋白(OAT1 - 4)中,OAT1和OAT3的表达最容易检测到,并且表现出个体间差异。OCTN2是hPT细胞中的主要OCT。还对多药耐药相关蛋白2和5以及P-糖蛋白的表达进行了定量。这些结果表明,hPT细胞原代培养物表达多种重要药物主要类别相关的转运蛋白,适用于药物转运和处置研究以及评估人肾中潜在的药物 - 药物相互作用。