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在表达人类有机阳离子转运体hOCT1/hMATE1和hOCT2/hMATE1的双转染MDCK细胞中有机阳离子的跨细胞转运

Transcellular transport of organic cations in double-transfected MDCK cells expressing human organic cation transporters hOCT1/hMATE1 and hOCT2/hMATE1.

作者信息

Sato Tomoko, Masuda Satohiro, Yonezawa Atsushi, Tanihara Yuko, Katsura Toshiya, Inui Ken-Ichi

机构信息

Department of Pharmacy, Kyoto University Hospital, Faculty of Medicine, Sakyo-ku, Kyoto 606-507, Japan.

出版信息

Biochem Pharmacol. 2008 Oct 1;76(7):894-903. doi: 10.1016/j.bcp.2008.07.005. Epub 2008 Jul 12.

Abstract

To clarify the transcellular transport of organic cations via basolateral and apical transporters, we established double-transfected Madin-Darby canine kidney (MDCK) cells expressing both human organic cation transporter hOCT1 and hMATE1 (MDCK-hOCT1/hMATE1), and hOCT2 and hMATE1 (MDCK-hOCT2/hMATE1) as models of human hepatocytes and renal epithelial cells, respectively. Using the specific antibodies, hOCT1 and hMATE1 or hOCT2 and hMATE1 were found to be localized in the basolateral and apical membranes of MDCK-hOCT1/hMATE1 or MDCK-hOCT2/hMATE1 cells, respectively. A representative substrate, [14C]tetraethylammonium, was transported unidirectionally from the basolateral to apical side in these double transfectants. The optimal pH was showed to be 6.5 for the transcellular transport of [14C]tetraethylammonium, when the pH of the incubation medium on the apical side was varied from 5.5 to 8.5. The basolateral-to-apical transport also decreased in the presence of 10 mM 1-methyl-4-phenylpyridinium or 1 mM levofloxacin on the basolateral side of both double transfectants. In MDCK-hOCT2/hMATE1 cell monolayers, but not in MDCK-hOCT1/hMATE1 cell monolayers, the accumulation of [14C]tetraethylammonium was decreased in the presence of 10 mM 1-methyl-4-phenylpyridinium, but significantly increased in the presence of 1 mM levofloxacin. The uptake of [14C]tetraethylammonium, [3H]1-methyl-4-phenylpyridinium, [14C]metformin and [3H]cimetidine, but not of [14C]procainamide and [3H]quinidine, by HEK293 cells was stimulated by expression of the hOCT1, hOCT2 or hMATE1 compared to control cells. However, transcellular transport of [14C]procainamide and [3H]quinidine was clearly observed in both double-transfectants. These cells could be useful for examining the routes by which compounds are eliminated, or predicting transporter-mediated drug interaction.

摘要

为阐明有机阳离子通过基底外侧和顶端转运体的跨细胞转运,我们构建了双转染的犬肾Madin-Darby细胞(MDCK),分别表达人有机阳离子转运体hOCT1和hMATE1(MDCK-hOCT1/hMATE1)以及hOCT2和hMATE1(MDCK-hOCT2/hMATE1),作为人肝细胞和肾上皮细胞的模型。使用特异性抗体发现,hOCT1和hMATE1或hOCT2和hMATE1分别定位于MDCK-hOCT1/hMATE1或MDCK-hOCT2/hMATE1细胞的基底外侧膜和顶端膜。一种代表性底物[14C]四乙铵在这些双转染细胞中从基底外侧单向转运至顶端。当顶端孵育培养基的pH值在5.5至8.5之间变化时,[14C]四乙铵跨细胞转运的最佳pH值为6.5。在两种双转染细胞的基底外侧存在10 mM 1-甲基-4-苯基吡啶鎓或1 mM左氧氟沙星时基底外侧至顶端的转运也会减少。在MDCK-hOCT2/hMATE1细胞单层中,而不是在MDCK-hOCT1/hMATE1细胞单层中,10 mM 1-甲基-4-苯基吡啶鎓存在时[14C]四乙铵的积累减少,但1 mM左氧氟沙星存在时显著增加。与对照细胞相比,hOCT1、hOCT2或hMATE1的表达刺激了HEK293细胞对[14C]四乙铵、[3H]1-甲基-4-苯基吡啶鎓、[14C]二甲双胍和[3H]西咪替丁的摄取,但对[14C]普鲁卡因胺和[3H]奎尼丁的摄取无刺激作用。然而,在两种双转染细胞中均清楚地观察到了[14C]普鲁卡因胺和[3H]奎尼丁的跨细胞转运。这些细胞可用于研究化合物的消除途径或预测转运体介导的药物相互作用。

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