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人多药及毒素外排蛋白1在西咪替丁与二甲双胍在肾上皮细胞中的药物相互作用中的作用。

Involvement of human multidrug and toxin extrusion 1 in the drug interaction between cimetidine and metformin in renal epithelial cells.

作者信息

Tsuda Masahiro, Terada Tomohiro, Ueba Miki, Sato Tomoko, Masuda Satohiro, Katsura Toshiya, Inui Ken-ichi

机构信息

Department of Pharmacy, Kyoto University Hospital, Sakyo-ku, Kyoto 606-8507, Japan.

出版信息

J Pharmacol Exp Ther. 2009 Apr;329(1):185-91. doi: 10.1124/jpet.108.147918. Epub 2009 Jan 22.

Abstract

In human proximal tubules, organic cations are taken up from blood into cells by human organic cation transporter 2 [hOCT2/solute carrier (SLC) 22A2] and then eliminated into the lumen by apical H(+)/organic cation antiporters, human multidrug and toxin extrusion 1 (hMATE1/SLC47A1) and hMATE2-K (SLC47A2). To evaluate drug interactions of cationic drugs in the secretion process, epithelial cells engineered to express both hOCT2 and hMATE transporters are required to simultaneously evaluate drug interactions with renal basolateral and apical organic cation transporters. In the present study, therefore, we assessed the drug interaction between cimetidine and metformin with double-transfected Madin-Darby canine kidney cells stably expressing both hOCT2 and hMATE1 as an in vitro model of the proximal tubular epithelial cells. The basolateral-to-apical transport and intracellular accumulation of [(14)C]metformin by a double transfectant were markedly inhibited by 1 mM cimetidine at the basolateral side. On the other hand, 1 microM cimetidine at the basolateral side moderately decreased the basolateral-to-apical transport of [(14)C]metformin and significantly increased the intracellular accumulation of [(14)C]metformin from the basolateral side, suggesting that cimetidine at a low concentration inhibits apical hMATE1, rather than basolateral hOCT2. Actually, in concentration-dependent inhibition studies by a single transporter expression system, such as human embryonic kidney 293 stably expressing hMATE1, hMATE2-K, or hOCT2, cimetidine showed higher affinity for hMATEs than for hOCT2. These results suggest that apical hMATE1 is involved in drug interactions between cimetidine and cationic compounds in the proximal tubular epithelial cells.

摘要

在人近端小管中,有机阳离子通过人有机阳离子转运体2 [hOCT2/溶质载体(SLC) 22A2]从血液摄取到细胞内,然后通过顶端H(+)/有机阳离子反向转运体、人多药和毒素外排蛋白1 (hMATE1/SLC47A1)和hMATE2-K (SLC47A2)排入管腔。为了评估阳离子药物在分泌过程中的药物相互作用,需要构建同时表达hOCT2和hMATE转运体的上皮细胞,以同时评估药物与肾基底外侧和顶端有机阳离子转运体的相互作用。因此,在本研究中,我们评估了西咪替丁和二甲双胍在稳定表达hOCT2和hMATE1的双转染Madin-Darby犬肾细胞中的药物相互作用,以此作为近端小管上皮细胞的体外模型。在基底外侧给予1 mM西咪替丁可显著抑制双转染细胞对[(14)C]二甲双胍的基底外侧到顶端转运及细胞内蓄积。另一方面,在基底外侧给予1 μM西咪替丁可适度降低[(14)C]二甲双胍的基底外侧到顶端转运,并显著增加[(14)C]二甲双胍从基底外侧的细胞内蓄积,提示低浓度西咪替丁抑制顶端hMATE1,而非基底外侧hOCT2。实际上,在单转运体表达系统(如稳定表达hMATE1、hMATE2-K或hOCT2的人胚肾293细胞)进行的浓度依赖性抑制研究中,西咪替丁对hMATEs的亲和力高于hOCT2。这些结果表明,顶端hMATE1参与了近端小管上皮细胞中西咪替丁与阳离子化合物之间的药物相互作用。

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