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OCT2 和 MATE1 对西咪替丁-二甲双胍相互作用的重要性:从单转染和双转染 MDCK 细胞中极性转运的研究中获得的见解,重点关注引发剂处置。

Importance of OCT2 and MATE1 for the Cimetidine-Metformin Interaction: Insights from Investigations of Polarized Transport in Single- And Double-Transfected MDCK Cells with a Focus on Perpetrator Disposition.

机构信息

Institute of Experimental and Clinical Pharmacology and Toxicology , Friedrich-Alexander-Universität Erlangen-Nürnberg , Fahrstrasse 17 , 91054 Erlangen , Germany.

R&D, Drug Metabolism and Pharmacokinetics , Sanofi-Aventis Deutschland GmbH , 65926 Frankfurt am Main , Germany.

出版信息

Mol Pharm. 2018 Aug 6;15(8):3425-3433. doi: 10.1021/acs.molpharmaceut.8b00416. Epub 2018 Jul 19.

Abstract

Cimetidine decreases the renal clearance of metformin by inhibition of renal tubular cation transport, and the underlying molecular mechanisms are still not fully understood. We investigated polarized metformin transport without and with the addition of cimetidine as well as polarized cimetidine transport in double-transfected MDCK-OCT2-MATE1 cells that mimic organic cation transport processes in proximal renal tubule cells and in MDCK vector control and single-transfected MDCK-OCT2 and MDCK-MATE1 cells. At all tested concentrations (1, 10, 100 μM), the intracellular accumulation of cimetidine after administration to the basal compartment was considerably higher in MDCK-OCT2 cells compared to that in all other cells ( p < 0.001). Whereas cimetidine transcellular, basal-to-apical transport was only slightly higher in MDCK-OCT2 cells, the presence of MATE1 in the apical membrane caused a pronounced translocation of cimetidine in both single- and double-transfected cells ( p < 0.001). Transcellular, basal-to-apical metformin net transport was reduced by 89.1, 74.5, and 91.0% in MDCK-OCT2-MATE1 cells after the addition of cimetidine (100 μM) to the basal, the apical, or both compartments ( p < 0.001). In MDCK-MATE1 and MDCK-OCT2-MATE1 cells, transcellular net transport of metformin was inhibited by cimetidine with IC values of 8.0 and 6.6 μM, respectively. Our data confirm the relevance of MATE1 and suggest the relevance of OCT2 for the cimetidine-metformin interaction, primarily because OCT2 mediates uptake of the perpetrator cimetidine into renal proximal tubular cells and thereby to the site of the metformin exporter MATE1. This work supports the notion that a thorough understanding of transporter-mediated drug-drug interactions may require investigations on the impact of transporters on cellular uptake and transcellular transport of victim as well as perpetrator drugs.

摘要

西咪替丁通过抑制肾小管阳离子转运来降低二甲双胍的肾清除率,但其潜在的分子机制尚不完全清楚。我们研究了无西咪替丁和添加西咪替丁时的极化二甲双胍转运,以及在双转染 MDCK-OCT2-MATE1 细胞中的极化西咪替丁转运,这些细胞模拟了近端肾小管细胞中的有机阳离子转运过程,以及在 MDCK 载体对照和单转染 MDCK-OCT2 和 MDCK-MATE1 细胞中的极化二甲双胍转运。在所有测试浓度(1、10、100μM)下,西咪替丁给药后基底隔室细胞内的西咪替丁积累明显高于所有其他细胞(p<0.001)。虽然西咪替丁的跨细胞、基底到顶端转运在 MDCK-OCT2 细胞中仅略高,但在顶膜中存在 MATE1 会导致西咪替丁在单转和双转染细胞中的明显易位(p<0.001)。在添加西咪替丁(100μM)到基底、顶端或两者隔室后,MDCK-OCT2-MATE1 细胞中西咪替丁的跨细胞、基底到顶端二甲双胍净转运分别减少了 89.1%、74.5%和 91.0%(p<0.001)。在 MDCK-MATE1 和 MDCK-OCT2-MATE1 细胞中西咪替丁对二甲双胍的跨细胞净转运的抑制 IC50 值分别为 8.0 和 6.6μM。我们的数据证实了 MATE1 的相关性,并表明了 OCT2 对西咪替丁-二甲双胍相互作用的相关性,主要是因为 OCT2 将引发剂西咪替丁介导到肾近端肾小管细胞中,并因此到达二甲双胍外排泵 MATE1 的部位。这项工作支持了这样一种观点,即对转运体介导的药物相互作用的透彻理解可能需要研究转运体对受者和引发剂药物的细胞摄取和跨细胞转运的影响。

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