Choi Min-Koo, Jin Qing-Ri, Jin Hyo-Eon, Shim Chang-Koo, Cho Doo-Yeoun, Shin Jae-Gook, Song Im-Sook
Department of Pharmaceutics, College of Pharmacy, Seoul National University, Seoul 151-742, Korea.
Biopharm Drug Dispos. 2007 Dec;28(9):501-10. doi: 10.1002/bdd.576.
The study sought to investigate the effects of tetraalkylammonium (TAA), inhibitors of the organic cation transporters (OCTs) with different affinities, on the pharmacokinetics of metformin. The inhibitory potentials of TAAs on the uptake of metformin were evaluated by determining IC(50) values in MDCK cells over-expressing OCTs and, to assess in vivo drug interactions, metformin and TAAs were coadministered to rats. Uptake of metformin was facilitated by over-expression of hOCT1 and hOCT2 and showed saturable processes, indicating that metformin is a substrate of hOCT1 and hOCT2. The IC(50) values of TAAs for hOCT2 were lower than hOCT1 and decreased with increasing alkyl chain length, indicating that the inhibitory potential of TAAs on metformin uptake was greater in hOCT2 than in hOCT1 and increased with increasing alkyl chain length. The plasma concentration of metformin was elevated by the coadministration of tetrapropylammonium (TPrA) and tetrapentylammonium (TPeA), but not by tetramethylammonium (TMA) or tetraethylammonium (TEA). However, the plasma concentrations of TMA, TEA and TPrA were not changed by the coadministration of metformin. In conclusion, in vivo drug interactions between metformin and TAAs were caused only when metformin was coadministered with TAAs showing higher affinities for OCTs.
该研究旨在探究具有不同亲和力的有机阳离子转运体(OCTs)抑制剂四烷基铵(TAA)对二甲双胍药代动力学的影响。通过测定过表达OCTs的MDCK细胞中的IC50值,评估了TAA对二甲双胍摄取的抑制潜力;为了评估体内药物相互作用,将二甲双胍和TAA共同给予大鼠。hOCT1和hOCT2的过表达促进了二甲双胍的摄取,并显示出饱和过程,这表明二甲双胍是hOCT1和hOCT2的底物。TAA对hOCT2的IC50值低于hOCT1,且随着烷基链长度的增加而降低,这表明TAA对二甲双胍摄取的抑制潜力在hOCT2中比在hOCT1中更大,且随着烷基链长度的增加而增加。同时给予四丙基铵(TPrA)和四戊基铵(TPeA)可提高二甲双胍的血浆浓度,但给予四甲基铵(TMA)或四乙铵(TEA)则不会。然而,同时给予二甲双胍不会改变TMA、TEA和TPrA的血浆浓度。总之,仅当二甲双胍与对OCTs具有更高亲和力的TAA共同给药时,才会引起二甲双胍与TAA之间的体内药物相互作用。