Pharmaceutical Screening and Informatics, Department of Pharmacy, Uppsala University, Uppsala, Sweden.
Pharmacogenomics J. 2011 Dec;11(6):400-11. doi: 10.1038/tpj.2010.54. Epub 2010 Jun 22.
Common genetic variants of the liver-specific human organic cation transporter 1 (OCT1; SLC22A1) have reduced transport capacity for substrates such as the antidiabetic drug metformin. The effect of the reduced OCT1 function on drug interactions associated with OCT1 has not been investigated and was, therefore, the focus of the study presented here. HEK293 cells expressing human OCT1-reference or the variants R61C, V408M, M420del and G465R were first used to study the kinetics and inhibition pattern of the OCT1 substrate 4-(4-(dimethylamino)styryl)-N-methylpyridinium (ASP(+)). In the second part OCT1-mediated (14)C-metformin uptake was studied in the presence of drugs administered concomitantly with metformin. Transport studies using ASP(+) showed that the function of the variants decreased in the following order: OCT1-reference=V408M=M420del >R61C >>G465R. Variants M420del and R61C were more sensitive to drug inhibition, with IC(50) values up to 23 times lower than those of the OCT1-reference. Uptake studies using (14)C-metformin were in qualitative agreement with those using ASP(+), with the exception that a larger reduction in transport capacity was observed for M420del. Concomitantly administered drugs, such as verapamil and amitriptyline, revealed potential drug-drug interactions at clinical plasma concentrations of metformin for OCT1-M420del.
常见的人类有机阳离子转运蛋白 1(OCT1;SLC22A1)肝脏特异性遗传变异体,其对二甲双胍等抗糖尿病药物的底物的转运能力降低。尚未研究减少的 OCT1 功能对与 OCT1 相关的药物相互作用的影响,因此,这是本研究的重点。首先使用表达人 OCT1-参考变体或变体 R61C、V408M、M420del 和 G465R 的 HEK293 细胞来研究 OCT1 底物 4-(4-(二甲基氨基)苯乙烯基)-N-甲基吡啶鎓(ASP(+))的动力学和抑制模式。在第二部分,研究了在与二甲双胍同时给予药物的情况下,OCT1 介导的(14)C-二甲双胍摄取。使用 ASP(+)进行的转运研究表明,变体的功能按以下顺序降低:OCT1-参考=V408M=M420del >R61C >>G465R。变体 M420del 和 R61C 对药物抑制更敏感,IC50 值比 OCT1-参考值低多达 23 倍。使用(14)C-二甲双胍进行的摄取研究与使用 ASP(+)进行的研究定性一致,除了 M420del 的转运能力观察到更大的降低。在二甲双胍的临床血浆浓度下,同时给予的药物,如维拉帕米和阿米替林,显示出对 OCT1-M420del 的潜在药物相互作用。