Department of Pharmacy, Kyoto University Hospital, Sakyo-ku, Kyoto, Japan.
J Pharmacol Exp Ther. 2010 Aug;334(2):651-6. doi: 10.1124/jpet.110.169433. Epub 2010 May 19.
Multidrug and toxin extrusion 1 (MATE1/solute carrier 47A1) mediates the transport of not only organic cations but also zwitterions such as cephalexin. However, the contribution of MATE1 to tubular secretion of cephalexin in vivo has not been elucidated. In the present study, we carried out transport experiments of cephalexin via MATE1 and performed pharmacokinetic analyses of cephalexin in Mate1 knockout [Mate1(-/-)] mice. Cephalexin uptake by human MATE1-expressing human embryonic kidney 293 cells exhibited saturable kinetics (K(m) = 5.9 +/- 0.5 mM) and a bell-shaped pH profile with a maximum at pH 7.0. We confirmed that mouse MATE1 also transported cephalexin. After a single intravenous administration of cephalexin (5 mg/kg), Mate1(-/-) mice showed higher plasma concentrations of cephalexin than wild-type [Mate1(+/+)] mice. The urinary excretion of cephalexin for 60 min was significantly reduced, and the renal concentration was markedly increased in Mate1(-/-) mice compared with Mate1(+/+) mice. The renal clearance of cephalexin in Mate1(-/-) mice was approximately 60% of that in Mate1(+/+) mice and seemed to be near the creatinine clearance. In contrast, there were no significant differences between both mice in the pharmacokinetics of anionic cefazolin, which is not a substrate for MATE1. In this study, we demonstrated that MATE1 is responsible for renal tubular secretion of a zwitterionic substrate cephalexin in vivo.
多药和毒素外排蛋白 1(MATE1/溶质载体 47A1)不仅介导有机阳离子的转运,还介导两性离子如头孢氨苄的转运。然而,MATE1 对体内头孢氨苄的管状分泌的贡献尚未阐明。在本研究中,我们进行了通过 MATE1 转运头孢氨苄的实验,并在 Mate1 敲除 [Mate1(-/-)] 小鼠中进行了头孢氨苄的药代动力学分析。人源 MATE1 表达的人胚肾 293 细胞摄取头孢氨苄表现出饱和动力学(Km = 5.9 ± 0.5 mM)和 pH 曲线呈钟形,最大值为 pH 7.0。我们证实小鼠 MATE1 也转运头孢氨苄。单次静脉给予头孢氨苄(5 mg/kg)后,Mate1(-/-) 小鼠的血浆头孢氨苄浓度高于野生型 [Mate1(+/+)] 小鼠。Mate1(-/-) 小鼠的头孢氨苄尿液排泄在 60 分钟内显著减少,肾脏浓度明显高于 Mate1(+/+) 小鼠。Mate1(-/-) 小鼠的头孢氨苄肾清除率约为 Mate1(+/+) 小鼠的 60%,似乎接近肌酐清除率。相比之下,两种小鼠的阴离子头孢唑林的药代动力学没有显著差异,头孢唑林不是 MATE1 的底物。在这项研究中,我们证明 MATE1 负责体内两性离子底物头孢氨苄的肾小管分泌。