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参与雷沙托维代谢物 4-氨基-3-氯苯硫酸氢盐在大鼠和犬肾摄取的有机阴离子转运体的种属差异。

Species differences of organic anion transporters involved in the renal uptake of 4-amino-3-chlorophenyl hydrogen sulfate, a metabolite of resatorvid, between rats and dogs.

机构信息

Drug Metabolism and Pharmacokinetics Research Laboratories, Pharmaceutical Research Division, Takeda Pharmaceutical Co. Ltd, 26-1, Muraoka-Higashi 2-chome, Fujisawa, Kanagawa, Japan. Takeuchi_

出版信息

Biopharm Drug Dispos. 2013 May;34(4):236-46. doi: 10.1002/bdd.1841. Epub 2013 May 7.

Abstract

Previous studies on the metabolic fate of resatorvid (TAK-242) have shown that species differences in the pharmacokinetics of 4-amino-3-chlorophenyl hydrogen sulfate (M-III), a metabolite of TAK-242, between rats and dogs are mainly attributable to the urinary excretion process. In the present study, the renal uptake mechanism of M-III was investigated using kidney slices and Xenopus laevis oocytes expressing rat organic anion transporter 1 (rOat1; Slc22a6) and rOat3 (Slc22a8). The uptake of p-aminohippuric acid (PAH), a substrate for Oats, by kidney slices from rats and dogs increased at 37 °C and M-III inhibited the uptake. The initial uptake clearance of M-III by rat kidney slices was 0.295 and 0.0114 ml/min/g at 37 °C and 4 °C, respectively. The Eadie-Hofstee plot of M-III uptake at 37 °C revealed two-component transport processes with K(m) values being 6.48 and 724 µmol/l. The uptake was inhibited by probenecid (PBC), PAH and benzylpenicillin (PCG). In contrast, in dog kidney slices, the initial uptake clearance of M-III was 8.70 × 10(-3) and 9.00 × 10(-3) ml/min/g at 37 °C and 4 °C, respectively, and the uptake was not inhibited by PBC. Furthermore, rOat1- and rOat3-expressing oocytes mediated M-III uptake and the uptake was inhibited by PAH and PCG, respectively. These results suggest that rOat1 and rOat3 are responsible for the renal uptake of M-III in rats. Moreover, it is speculated that Oat(s) is unable to transport M-III in dogs and that the difference in the substrate recognition of Oat(s) contributes to the species difference in the pharmacokinetics of M-III between rats and dogs.

摘要

先前关于雷沙托维(TAK-242)代谢命运的研究表明,大鼠和犬之间 TAK-242 代谢物 4-氨基-3-氯苯硫酸氢盐(M-III)药代动力学的种属差异主要归因于尿排泄过程。在本研究中,使用肾切片和表达大鼠有机阴离子转运蛋白 1(rOat1;Slc22a6)和 rOat3(Slc22a8)的非洲爪蟾卵母细胞研究了 M-III 的肾摄取机制。大鼠和犬肾切片对苯甲酰基精氨酸(PAH)的摄取在 37°C 时增加,并且 M-III 抑制了摄取。在 37°C 和 4°C 下,大鼠肾切片中 M-III 的初始摄取清除率分别为 0.295 和 0.0114 ml/min/g。37°C 时 M-III 摄取的 Eadie-Hofstee 图显示了两种成分的转运过程,K(m) 值分别为 6.48 和 724 µmol/l。摄取被丙磺舒(PBC)、PAH 和青霉素 G(PCG)抑制。相比之下,在犬肾切片中,M-III 的初始摄取清除率分别为 37°C 和 4°C 下的 8.70×10(-3)和 9.00×10(-3)ml/min/g,并且 PBC 不抑制摄取。此外,rOat1 和 rOat3 表达的卵母细胞介导 M-III 的摄取,摄取分别被 PAH 和 PCG 抑制。这些结果表明 rOat1 和 rOat3 负责大鼠中 M-III 的肾摄取。此外,推测 Oat(s) 不能在犬中转运 M-III,并且 Oat(s) 的底物识别差异导致大鼠和犬之间 M-III 药代动力学的种属差异。

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