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利用转染人或大鼠肝细胞的嵌合小鼠预测 FK3453 在人肝中的代谢情况。

Prediction of human metabolism of FK3453 by aldehyde oxidase using chimeric mice transplanted with human or rat hepatocytes.

机构信息

Graduate School of Biomedical Sciences, Hiroshima University, Kasumi 1-2-3, Minami-ku, Hiroshima 734-8553 Japan.

出版信息

Drug Metab Dispos. 2012 Jan;40(1):76-82. doi: 10.1124/dmd.111.041954. Epub 2011 Oct 7.

Abstract

During drug development, it is important to predict the activities of multiple metabolic enzymes, not only cytochrome P450 (P450) but also non-P450 enzymes, such as conjugative enzymes and aldehyde oxidase (AO). In this study, we focused on prediction of AO-mediated human metabolism and pharmacokinetics (PK) of 6-(2-amino-4-phenylpyrimidine-5-yl)-2-isopropylpyridazin-3(2H)-one (FK3453) (Astellas Pharma Inc.), the development of which was suspended due to extremely low exposure in human, despite good oral bioavailability in rat and dog. We examined species difference in oxidative metabolism of the aminopyrimidine moiety of FK3453, catalyzed by AO, using human-chimeric mice with humanized liver (h-PXB mice) and rat-chimeric mice (r-PXB mice) transplanted with rat hepatocytes. AO activity of h-PXB mouse hepatocytes was higher than that of r-PXB mouse hepatocytes. Moreover, higher concentrations of human-specific AO-generated FK3453 metabolite A-M were detected in urine and feces after administration of FK3453 to h-PXB mice versus r-PXB mice. The total clearance of h-PXB mice was 2-fold higher than that of r-PXB mice. These results agreed reasonably well with the metabolism and PK profiles of FK3453 in human and rat. Our results indicated that h-PXB mice should be helpful for predicting the metabolic profile of drugs in humans, and the use of both h-PXB and r-PXB mice should be helpful for evaluation of species differences of AO metabolic activity.

摘要

在药物开发过程中,预测多种代谢酶的活性非常重要,不仅包括细胞色素 P450(P450),还包括非 P450 酶,如结合酶和醛氧化酶(AO)。在这项研究中,我们专注于预测 AO 介导的人代谢和 6-(2-氨基-4-苯基嘧啶-5-基)-2-异丙基哒嗪-3(2H)-酮(FK3453)(安斯泰来制药公司)的药代动力学(PK),尽管在大鼠和狗中具有良好的口服生物利用度,但由于在人体中的暴露量极低,该药物的开发已被暂停。我们使用人源化肝脏的人-嵌合小鼠(h-PXB 小鼠)和移植大鼠肝细胞的大鼠-嵌合小鼠(r-PXB 小鼠),研究了 FK3453 的氨基嘧啶部分被 AO 催化的氧化代谢的种属差异。h-PXB 小鼠肝细胞的 AO 活性高于 r-PXB 小鼠肝细胞。此外,在 h-PXB 小鼠中给予 FK3453 后,在尿液和粪便中检测到更高浓度的人特异性 AO 生成的 FK3453 代谢物 A-M。h-PXB 小鼠的总清除率是 r-PXB 小鼠的 2 倍。这些结果与 FK3453 在人体和大鼠中的代谢和 PK 谱相当吻合。我们的结果表明,h-PXB 小鼠有助于预测药物在人体中的代谢特征,并且使用 h-PXB 和 r-PXB 小鼠有助于评估 AO 代谢活性的种属差异。

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