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使用人源化嵌合小鼠和半生理药代动力学模型模拟部分葡萄糖激酶激活剂PF-04937319及其不成比例的N-去甲基代谢物的人血浆浓度-时间曲线。

Simulation of human plasma concentration-time profiles of the partial glucokinase activator PF-04937319 and its disproportionate N-demethylated metabolite using humanized chimeric mice and semi-physiological pharmacokinetic modeling.

作者信息

Kamimura Hidetaka, Ito Satoshi, Chijiwa Hiroyuki, Okuzono Takeshi, Ishiguro Tomohiro, Yamamoto Yosuke, Nishinoaki Sho, Ninomiya Shin-Ichi, Mitsui Marina, Kalgutkar Amit S, Yamazaki Hiroshi, Suemizu Hiroshi

机构信息

a Drug Development Solutions Division, Sekisui Medical Co., Ltd. , Tokyo , Japan.

b Laboratory Animal Research Department , Central Institute for Experimental Animals, Kawasaki , Kanagawa , Japan.

出版信息

Xenobiotica. 2017 May;47(5):382-393. doi: 10.1080/00498254.2016.1199063. Epub 2016 Jul 7.

Abstract

1. The partial glucokinase activator N,N-dimethyl-5-((2-methyl-6-((5-methylpyrazin-2-yl)carbamoyl)benzofuran-4-yl)oxy)pyrimidine-2-carboxamide (PF-04937319) is biotransformed in humans to N-methyl-5-((2-methyl-6-((5-methylpyrazin-2-yl)carbamoyl)benzofuran-4-yl)oxy)pyrimidine-2-carboxamide (M1), accounting for ∼65% of total exposure at steady state. 2. As the disproportionately abundant nature of M1 could not be reliably predicted from in vitro metabolism studies, we evaluated a chimeric mouse model with humanized liver on TK-NOG background for its ability to retrospectively predict human disposition of PF-04937319. Since livers of chimeric mice were enlarged by hyperplasia and contained remnant mouse hepatocytes, hepatic intrinsic clearances normalized for liver weight, metabolite formation and liver to plasma concentration ratios were plotted against the replacement index by human hepatocytes and extrapolated to those in the virtual chimeric mouse with 100% humanized liver. 3. Semi-physiological pharmacokinetic analyses using the above parameters revealed that simulated concentration curves of PF-04937319 and M1 were approximately superimposed with the observed clinical data in humans. 4. Finally, qualitative profiling of circulating metabolites in humanized chimeric mice dosed with PF-04937319 or M1 also revealed the presence of a carbinolamide metabolite, identified in the clinical study as a human-specific metabolite. The case study demonstrates that humanized chimeric mice may be potentially useful in preclinical discovery towards studying disproportionate or human-specific metabolism of drug candidates.

摘要
  1. 部分葡萄糖激酶激活剂N,N-二甲基-5-((2-甲基-6-((5-甲基吡嗪-2-基)氨基甲酰基)苯并呋喃-4-基)氧基)嘧啶-2-甲酰胺(PF-04937319)在人体内生物转化为N-甲基-5-((2-甲基-6-((5-甲基吡嗪-2-基)氨基甲酰基)苯并呋喃-4-基)氧基)嘧啶-2-甲酰胺(M1),在稳态时占总暴露量的约65%。2. 由于无法从体外代谢研究可靠预测M1不成比例的丰富性质,我们评估了一种在TK-NOG背景下具有人源化肝脏的嵌合小鼠模型,以回顾性预测PF-04937319在人体内的处置情况。由于嵌合小鼠的肝脏因增生而肿大且含有残余的小鼠肝细胞,将肝脏重量标准化的肝脏内在清除率、代谢物形成以及肝脏与血浆浓度比与人类肝细胞的替代指数作图,并外推至具有100%人源化肝脏的虚拟嵌合小鼠中的情况。3. 使用上述参数进行的半生理药代动力学分析表明,PF-04937319和M1的模拟浓度曲线与在人体中观察到的临床数据大致重叠。4. 最后,对用PF-04937319或M1给药的人源化嵌合小鼠中循环代谢物的定性分析还揭示了一种甲醇酰胺代谢物的存在,在临床研究中该代谢物被鉴定为一种人类特异性代谢物。该案例研究表明,人源化嵌合小鼠在临床前发现中对于研究候选药物的不成比例或人类特异性代谢可能具有潜在用途。

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