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含甲基喹啉候选药物的两种醛氧化酶介导代谢物的鉴定及人体暴露预测

Identification and human exposure prediction of two aldehyde oxidase-mediated metabolites of a methylquinoline-containing drug candidate.

作者信息

Li Austin C, Cui Donghui, Yu Erya, Dobson Kyle, Hellriegel Edward T, Robertson Philmore

机构信息

a Department of Drug Metabolism and Pharmacokinetics , Teva Pharmaceuticals , West Chester , PA , USA.

出版信息

Xenobiotica. 2019 Mar;49(3):302-312. doi: 10.1080/00498254.2018.1444815. Epub 2018 Mar 14.

Abstract
  1. Aldehyde oxidase (AO enzymes)-mediated oxidation predominantly occurs at a carbon atom adjacent to the nitrogen on aromatic azaheterocycles. In the current report, we identified that AO enzymes oxidation took place at both the C-2 and C-4 positions of the methylquinoline moiety of Compound A based on data from mass spectrometric analysis, AO enzymes "litmus" test, and comparison with authentic standards. 2. To assess the potential for inadequate coverage for these two AO enzyme-mediated metabolites in nonclinical safety studies, given concerns due to differences in AO enzymes expression between preclinical species and humans, the human circulating levels of the two AO enzyme-mediated metabolites were predicted prospectively using in vitro and in vivo models. Both formation clearance and elimination clearance of the two metabolites were predicted based on in vitro to in vivo correlation and comparison with in vivo data from rats. 3. The result showed that the 4-OH metabolite of Compound A would account for less than 3% of the total drug-related exposure in human plasma, while the exposure to the 2-oxo metabolite would be relatively high (∼70%). 4. The predicted human exposure levels for the two metabolites are in similar ranges as those observed in monkeys. These data taken together support the advancement to clinical development of Compound A.
摘要
  1. 醛氧化酶(AO酶)介导的氧化主要发生在芳香氮杂环上与氮相邻的碳原子处。在本报告中,基于质谱分析数据、AO酶“石蕊”试验以及与标准品的比较,我们确定AO酶氧化发生在化合物A的甲基喹啉部分的C-2和C-4位。2. 考虑到临床前物种与人类之间AO酶表达存在差异,为评估非临床安全性研究中这两种AO酶介导的代谢物覆盖不足的可能性,我们使用体外和体内模型前瞻性地预测了这两种AO酶介导的代谢物在人体循环中的水平。基于体外到体内的相关性以及与大鼠体内数据的比较,预测了这两种代谢物的生成清除率和消除清除率。3. 结果表明,化合物A的4-羟基代谢物在人血浆中占总药物相关暴露量的比例不到3%,而2-氧代代谢物的暴露量相对较高(约70%)。4. 预测的这两种代谢物在人体中的暴露水平与在猴子中观察到的水平范围相似。综合这些数据支持化合物A进入临床开发阶段。

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