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尿液代谢物谱分析揭示了CYP1A2介导的NSC686288(氨基黄酮)代谢。

Urinary metabolite profiling reveals CYP1A2-mediated metabolism of NSC686288 (aminoflavone).

作者信息

Chen Chi, Meng Linghua, Ma Xiaochao, Krausz Kristopher W, Pommier Yves, Idle Jeffrey R, Gonzalez Frank J

机构信息

Laboratory of Metabolism, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

J Pharmacol Exp Ther. 2006 Sep;318(3):1330-42. doi: 10.1124/jpet.106.105213. Epub 2006 Jun 14.

Abstract

NSC686288 [aminoflavone (AF)], a candidate chemotherapeutic agent, possesses a unique antiproliferative profile against tumor cells. Metabolic bioactivation of AF by drug-metabolizing enzymes, especially CYP1A monooxygenases, has been implicated as an underlying mechanism for its selective cytotoxicity in several cell culture-based studies. However, in vivo metabolism of AF has not been investigated in detail. In this study, the structural identities of 13 AF metabolites (12 of which are novel) in mouse urine or from microsomal incubations, including three monohydroxy-AFs, two dihydroxy-AFs and their sulfate and glucuronide conjugates, as well as one N-glucuronide, were determined by accurate mass measurements and liquid chromatography-tandem mass spectrometry fragmentation patterns, and a comprehensive map of the AF metabolic pathways was constructed. Significant differences between wild-type and Cyp1a2-null mice, within the relative composition of urinary metabolites of AF, demonstrated that CYP1A2-mediated regioselective oxidation was a major contributor to the metabolism of AF. Comparisons between wild-type and CYP1A2-humanized mice further revealed interspecies differences in CYP1A2-mediated catalytic activity. Incubation of AF with liver microsomes from all three mouse lines and with pooled human liver microsomes confirmed the observations from urinary metabolite profiling. Results from enzyme kinetic analysis further indicated that in addition to CYP1A P450s, CYP2C P450s may also play some role in the metabolism of AF.

摘要

NSC686288[氨基黄酮(AF)]是一种候选化疗药物,对肿瘤细胞具有独特的抗增殖特性。在一些基于细胞培养的研究中,药物代谢酶,尤其是CYP1A单加氧酶对AF的代谢生物活化被认为是其选择性细胞毒性的潜在机制。然而,AF的体内代谢尚未得到详细研究。在本研究中,通过精确质量测量和液相色谱-串联质谱裂解模式确定了小鼠尿液或微粒体孵育物中13种AF代谢物(其中12种是新的)的结构特征,包括三种单羟基-AF、两种二羟基-AF及其硫酸盐和葡萄糖醛酸共轭物,以及一种N-葡萄糖醛酸,构建了AF代谢途径的综合图谱。野生型小鼠和Cyp1a2基因敲除小鼠在AF尿液代谢物相对组成上的显著差异表明,CYP1A2介导的区域选择性氧化是AF代谢的主要贡献者。野生型小鼠和CYP1A2人源化小鼠之间的比较进一步揭示了CYP1A2介导的催化活性的种间差异。将AF与所有三种小鼠品系的肝微粒体以及汇集的人肝微粒体一起孵育,证实了尿液代谢物谱分析的观察结果。酶动力学分析结果进一步表明,除了CYP1A细胞色素P450外,CYP2C细胞色素P450也可能在AF的代谢中发挥一定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d499/1551906/d5b50b8d90a8/nihms-10602-0001.jpg

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