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Evaluation of in vitro metabolic systems for common drugs of abuse. 1. Cocaine

机译:评价常见滥用药物的体外代谢系统。 1.可卡因

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This study examined the efficacy of four common in vitro assay systems in producing metabolic profiles consistent with in vivo data for drugs of abuse. Cocaine (COC) was selected for this study because of its complex biotransformation pathways, diverse metabolic processes and because extensive Phase I and Phase II metabolomic examination of COC has not yet been reported by means of in vitro assay. COC metabolism was assessed with a series of common in vitro assay systems (human liver microsomes, cytosol and human liver S9 fraction and horseradish peroxidase) using liquid chromatography-tandem mass spectrometry with multiple reaction monitoring. Qualitative and quantitative differences in analyte production were noted among the various active Phase I and Phase II metabolic systems. Assay incubation time was found to be a determining factor in metabolic profile, specifically with primary versus secondary metabolite formation. Regioselective arene hydroxylation of COC was conclusively documented in human hepatic metabolic models, while peroxidase-based assay systems displayed less selectivity in oxidative aryl biotransformation. Results demonstrate the applicability of in vitro systems in studying COC metabolite production and the impact of assay selection and variation in method parameters on metabolite profiles for this important drug of abuse.
机译:这项研究检查了四种常见的体外测定系统在产生与滥用药物的体内数据一致的代谢曲线方面的功效。选择可卡因(COC)进行此项研究是因为其复杂的生物转化途径,多样的代谢过程以及尚未通过体外测定法报道过广泛的I期和II期COC代谢组学检查。使用液相色谱-串联质谱和多反应监测,通过一系列常见的体外测定系统(人肝微粒体,细胞溶质和人肝S9馏分和辣根过氧化物酶)评估COC代谢。注意到各种活跃的I期和II期代谢系统之间分析物产量的定性和定量差异。发现孵育时间是代谢曲线的决定因素,特别是主要代谢物和次要代谢物的形成。在人类肝脏代谢模型中已确定性地记录了COC的区域选择性芳烃羟基化,而基于过氧化物酶的测定系统在氧化芳基生物转化中显示出较低的选择性。结果证明了该体外系统在研究COC代谢产物产生中的适用性以及该重要滥用药物的代谢产物谱分析方法选择和方法参数的变化的影响。

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