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Electrochemical simulation of cocaine metabolism-a step toward predictive toxicology for drugs of abuse

机译:可卡因代谢的电化学模拟-迈向滥用药物预测毒理学的一步

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Knowledge of the metabolic pathways and biotransformation of the most popular drugs, such as cocaine, amphetamine, morphine and others, is crucial for the elucidation of their possible toxicity and mechanism of action in the human body. In vitro studies on metabolism are mainly based on the incubation of drugs with liver cell homogenate and utilizing living animals. These methods need to be followed by isolation and detection of metabolic products, which makes these techniques time-consuming and technically demanding. We show here that the oxidative metabolism that occurs in the liver cells and is mainly caused by cytochrome P450 can be successfully mimicked with the electrochemical system (EC) connected on-line with electrospray ionization mass spectrometry. Cocaine was chosen as a model drug for these studies and was analyzed with a previously described system under various conditions using the boron-doped diamond working electrode. The results were compared with the number of metabolites generated by a standard procedure based on the reaction with the rat liver microsomes. Two electrochemical products of cocaine oxidation were created, of which one was a natural metabolite of cocaine in the human body-norcocaine. The EC provides a promising platform for the.screening of the addictive drug phase I metabolism. The metabolites can be directly analyzed by mass spectrometry or collected and separated by liquid chromatography. No liver cell homogenate or microsome is necessary to generate these metabolites, which simplifies separation of the mixtures and reduces time and costs of all experiments.
机译:了解最流行药物(例如可卡因,苯丙胺,吗啡等)的代谢途径和生物转化,对于阐明其在人体中可能的毒性和作用机理至关重要。代谢的体外研究主要基于药物与肝细胞匀浆的孵育以及利用活体动物。这些方法之后必须进行代谢产物的分离和检测,这使得这些技术既费时又对技术要求很高。我们在这里表明,可以通过与电喷雾电离质谱在线连接的电化学系统(EC)成功模仿在肝细胞中发生并主要由细胞色素P450引起的氧化代谢。可卡因被选作这些研究的模型药物,并使用硼掺杂的金刚石工作电极在各种条件下用先前描述的系统进行了分析。将结果与基于与大鼠肝微粒体反应的标准程序生成的代谢物数量进行比较。创建了两种可卡因氧化的电化学产物,其中一种是人体中可卡因的天然代谢产物-可卡因。 EC为筛选成瘾性药物I期代谢提供了一个有希望的平台。代谢物可以通过质谱直接分析或通过液相色谱收集和分离。无需肝细胞匀浆或微粒体即可生成这些代谢产物,从而简化了混合物的分离过程,并减少了所有实验的时间和成本。

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