首页> 外文期刊>Analytical and bioanalytical chemistry >In vitro metabolic profiling of synthetic cannabinoids by pooled human liver microsomes, cytochrome P450 isoenzymes, and Cunninghamella elegans and their detection in urine samples
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In vitro metabolic profiling of synthetic cannabinoids by pooled human liver microsomes, cytochrome P450 isoenzymes, and Cunninghamella elegans and their detection in urine samples

机译:通过合并的人肝微粒体,细胞色素P450同工酶和苏红米拉秀丽杆菌的体外代谢分析及其在尿液中的检测

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As synthetic cannabinoids are extensively metabolized, there is an urgent need for data on which metabolites can be used for successful urine screening. This study examines the in vitro metabolism of EG-018 and its 5F-analogue EG-2201 by means of comparing three different in vitro models: pooled human liver microsomes, cytochrome P450 isoenzymes, and a fungal approach utilizing the filamentous fungus Cunninghamella elegans LENDNER, which is known for its ability to mimic human biotransformation of xenobiotics. In addition, this study includes the screening of two authentic urine samples from individuals with proven EG-018 consumption, for the evaluation of in vitro-in vivo extrapolations made in the study. Incubation with pooled human liver microsomes yielded 15 metabolites of EG-018 belonging to six different metabolite subgroups, and 21 metabolites of EG-2201 belonging to seven different metabolite subgroups, respectively. Incubation with cytochrome P450 isoenzymes incubation yielded a further three EG-018 and five EG-2201 metabolites. With reference to their summed metabolite peak abundancies, the isoenzymes CYP2C9, CYP2C19, CYP2D6, CYP3A4, and CYP3A5 were shown to contribute most to the microsomal metabolism of EG-018 and EG-2201. CYP2B6 was shown to make the lowest contribution, by far. As the phase I metabolism of both synthetic cannabinoids was shown to be distributed over a substantial number of different cytochrome P450 isoenzymes, it was concluded that it is likely to not be significantly affected by co-consumption of other drugs. Although fungal incubation with Cunninghamella elegans yielded an additional three EG-018 and four EG-2201 metabolites not observed after microsomal incubation, metabolites generated by Cunninghamella elegans were in good correlation with those generated by microsomal incubations. The fungal model demonstrated its ability to be an independent in vitro model in synthetic cannabinoid metabolism research. The three tested in vitro m
机译:随着合成大麻素被广泛代谢的,迫切需要代谢物可用于成功尿液筛选的数据。本研究通过比较三种不同的体外模型来研究EG-018及其5F - 类似物EG-2201的体外代谢:汇集人肝微粒体,细胞色素P450同工酶,以及利用丝状真菌康宁秀丽丽秀丽斯leendner的真菌方法,众所周知,其能够模仿生物转化的异种症。此外,该研究包括筛选来自具有经过验证的eg-018消费的个体的两种正宗的尿液样本,用于评估研究中的体外体内推断。与合并的人肝微粒体孵育产生15个代谢物,例如属于六种不同的代谢物亚组,以及分别属于七种不同代谢物亚组的EG-2201的21个代谢物。与细胞色素p450同工酶孵育孵育,得到另外三种Eg-018和5 eg-2201代谢物。参考其总结的代谢岩峰值高度,表明同工酶CYP2C9,CYP2C19,CYP2D6,CYP3A4和CYP3A5对EG-018和EG-2201的微粒体代谢有贡献。 CYP2B6被证明到迄今为止发挥最低贡献。随着合成大麻素两种代谢的代谢被显示在大量不同的细胞色素P450同工酶上,得出结论,它可能不会受到其他药物共同消费的显着影响。虽然与Cunninghamella elegans的真菌孵育,但在微粒体孵育后额外的三个eg-018和4个eg-2201代谢物,Cunninghamella elegans产生的代谢物与微粒体孵育产生的良好相关性良好。真菌模型证明了其在合成大麻代谢研究中成为一个独立体外模型的能力。三个在体外测试

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