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首页> 外文期刊>Bioanalysis >Metabolite profiling of RCS-4, a novel synthetic cannabinoid designer drug, using human hepatocyte metabolism and TOF-MS
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Metabolite profiling of RCS-4, a novel synthetic cannabinoid designer drug, using human hepatocyte metabolism and TOF-MS

机译:使用人肝细胞代谢和TOF-MS的新型合成大麻设计药物RCS-4的代谢物分析

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Background: Since 2009, scheduling legislation of synthetic cannabinoids prompted new compound emergence to circumvent legal restrictions. 2-(4-methoxyphenyl)-1-(1-pentyl-indol-3-yl)methanone (RCS-4) is a potent cannabinoid receptor agonist sold in herbal smoking blends. Absence of parent synthetic cannabinoids in urine suggests the importance of metabolite identification for detecting RCS-4 consumption in clinical and forensic investigations. Materials & methods & Results: With 1 h human hepatocyte incubation and TOF high-resolution MS, we identified 18 RCS-4 metabolites, many not yet reported. Most metabolites were hydroxylated with or without demethylation, carboxylation and dealkylation followed by glucuronidation. One additional sulfated metabolite was also observed. O-demethylation was the most common biotransformation and generated the major metabolite. Conclusion: For the first time, we present a metabolic scheme of RCS-4 obtained from human hepatocytes, including Phase I and II metabolites. Metabolite structural information and associated high-resolution mass spectra can be employed for developing clinical and forensic laboratory RCS-4 urine screening methods.
机译:背景:自2009年以来,合成大麻素的立法法规促使出现了新的化合物来规避法律限制。 2-(4-甲氧基苯基)-1-(1-戊基-吲哚-3-基)甲酮(RCS-4)是一种有效的大麻素受体激动剂,可在草药吸烟混合物中出售。尿液中缺乏母体合成大麻素表明,在临床和法医研究中鉴定代谢物对于检测RCS-4消耗非常重要。材料与方法及结果:经过1 h人肝细胞孵育和TOF高分辨率质谱分析,我们鉴定出18种RCS-4代谢产物,许多尚未报道。大多数代谢物在有或没有脱甲基,羧化和脱烷基的情况下均被羟基化,然后进行葡萄糖醛酸化。还观察到另一种硫酸化代谢产物。 O-去甲基化是最常见的生物转化,并产生主要的代谢产物。结论:我们首次提出了从人肝细胞获得的RCS-4的代谢方案,包括I期和II期代谢物。代谢物的结构信息和相关的高分辨率质谱可用于开发临床和法医实验室RCS-4尿液筛查方法。

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