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新型阿片类激动剂U - 47700和U - 49900在人肝微粒体中的代谢,并在吸毒者的真实尿液样本中得到证实。

Metabolism of novel opioid agonists U-47700 and U-49900 using human liver microsomes with confirmation in authentic urine specimens from drug users.

作者信息

Krotulski Alex J, Mohr Amanda L A, Papsun Donna M, Logan Barry K

机构信息

Center for Forensic Science Research and Education at the Fredric Rieders Family Foundation, Willow Grove, Pennsylvania, USA.

NMS Labs, Willow Grove, Pennsylvania, USA.

出版信息

Drug Test Anal. 2018 Jan;10(1):127-136. doi: 10.1002/dta.2228. Epub 2017 Jul 26.

Abstract

Recently, the number of adverse events, including death, involving novel opioids has continued to increase, providing additional and sustained challenges for forensic and medical communities. Identification of emerging novel opioids can be challenging, compounded by detection windows and unknown metabolic profiles. In this study, human liver microsomes were used for the generation of in vitro metabolic profiles of U-47700 and U-49900. Generated metabolites were analyzed via a SCIEX TripleTOF® 5600+ quadrupole time-of-flight mass spectrometer and resulting data files were processing using MetabolitePilot™. Characterized metabolites were verified in vivo by analysis of authentic human urine specimens collected after analytically confirmed cases of overdose involving U-47700 or U-49900. In total, four metabolites were identified and present in urine specimens for U-47700, and five metabolites for U-49900. N-Desmethyl-U-47700 was determined to be the primary metabolite of U-47700. Parent U-47700 was identified in all urine specimens. N-Desmethyl-U-47700 and N,N-didesmethyl-U-47700 were structurally confirmed for the first time during this study following acquisition of standard reference material. N-Desethyl-U-49900 was determined to be the primary metabolite of U-49900 following microsomal incubations, while N,N-didesethyl-N-desmethyl-U-49900 was the most abundant in a urine specimen. Similarities in metabolic transformation were identified between U-47700 and U-49900, resulting in a common metabolite and isomeric species. These phenomena should be considered in cases involving U-47700 or U-49900. This study is the first to map the metabolic profiles of U-47700 and U-49900 using human liver microsomes, as well as the first to report any literature involving U-49900 and analysis of case specimens.

摘要

最近,包括死亡在内的涉及新型阿片类药物的不良事件数量持续增加,给法医和医学界带来了更多持续的挑战。鉴定新出现的新型阿片类药物可能具有挑战性,检测窗口和未知的代谢谱使情况更加复杂。在本研究中,使用人肝微粒体生成U-47700和U-49900的体外代谢谱。通过SCIEX TripleTOF® 5600+四极杆飞行时间质谱仪分析生成的代谢物,并使用MetabolitePilot™处理所得数据文件。通过分析经分析确认的涉及U-47700或U-49900的过量用药病例后收集的真实人类尿液标本,在体内验证了表征的代谢物。总共鉴定出四种代谢物存在于U-47700的尿液标本中,五种代谢物存在于U-49900的尿液标本中。N-去甲基-U-47700被确定为U-47700的主要代谢物。在所有尿液标本中均鉴定出母体U-47700。在获得标准参考物质后,本研究首次在结构上确认了N-去甲基-U-47700和N,N-二去甲基-U-47700。在微粒体孵育后,N-去乙基-U-49900被确定为U-49900的主要代谢物,而N,N-二去乙基-N-去甲基-U-49900在尿液标本中含量最高。在U-47700和U-49900之间鉴定出代谢转化的相似性,产生了一种常见代谢物和异构体。在涉及U-47700或U-49900的病例中应考虑这些现象。本研究首次使用人肝微粒体绘制了U-47700和U-49900的代谢谱,也是首次报道任何涉及U-49900及病例标本分析的文献。

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