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样本挖掘与数据挖掘:用于识别新型精神活性物质的实时与回顾性相结合的方法

Sample Mining and Data Mining: Combined Real-Time and Retrospective Approaches for the Identification of Emerging Novel Psychoactive Substances.

作者信息

Krotulski Alex J, Varnum Susan Jansen, Logan Barry K

机构信息

Department of Chemistry, Temple University, 1801 North Broad Street, Philadelphia, PA.

Center for Forensic Science Research and Education, Fredric Rieders Family Foundation, 2300 Stratford Ave, Willow Grove, PA.

出版信息

J Forensic Sci. 2020 Mar;65(2):550-562. doi: 10.1111/1556-4029.14184. Epub 2019 Sep 9.

Abstract

Novel psychoactive substances (NPS) are synthetic drugs that pose serious public health and safety concerns. A multitude of NPS have been identified in the United States, often implicated in forensic investigations. The most common and effective manner for identifying NPS is by use of mass spectrometry and the true utility lies within nontargeted acquisition techniques. During this study, a liquid chromatography quadrupole time-of-flight mass spectrometry (LC-QTOF-MS) assay was developed, validated, and implemented for forensic toxicology testing. A SCIEX TripleTOF™ 5600 + with SWATH acquisition was used. Resulting data were compared against an extensive library database containing more than 800 compounds. The LC-QTOF-MS assay was applied to the reanalysis of biological sample extracts to discover emergent NPS. More than 3,000 sample extracts were analyzed, and more than 20 emerging NPS were detected for the first time. Among these were isopropyl-U-47700, 3,4-methylenedioxy-U-47700, fluorofuranylfentanyl, N-methyl norfentanyl, 2F-deschloroketamine, 3,4-methylenedioxy-alpha-PHP, eutylone, and N-ethyl hexedrone.

摘要

新型精神活性物质(NPS)是一类合成毒品,对公众健康和安全构成严重威胁。在美国已发现大量NPS,它们常与法医调查有关。鉴定NPS最常见且有效的方法是使用质谱法,其真正的效用在于非靶向采集技术。在本研究中,开发、验证并实施了一种液相色谱四极杆飞行时间质谱(LC-QTOF-MS)分析法用于法医毒理学检测。使用了配备SWATH采集功能的SCIEX TripleTOF™ 5600 +。将所得数据与一个包含800多种化合物的广泛库数据库进行比较。LC-QTOF-MS分析法应用于生物样品提取物的重新分析,以发现新出现的NPS。分析了3000多个样品提取物,首次检测到20多种新出现的NPS。其中包括异丙基-U-47700、3,4-亚甲基二氧基-U-47700、氟呋喃基芬太尼、N-甲基去甲芬太尼、2F-去氯氯胺酮、3,4-亚甲基二氧基-α-PHP、乙酮、N-乙基己酮。

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