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生物样本中芬太尼类似物和新型合成阿片类药物筛查与定量分析方法综述。

Review of analytical methods for screening and quantification of fentanyl analogs and novel synthetic opioids in biological specimens.

作者信息

Palmquist Kaitlyn B, Truver Michael T, Shoff Elisa N, Krotulski Alex J, Swortwood Madeleine J

机构信息

Harris County Institute of Forensic Sciences, Houston, Texas, USA.

Forensic Toxicology Laboratory, Department of Pathology, Immunology and Laboratory Medicine, University of Florida College of Medicine, Gainesville, Florida, USA.

出版信息

J Forensic Sci. 2023 Sep;68(5):1643-1661. doi: 10.1111/1556-4029.15282. Epub 2023 May 23.

Abstract

Fentanyl, fentanyl analogs, and other novel synthetic opioids (NSO), including nitazene analogs, prevail in forensic toxicology casework. Analytical methods for identifying these drugs in biological specimens need to be robust, sensitive, and specific. Isomers, new analogs, and slight differences in structural modifications necessitate the use of high-resolution mass spectrometry (HRMS), especially as a non-targeted screening method designed to detect newly emerging drugs. Traditional forensic toxicology workflows, such as immunoassay and gas chromatography mass spectrometry (GC-MS), are generally not sensitive enough for detection of NSOs due to observed low (sub-μg/L) concentrations. For this review, the authors tabulated, reviewed, and summarized analytical methods from 2010-2022 for screening and quantification of fentanyl analogs and other NSOs in biological specimens using a variety of different instruments and sample preparation approaches. Limits of detection or quantification for 105 methods were included and compared to published standards and guidelines for suggested scope and sensitivity in forensic toxicology casework. Methods were summarized by instrument for screening and quantitative methods for fentanyl analogs and for nitazenes and other NSO. Toxicological testing for fentanyl analogs and NSOs is increasingly and most commonly being conducted using a variety of liquid chromatography mass spectrometry (LC-MS)-based techniques. Most of the recent analytical methods reviewed exhibited limits of detection well below 1 μg/L to detect low concentrations of increasingly potent drugs. In addition, it was observed that most newly developed methods are now using smaller sample volumes which is achievable due to the sensitivity increase gained by new technology and new instrumentation.

摘要

芬太尼、芬太尼类似物以及其他新型合成阿片类药物(NSO),包括硝氮烯类似物,在法医毒理学案件检测中很常见。用于在生物样本中识别这些药物的分析方法需要强大、灵敏且特异。异构体、新类似物以及结构修饰上的细微差异使得有必要使用高分辨率质谱(HRMS),特别是作为一种旨在检测新出现药物的非靶向筛查方法。传统的法医毒理学工作流程,如免疫分析和气相色谱质谱联用(GC-MS),由于观察到的低浓度(亚μg/L),通常对NSO的检测不够灵敏。在本综述中,作者汇总、回顾并总结了2010年至2022年期间使用各种不同仪器和样品制备方法对生物样本中芬太尼类似物和其他NSO进行筛查和定量的分析方法。纳入了105种方法的检测或定量限,并与法医毒理学案件检测中建议范围和灵敏度的已发表标准和指南进行比较。按仪器对芬太尼类似物、硝氮烯以及其他NSO的筛查和定量方法进行了总结。对芬太尼类似物和NSO的毒理学检测越来越多地且最常使用各种基于液相色谱质谱联用(LC-MS)的技术进行。所回顾的大多数最新分析方法的检测限远低于1μg/L,以检测低浓度的效力日益增强的药物。此外,观察到大多数新开发的方法现在使用更小的样本量,这得益于新技术和新仪器提高的灵敏度而得以实现。

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