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采用 LC-高分辨质谱法在血浆中开发低剂量致幻剂和阿片类药物的定量方法。

Development of a quantitative approach in blood plasma for low-dosed hallucinogens and opioids using LC-high resolution mass spectrometry.

机构信息

Department of Experimental and Clinical Toxicology, Institute of Experimental and Clinical Pharmacology and Toxicology, Center for Molecular Signaling (PZMS), Saarland University, Homburg, Germany.

Department of Experimental and Clinical Toxicology, Institute of Experimental and Clinical Pharmacology and Toxicology, Center for Molecular Signaling (PZMS), Saarland University, Homburg, Germany.

出版信息

Talanta. 2018 Jan 1;176:635-645. doi: 10.1016/j.talanta.2017.08.063. Epub 2017 Aug 23.

Abstract

The WHO annually reports an increasing abuse of new psychoactive substances (NPS), which are a heterogeneous group of synthetic drugs and are consumed as substitute for controlled drugs of abuse. In this work, we focused on highly potent derivatives such those of phenethylamine (2C), N-2-methoxybenzyl phenethylamine (NBOMes), lysergic acid diethylamide (LSD), and fentanyl. Severe to fatal intoxications were described due to their high potency. Therefore, they have to be taken at very low doses resulting in low blood concentration in the low ng/mL range, which is a challenge for reliable analytical detection and quantification. The aim of this work was therefore to design a simple, robust, and fast method for simultaneous detection and quantification of multiple substances of the different classes in human blood plasma using liquid chromatography (LC) high resolution (HR) mass spectrometry (MS) with alternating HR full-scan (HRFS) MS and "All-ions fragmentation" (AIF) MS. The paper contains results of the method validation according to the EMA guideline, including intra-/interday accuracy and precision, matrix effects, storage and benchtop analyte stability as well as selectivity and carryover. All validation criteria were fulfilled for most tested compounds except for the NBOMe derivatives, one out of ten 2C-derivatives and butyryl fentanyl, which failed at accuracy and/or precision or at the acceptance criteria for matrix effect. Reasons for this are discussed and solutions presented. Despite some limitations, the HRFS + AIFMS analysis allowed detection of most of the analytes down to 0.1ng/mL, seamless integration of new or unexpected analytes, identification and quantification with no limitations on the number of monitored compounds, and reevaluation of the acquired data also concerning metabolism studies using group-indicating fragment ions.

摘要

世界卫生组织每年都会报告新精神活性物质(NPS)滥用情况不断增加,这些物质是一组异质的合成药物,被用作受管制滥用药物的替代品。在这项工作中,我们专注于高活性衍生物,如苯乙胺(2C)、N-2-甲氧基苯乙基胺(NBOMe)、麦角酸二乙酰胺(LSD)和芬太尼。由于其高活性,这些物质已导致严重至致命的中毒事件。因此,它们必须以非常低的剂量使用,导致血液浓度非常低,处于低纳克/毫升范围内,这对可靠的分析检测和定量构成了挑战。因此,本工作的目的是设计一种简单、稳健、快速的方法,用于使用液相色谱(LC)高分辨率(HR)质谱(MS)同时检测和定量人血浆中不同类别的多种物质,交替使用 HR 全扫描(HRFS)MS 和“全离子碎裂”(AIF)MS。本文包含根据 EMA 指南进行的方法验证结果,包括日内/日间准确度和精密度、基质效应、储存和台式分析物稳定性以及选择性和交叉污染。除了一些 NBOME 衍生物、十种 2C 衍生物之一和丁酰芬太尼外,大多数测试化合物都满足了所有验证标准,这些化合物在准确度和/或精密度或基质效应的接受标准方面存在问题。讨论了产生这些问题的原因并提出了解决方案。尽管存在一些限制,但 HRFS + AIFMS 分析允许检测到大多数分析物低至 0.1ng/mL,无缝集成新的或意外的分析物,无需对监测化合物的数量进行限制即可进行鉴定和定量,还可以重新评估使用指示基团的碎片离子进行代谢研究的获得的数据。

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