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在线固相萃取-液相色谱-三重四极杆质谱法综合分析唾液中的合成大麻素及其代谢物。

Comprehensive analysis of synthetic cannabinoids and metabolites in oral fluid by online solid-phase extraction coupled to liquid chromatography-triple quadrupole-mass spectrometry.

机构信息

Department of Chemistry and Biochemistry, Florida International University, 11200 SW 8th Street, OE-116, Miami, FL, 33199, USA.

International Forensic Research Institute, Florida International University, 11200 SW 8th Street, OE-116, Miami, FL, 33199, USA.

出版信息

Anal Bioanal Chem. 2020 Nov;412(28):7937-7953. doi: 10.1007/s00216-020-02926-9. Epub 2020 Sep 10.

Abstract

The class of novel psychoactive substances known as synthetic cannabinoids (SC) includes illicit compounds that are sprayed on plant material and smoked or sold as liquids to be vaporized in e-cigarettes. In toxicological analysis of SC, fast analytical methods are needed for the detection and confirmation of parent drugs and metabolites at very low levels. While various analytical methods have been developed for SC in blood and urine, few are available for alternative matrices such as oral fluid (OF). There are numerous advantages to using OF as a sample matrix for SC analysis, including non-invasive collection, lesser risk of adulteration, and presence of both parent drug and metabolites. Here we report a validated online solid-phase extraction (online SPE) method coupled to LC-QqQ-MS for rapid confirmation and quantitation of 72 structurally diverse SC parent drugs and metabolites in OF with 2.5 min of preconcentration time and a total elution time of < 10 min. The use of online SPE for sample pretreatment facilitates rapid and consistent processing and greatly increases sample throughput. The method was fully validated according to relevant guidelines (ANSI/ASB Standard 036). Bias and precision values were within ± 20% for all compounds in human OF matrix. Method detection and quantitation limits ranged from 0.4 to 3.8 ng/mL and from 1.1 to 11.6 ng/mL, respectively. Recovery, matrix effects, process efficiency, carryover, and stability were also within acceptable limits for the majority of compounds. Successful application of the method was demonstrated using blank human OF fortified with SC in addition to a set of authentic OF specimens previously tested by another laboratory. Graphical abstract.

摘要

新型精神活性物质类别的合成大麻素(SC)包括被喷洒在植物材料上并吸食或作为液体出售以在电子烟中蒸发的非法化合物。在 SC 的毒理学分析中,需要快速分析方法来检测和确认非常低水平的母体药物和代谢物。虽然已经开发了用于血液和尿液中的 SC 的各种分析方法,但很少有适用于替代基质(如口腔液(OF))的方法。使用 OF 作为 SC 分析的样品基质有许多优点,包括非侵入性采集、较少的掺假风险,以及母体药物和代谢物的存在。在这里,我们报告了一种经过验证的在线固相萃取(online SPE)方法与 LC-QqQ-MS 结合使用,可在 2.5 分钟的预浓缩时间和<10 分钟的总洗脱时间内快速确认和定量 OF 中 72 种结构多样的 SC 母体药物和代谢物。在线 SPE 用于样品预处理可促进快速且一致的处理,并大大提高样品通量。该方法根据相关指南(ANSI/ASB 标准 036)进行了全面验证。在人 OF 基质中,所有化合物的偏差和精密度值均在 ±20%以内。方法检测限和定量限范围分别为 0.4 至 3.8 ng/mL 和 1.1 至 11.6 ng/mL。回收率、基质效应、过程效率、交叉污染和稳定性对于大多数化合物也在可接受范围内。该方法已成功应用于用 SC 强化的空白人 OF 以及一组由另一个实验室先前测试的真实 OF 标本。

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