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液相色谱-质谱法检测定量干血斑中的26种滥用药物及其代谢物

Detection of 26 Drugs of Abuse and Metabolites in Quantitative Dried Blood Spots by Liquid Chromatography-Mass Spectrometry.

作者信息

Meikopoulos Thomas, Gika Helen, Theodoridis Georgios, Begou Olga

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

BIOMIC_Auth, Center for Interdisciplinary Research, and Innovation (CIRI-AUTH), 57001 Thessaloniki, Greece.

出版信息

Molecules. 2024 Feb 23;29(5):975. doi: 10.3390/molecules29050975.

Abstract

A method was developed for the determination of 26 drugs of abuse from different classes, including illicit drugs in quantitative dried blood spots (qDBSs), with the aim to provide a convenient method for drug testing by using only 10 μL of capillary blood. A satisfactory limit of quantification (LOQ) of 2.5 ng/mL for 9 of the compounds and 5 ng/mL for 17 of the compounds and a limit of detection (LOD) of 0.75 ng/mL for 9 of the compounds and 1.5 ng/mL for 17 of the compounds were achieved for all analytes. Reversed-phase liquid chromatography was applied on a C18 column coupled to MS, providing selective detections with both +ESI and -ESI modes. Extraction from the qDBS was performed using AcN-MeOH, 1:1 (/), with recovery ranging from 84.6% to 106%, while no significant effect of the hematocrit was observed. The studied drugs of abuse were found to be stable over five days under three different storage conditions (at ambient temperature 21 °C, at -20 °C, and at 35 °C), thus offering a highly attractive approach for drug screening by minimally invasive sampling for individuals that could find application in forensic toxicology analysis.

摘要

开发了一种用于测定来自不同类别的26种滥用药物的方法,包括定量干血斑(qDBS)中的非法药物,目的是通过仅使用10 μL毛细血管血提供一种方便的药物检测方法。所有分析物实现了9种化合物的定量限(LOQ)为2.5 ng/mL,17种化合物的定量限为5 ng/mL,9种化合物的检测限(LOD)为0.75 ng/mL,17种化合物的检测限为1.5 ng/mL。在与质谱联用的C18柱上进行反相液相色谱,在+ESI和-ESI模式下均提供选择性检测。使用乙腈-甲醇(1:1,/)从qDBS中进行萃取,回收率在84.6%至106%之间,同时未观察到血细胞比容的显著影响。研究发现,在所研究的三种不同储存条件下(在21°C环境温度、-20°C和35°C),滥用药物在五天内稳定,因此为通过微创采样进行药物筛查提供了一种极具吸引力的方法,可应用于法医毒理学分析中的个体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d61/10934168/21e161663263/molecules-29-00975-g001.jpg

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