Simultaneous determination of ethyl glucuronide, cocaine, cocaethylene, and benzoylecgonine in hair by using LC–MS/MS

IF 2.5 4区 化学 Q3 CHEMISTRY, ANALYTICAL Journal of Analytical Science and Technology Pub Date : 2024-03-01 DOI:10.1186/s40543-023-00412-2
Dong Won Shin, Seon Yeong Kim, Sung Ill Suh, Jin Young Kim
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Abstract

Alcohol and cocaine (COC) are commonly co-used drugs that cause addiction and have harmful effects. Their abuse may threaten the health of the abuser and public safety by causing serious accidents or crimes. The recidivism rate of drug-related crimes closely correlates with alcoholism. Several incidences of alcohol consumption in combination with drug abuse have been reported. Here, liquid chromatography tandem mass spectrometric method was developed to simultaneously analyze ethyl glucuronide (EtG), a metabolite of ethanol; COC; cocaethylene (CE), an alcohol-derived metabolite of COC; and benzoylecgonine (BZE), a major metabolite of COC, to determine the concurrent use of alcohol with COC. For pre-treatment, ultracentrifugation (5 min, 50,000 g) and mixed-mode anion exchange solid-phase extraction were used to increase the recovery of target compounds and minimize the matrix effect of hair. The lower limits of quantification were: 7 pg/mg (EtG), 2 pg/mg (COC), 10 pg/mg (CE), and 1 pg/mg (BZE). The correlation coefficient (r) of the calibration curve within the quantified range of target compounds was ≥ 0.9978. The intra- and inter-day accuracies were − 6.1–9.7% and − 9.3–8.3%, and intra- and inter-day precisions were 0.5–10.3% and 0.6–14.4%, respectively. The recovery, matrix effect, process efficiency, and autosampler stability were 89.2–104.8%, 81.6–105.4%, 81.5–107.1%, and 96.6–109.7%, respectively. The novel analytical method was validated with hair samples from individuals suspected of alcohol and COC use, and the method could distinguish between independent and concurrent use. Based on the findings, the analytical approach developed in this study is anticipated to be valuable in drug and alcohol dependence tests that require the simultaneous detection of alcohol and COC abuse.
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利用 LC-MS/MS 同时测定头发中的葡萄糖醛酸乙酯、可卡因、古柯碱和苯甲酰可待因
酒精和可卡因(COC)是常被同时使用的毒品,它们会导致成瘾并产生有害影响。滥用它们可能会导致严重事故或犯罪,从而威胁滥用者的健康和公共安全。毒品相关犯罪的累犯率与酗酒密切相关。据报道,有几起酒精消费与药物滥用并存的事件。本研究开发了液相色谱串联质谱法,可同时分析乙醇的代谢产物乙基葡萄糖醛酸苷(EtG)、COC、COC 的酒精代谢产物古柯乙烯(CE)和 COC 的主要代谢产物苯甲酰可待因(BZE),以确定酒精与 COC 的同时使用情况。在前处理过程中,采用了超速离心(5 分钟,50,000 g)和混合模式阴离子交换固相萃取,以提高目标化合物的回收率,并尽量减少头发的基质效应。定量下限为7皮克/毫克(EtG)、2皮克/毫克(COC)、10皮克/毫克(CE)和1皮克/毫克(BZE)。在目标化合物的定量范围内,校准曲线的相关系数(r)≥ 0.9978。日内和日间准确度分别为-6.1-9.7%和-9.3-8.3%,日内和日间精密度分别为0.5-10.3%和0.6-14.4%。回收率、基质效应、过程效率和自动进样器稳定性分别为89.2-104.8%、81.6-105.4%、81.5-107.1%和96.6-109.7%。新的分析方法通过对疑似使用酒精和 COC 的人的头发样本进行了验证,该方法可以区分独立使用和同时使用两种情况。根据研究结果,本研究中开发的分析方法有望在需要同时检测酒精和慢性有机化合物滥用的药物和酒精依赖测试中发挥重要作用。
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来源期刊
Journal of Analytical Science and Technology
Journal of Analytical Science and Technology Environmental Science-General Environmental Science
CiteScore
4.00
自引率
4.20%
发文量
39
审稿时长
13 weeks
期刊介绍: The Journal of Analytical Science and Technology (JAST) is a fully open access peer-reviewed scientific journal published under the brand SpringerOpen. JAST was launched by Korea Basic Science Institute in 2010. JAST publishes original research and review articles on all aspects of analytical principles, techniques, methods, procedures, and equipment. JAST’s vision is to be an internationally influential and widely read analytical science journal. Our mission is to inform and stimulate researchers to make significant professional achievements in science. We aim to provide scientists, researchers, and students worldwide with unlimited access to the latest advances of the analytical sciences.
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