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首页> 外文期刊>Analytical and bioanalytical chemistry >Development and validation of an automated liquid-liquid extraction GC/MS method for the determination of THC, 11-OH-THC, and free THC-carboxylic acid (THC-COOH) from blood serum
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Development and validation of an automated liquid-liquid extraction GC/MS method for the determination of THC, 11-OH-THC, and free THC-carboxylic acid (THC-COOH) from blood serum

机译:开发和验证用于从血清中测定THC,11-OH-THC和游离THC-羧酸(THC-COOH)的自动液-液萃取GC / MS方法

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摘要

The analysis of Delta(9)-tetrahydrocannabinol (THC) and its metabolites 11-hydroxy-Delta(9)-tetrahydrocannabinol (11-OH-THC), and 11-nor-9-carboxy-Delta(9)-tetrahydrocannabinol (THC-COOH) from blood serum is a routine task in forensic toxicology laboratories. For examination of consumption habits, the concentration of the phase I metabolite THC-COOH is used. Recommendations for interpretation of analysis values in medical-psychological assessments (regranting of driver's licenses, Germany) include threshold values for the free, unconjugated THC-COOH. Using a fully automated two-step liquid-liquid extraction, THC, 11-OH-THC, and free, unconjugated THC-COOH were extracted from blood serum, silylated with N-methyl-N-(trimethylsilyl) trifluoroacetamide (MSTFA), and analyzed by GC/MS. The automation was carried out by an x-y-z sample robot equipped with modules for shaking, centrifugation, and solvent evaporation. This method was based on a previously developed manual sample preparation method. Validation guidelines of the Society of Toxicological and Forensic Chemistry (GTFCh) were fulfilled for both methods, at which the focus of this article is the automated one. Limits of detection and quantification for THC were 0.3 and 0.6 mu g/L, for 11-OH-THC were 0.1 and 0.8 mu g/L, and for THC-COOH were 0.3 and 1.1 mu g/L, when extracting only 0.5 mL of blood serum. Therefore, the required limit of quantification for THC of 1 mu g/L in driving under the influence of cannabis cases in Germany (and other countries) can be reached and the method can be employed in that context. Real and external control samples were analyzed, and a round robin test was passed successfully. To date, the method is employed in the Institute of Legal Medicine in Giessen, Germany, in daily routine. Automation helps in avoiding errors during sample preparation and reduces the workload of the laboratory personnel. Due to its flexibility, the analysis system can be employed for other liquid-liquid extractions as well. To the best of our knowledge, this is the first publication on a comprehensively automated classical liquid-liquid extraction workflow in the field of forensic toxicological analysis.
机译:Delta(9)-四氢大麻酚(THC)及其代谢物11-羟基-Delta(9)-四氢大麻酚(11-OH-THC)和11-nor-9-羧基-Delta(9)-四氢大麻酚(THC)的分析-COOH)是法医毒理学实验室的一项常规工作。为了检查消费习惯,使用了I相代谢物THC-COOH的浓度。在医学心理评估中解释分析值的建议(德国驾驶执照的再保险)包括游离的,未结合的THC-COOH的阈值。使用全自动两步液-液萃取,从血清中萃取THC,11-OH-THC和游离的未结合THC-COOH,并用N-甲基-N-(三甲基甲硅烷基)三氟乙酰胺(MSTFA)进行甲硅烷基化,通过GC / MS分析。自动化由配备了用于振荡,离心和溶剂蒸发的模块的x-y-z样品机器人执行。该方法基于先前开发的手动样品制备方法。两种方法均符合毒理学和法医化学学会(GTFCh)的验证准则,本文重点是自动化方法。仅提取0.5 mL时,THC的检出限和定量限为0.3和0.6μg / L,11-OH-THC的检出限为0.1和0.8μg / L,THC-COOH的检出限为0.3和1.1μg / L血清。因此,在德国(和其他国家)的大麻病例的影响下,在驾驶中四氢大麻酚的定量定量要求达到了1 µg / L,可以在这种情况下使用该方法。分析了实际和外部对照样品,并成功通过了循环测试。迄今为止,该方法已在德国吉森法律医学研究所日常使用。自动化有助于避免样品制备过程中的错误,并减少实验室人员的工作量。由于其灵活性,分析系统也可用于其他液-液萃取。据我们所知,这是法医毒理学分析领域中全面自动化的经典液-液萃取工作流程的第一本出版物。

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