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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >A novel fast method for aqueous derivatization of THC, OH‐THC and THC‐COOH in human whole blood and urine samples for routine forensic analyses
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A novel fast method for aqueous derivatization of THC, OH‐THC and THC‐COOH in human whole blood and urine samples for routine forensic analyses

机译:一种新的用于常规法医分析的人类全血和尿液样品中THC,OH-THC和THC-COOH水衍生化的新型快速方法

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摘要

Abstract A novel aqueous in situ derivatization procedure with propyl chloroformate (PCF) for the simultaneous, quantitative analysis of Δ 9 ‐tetrahydrocannabinol (THC), 11‐hydroxy‐Δ 9 ‐tetrahydrocannabinol (OH‐THC) and 11‐nor‐Δ 9 ‐tetrahydrocannabinol‐carboxylic acid (THC‐COOH) in human blood and urine is proposed. Unlike current methods based on the silylating agent [ N , O ‐ bis (trimethylsilyl)trifluoroacetamide] added in an anhydrous environment, this new proposed method allows the addition of the derivatizing agent (propyl chloroformate, PCF) directly to the deproteinized blood and recovery of the derivatives by liquid–liquid extraction. This novel method can be also used for hydrolyzed urine samples. It is faster than the traditional method involving a derivatization with trimethyloxonium tetrafluoroborate. The analytes are separated, detected and quantified by gas chromatography–mass spectrometry in selected ion monitoring mode (SIM). The method was validated in terms of selectivity, capacity of identification, limits of detection (LOD) and quantification (LOQ), carryover, linearity, intra‐assay precision, inter‐assay precision and accuracy. The LOD and LOQ in hydrolyzed urine were 0.5 and 1.3?ng/mL for THC and 1.2 and 2.6?ng/mL for THC‐COOH, respectively. In blood, the LOD and LOQ were 0.2 and 0.5?ng/mL for THC, 0.2 and 0.6?ng/mL for OH‐THC, and 0.9 and 2.4?ng/mL for THC‐COOH, respectively. This method was applied to 35 urine samples and 50 blood samples resulting to be equivalent to the previously used ones with the advantage of a simpler method and faster sample processing time. We believe that this method will be a more convenient option for the routine analysis of cannabinoids in toxicological and forensic laboratories.
机译:摘要用丙基丙酸丙酯(PCF)同时,定量分析δ9-二氢萘酚(THC),11-羟基-δ9-四氢尼酚(OH-THC)和11-NOR-δ9 - 提出了人血液和尿液中的四氢甘油醛醇 - 羧酸(THC-COOH)。与基于甲硅烷基化剂的电流方法不同[N,O - 双(三甲基甲硅烷基)三氟乙酰胺]加入无水环境中,这种新的方法可以直接向脱蛋白化血液和恢复添加衍生化剂(丙酯,PCF)和恢复液态萃取衍生物。这种新方法也可用于水解尿液样本。它比传统方法更快,传统方法涉及用三甲基四氟硼酸盐的衍生化。通过在所选离子监测模式(SIM)中通过气相色谱 - 质谱法分离,检测和定量分析物。该方法在选择性,识别容量,检测限率(LOD)和定量(LOQ),携带,线性,测定内的精度,测定间精度和准确性方面进行验证。水解尿液中的LOD和LOQ分别为THC的0.5和1.3·Ng / mL,分别用于THC-COOH的1.2和2.6?Ng / mL。在血液中,对于OH-THC,LOD和LOQ为0.2和0.5?Ng / ml,分别为OH-THC为0.2和0.6?Ng / ml,分别为0.9和2.4·Ng / ml。将该方法应用于35个尿液样本和50个血样,导致与先前使用的方法相当于具有更简单方法和更快的样本处理时间的优点。我们认为,这种方法将是毒理学和法医实验室大麻素常规分析的更方便的选择。

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