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采用液相色谱-串联质谱法同时测定尿液样本中的四氢大麻酚羧酸(THC-COOH)和四氢大麻酚羧酸葡萄糖醛酸苷(THC-COOH-glucuronide)。

Simultaneous determination of THC-COOH and THC-COOH-glucuronide in urine samples by LC/MS/MS.

作者信息

Weinmann W, Vogt S, Goerke R, Müller C, Bromberger A

机构信息

Institute of Forensic Medicine, Klinikum der Albert-Ludwigs-Universität Freiburg, Albertstrasse 9, D-79104, Freiburg, Germany.

出版信息

Forensic Sci Int. 2000 Sep 11;113(1-3):381-7. doi: 10.1016/s0379-0738(00)00210-3.

Abstract

A fast method using liquid-liquid extraction and HPLC/tandem-mass spectrometry (LC/MS/MS) was developed for the simultaneous detection of 11-Nor-Delta(9)-tetrahydrocannabinol-9-carboxylic acid beta-glucuronide (THC-COOH-glucuronide) and 11-Nor-Delta(9)-tetrahydrocannabinol-9-carboxylic acid (THC-COOH) in urine samples. This highly specific method, which combines chromatographic separation and MS/MS analysis, can be used for the confirmation of positive immunoassay results even without hydrolysis of the sample or derivatisation of extracts. Liquid-liquid extraction was optimised: with ethylacetate/diethylether (1:1, v/v) THC-COOH-glucuronide and THC-COOH could be extracted in one step. Molecular ions of the glucuronide (MH(+), m/z 521) and THC-COOH (MH(+), m/z 345) were generated using a PE/SCIEX turboionspray source in positive ionisation mode; specific fragmentation was performed in the collision cell of an API 365 triple-quadrupole mass spectrometer and yielded major fragments at m/z 345 (for THC-COOH-glucuronide) and m/z 327 as well as m/z 299 for both cannabinoids. Chromatographic separation was performed using a reversed-phase C8 column and gradient elution with 0.1% formic acid/1 mM ammonium formate and acetonitrile/0.1% formic acid. Retention times were 22.2 min for the glucuronide and 26.8 min for THC-COOH. After enzymatic hydrolysis of urine samples with beta-glucuronidase/arylsulfatase (37 degrees C, 5 h), THC-COOH-glucuronide was no longer detectable by LC/MS/MS in urine samples. However, the THC-COOH concentration was increased. For quantitation of THC-COOH, THC-COOH-D(3) was added to the urine samples as internal standard prior to analysis. From the difference of THC-COOH in the native urine and urine after enzymatic hydrolysis, molar concentration ratios of THC-COOH-glucuronide/THC-COOH in urine samples of cannabis users were determined and found to be between 1.3 and 4.5.

摘要

开发了一种采用液液萃取和高效液相色谱/串联质谱法(LC/MS/MS)同时检测尿液样本中11-去甲-Δ⁹-四氢大麻酚-9-羧酸β-葡萄糖醛酸苷(THC-COOH-葡萄糖醛酸苷)和11-去甲-Δ⁹-四氢大麻酚-9-羧酸(THC-COOH)的快速方法。这种高度特异的方法结合了色谱分离和MS/MS分析,即使不进行样本水解或提取物衍生化,也可用于确证免疫分析的阳性结果。对液液萃取进行了优化:使用乙酸乙酯/乙醚(1:1,v/v)可一步萃取THC-COOH-葡萄糖醛酸苷和THC-COOH。在正离子化模式下,使用PE/SCIEX涡轮离子喷雾源产生葡萄糖醛酸苷(MH⁺,m/z 521)和THC-COOH(MH⁺,m/z 345)的分子离子;在API 365三重四极杆质谱仪的碰撞池中进行特异性裂解,两种大麻素均产生m/z 345(对于THC-COOH-葡萄糖醛酸苷)以及m/z 327和m/z 299的主要碎片。采用反相C8柱并使用0.1%甲酸/1 mM甲酸铵和乙腈/0.1%甲酸进行梯度洗脱进行色谱分离。葡萄糖醛酸苷的保留时间为22.2分钟,THC-COOH的保留时间为26.8分钟。用β-葡萄糖醛酸酶/芳基硫酸酯酶对尿液样本进行酶水解(37℃,5小时)后,尿液样本中不再能通过LC/MS/MS检测到THC-COOH-葡萄糖醛酸苷。然而,THC-COOH的浓度增加。为了对THC-COOH进行定量,在分析前将THC-COOH-D₃作为内标添加到尿液样本中。根据天然尿液和酶水解后尿液中THC-COOH的差异,测定了大麻使用者尿液样本中THC-COOH-葡萄糖醛酸苷/THC-COOH的摩尔浓度比,发现其在1.3至4.5之间。

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