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Simultaneous Quantification of 20 Synthetic Cannabinoids and 21 Metabolites and Semi-quantification of 12 Alkyl Hydroxy Metabolites in Human Urine by Liquid Chromatography-Tandem Mass Spectrometry

机译:液相色谱-串联质谱法同时定量人类尿液中的20种合成大麻素和21种代谢物以及12种烷基羟基代谢物的半定量

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摘要

Clandestine laboratories constantly produce new synthetic cannabinoids to circumvent legislative efforts, complicating toxicological analysis. No extensive synthetic cannabinoid quantitative urinary methods are reported in the literature. We developed and validated a liquid chromatography tandem mass spectrometric (LC-MS/MS) method for simultaneously quantifying JWH-018, JWH-019, JWH-073, JWH-081, JWH-122, JWH-200, JWH-210, JWH-250, JWH-398, RCS-4, AM-2201, MAM-2201, UR-144, CP 47,497-C7, CP 47,497-C8 and their metabolites, and JWH-203, AM-694, RCS-8, XLR-11 and HU-210 parent compounds in urine. Non-chromatographically resolved alkyl hydroxy metabolite isomers were considered semi-quantitative. β-glucuronidase hydrolyzed urine was extracted with 1 ml Biotage SLE+ columns. Specimens were reconstituted in 150 µL mobile phase consisting of 50% A (0.01% formic acid in water) and 50% B (0.01% formic acid in 50:50 methanol:acetonitrile). 4 and 25 µL injections were performed to acquire data in positive and negative ionization modes, respectively. The LC-MS/MS instrument consisted of a Shimadzu UFLCxr system and an ABSciex 5500 Qtrap mass spectrometer with an electrospray source. Gradient chromatographic separation was achieved utilizing a Restek Ultra Biphenyl column with a 0.5 ml/min flow rate and an overall run time of 19.5 and 11.4 min for positive and negative mode methods, respectively. Quantification was by multiple reaction monitoring with CP 47,497 compounds and HU-210 ionized via negative polarity; all other analytes were acquired in positive mode. Lower and upper limits of linearity were 0.1–1.0 and 50–100 µg/l (r2 > 0.994). Validation parameters were evaluated at three concentrations spanning linear dynamic ranges. Inter-day analytical recovery (bias) and imprecision (N=20) were 88.3–112.2% and 4.3–13.5% coefficient of variation, respectively. Extraction efficiencies and matrix effect (N=10) were 44–110 and −73 to 52%, respectively. We present a novel LC-MS/MS method for simultaneously quantifying 20 synthetic cannabinoids and 21 metabolites, and semi-quantifying 12 alkyl hydroxy metabolites in urine.
机译:秘密实验室不断生产新的合成大麻素来规避立法工作,使毒理学分析复杂化。文献中没有报道广泛的合成大麻素定量尿方法。我们开发并验证了液相色谱串联质谱(LC-MS / MS)方法,用于同时定量JWH-018,JWH-019,JWH-073,JWH-081,JWH-122,JWH-200,JWH-210,JWH -250,JWH-398,RCS-4,AM-2201,MAM-2201,UR-144,CP 47,497-C7,CP 47,497-C8及其代谢物以及JWH-203,AM-694,RCS-8,XLR尿中的-11和HU-210母体化合物。非色谱分离的烷基羟基代谢产物异构体被认为是半定量的。用1 ml Biotage SLE +柱提取β-葡萄糖醛酸酶水解尿液。在150 µL流动相中重构样品,该流动相由50%A(在水中0.01%的甲酸)和50%B(在50:50甲醇:乙腈中的0.01%甲酸)组成。分别进行4和25 µL进样以获取正电离和负电离模式的数据。 LC-MS / MS仪器由Shimadzu UFLCxr系统和带电喷雾源的ABSciex 5500 Qtrap质谱仪组成。使用Restek Ultra联苯色谱柱以0.5 ml / min的流速和正模式和负模式方法的总运行时间分别为19.5和11.4 min进行梯度色谱分离。通过使用CP 47,497化合物和通过负极电离的HU-210的多反应监测进行定量;所有其他分析物均以阳性模式采集。线性的下限和上限分别为0.1–1.0和50–100 µg / l(r2> 0.994)。在跨越线性动态范围的三个浓度下评估验证参数。日间分析恢复(偏差)和不精确度(N = 20)的变异系数分别为88.3–112.2%和4.3–13.5%。提取效率和基质效应(N = 10)分别为44–110和-73至52%。我们提出了一种新颖的LC-MS / MS方法,用于同时定量检测尿液中的20种合成大麻素和21种代谢物,并半定量12种烷基羟基代谢物。

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