Larabi Islam Amine, Martin Marie, Etting Isabelle, Pfau Gregory, Edel Yves, Alvarez Jean Claude
Department of Pharmacology and Toxicology, Paris-Saclay University (Versailles Saint-Quentin-en-Yvelines University), Inserm U-1173, Raymond Poincaré Hospital, AP-HP, Garches, France.
Addiction clinic, Pitié Salpétrière hospital, AP-HP, Paris, France.
Drug Test Anal. 2020 Sep;12(9):1298-1308. doi: 10.1002/dta.2868. Epub 2020 Jul 7.
This study was to validate a LC-MS/MS method for the determination of 17 new synthetic opioids (NSOs) in hair including 3-fluorofentanyl, 3-methylfentanyl, acetylfentanyl, acetylnorfentanyl, alfentanyl, butyrylfentanyl, butyrylnorfentanyl, carfentanil, fentanyl, furanylfentanyl, furanylnorfentanyl, methoxyacetylfentanyl, norcarfentanil, norfentanyl, ocfentanil, sufentanil, and U-47700, and to apply it to 137 authentic samples. Twenty milligrams of hair was decontaminated in dichloromethane and underwent liquid extraction. 10 μL of the reconstituted residue were injected onto the system. The separation was performed in 12 minutes in a gradient mode at a flow rate of 300 μL/min using a Hypersyl Gold PFP column (100 × 2.1 mm i.d., 1.9 μm) maintained at 30°C. Compounds were detected in positive ionization and MRM modes using a TSQ Endura mass spectrometer (ThermoFisher). The method was validated according to EMA guidelines. The LLOQ was in the range 1-50 pg/mg, and the calibration ranged from the LLOQ-1000 pg/mg. Intra- and inter-day accuracy (bias) and precision were < 15%. Extraction recoveries of parent drugs and metabolites were 74-120% and 7-62%, respectively. The matrix effect was in the range 59-126% (CVs ≤ 12.9%). Fentanyl was found in six cases at concentrations of < 1-1650 pg/mg (n = 14 segments). Five fentanyl analogs were quantified in two cases: 3-fluorofentanyl (25-150 pg/mg, n = 5), furanylfentanyl (15-500 pg/mg, n = 5), methoxyacetylfentanyl (500-600 pg/mg, n = 2), acetylfentanyl (1 pg/mg, n = 2), carfentanyl (2.5-3 pg/mg, n = 2). This fully validated method allowed us to test for the first time 3-fluorofentanyl and norcarfentanil in hair among 15 other NSOs, and brings new data regarding 3-fluorofentanyl and methoxyacetylfentanyl hair concentrations.
本研究旨在验证一种液相色谱 - 串联质谱法(LC-MS/MS),用于测定毛发中的17种新型合成阿片类物质(NSO),包括3-氟芬太尼、3-甲基芬太尼、乙酰芬太尼、乙酰去甲芬太尼、阿芬太尼、丁酰芬太尼、丁酰去甲芬太尼、卡芬太尼、芬太尼、呋喃基芬太尼、呋喃基去甲芬太尼、甲氧基乙酰芬太尼、去甲卡芬太尼、去甲芬太尼、奥芬太尼、舒芬太尼和U-47700,并将其应用于137份真实样本。20毫克毛发在二氯甲烷中进行去污处理,然后进行液液萃取。取10微升复溶后的残渣注入系统。使用Hypersyl Gold PFP柱(内径100×2.1毫米,粒径1.9微米),在30℃下,以300微升/分钟的流速,采用梯度模式在12分钟内完成分离。使用TSQ Endura质谱仪(赛默飞世尔科技公司)在正离子和多反应监测(MRM)模式下检测化合物。该方法按照欧洲药品管理局(EMA)指南进行验证。最低定量限(LLOQ)在1 - 50皮克/毫克范围内,校准范围为LLOQ至1000皮克/毫克。日内和日间准确度(偏差)及精密度均<15%。母体药物和代谢物的萃取回收率分别为74 - 120%和7 - 62%。基质效应在59 - 126%范围内(变异系数≤12.9%)。在6例样本中检测到芬太尼,浓度为<1 - 1650皮克/毫克(n = 14段)。在2例样本中对5种芬太尼类似物进行了定量:3-氟芬太尼(25 - 150皮克/毫克,n = 5)、呋喃基芬太尼(15 - 500皮克/毫克,n = 5)、甲氧基乙酰芬太尼(500 - 600皮克/毫克,n = 2)、乙酰芬太尼(1皮克/毫克,n = 2)、卡芬太尼(2.5 - 3皮克/毫克,n = 2)。这种经过充分验证的方法使我们能够在15种其他NSO中首次检测毛发中的3-氟芬太尼和去甲卡芬太尼,并提供了关于3-氟芬太尼和甲氧基乙酰芬太尼毛发浓度的新数据。