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Determination of cocaine and metabolites in hair by column-switching LC-MS-MS analysis

机译:柱切换LC-MS-MS分析法测定头发中的可卡因和代谢物

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A method for rapid, selective, and robust determination of cocaine (CO) and metabolites in 5-mg hair samples was developed and fully validated using a column-switching liquid chromatography–tandem mass spectrometry system (LC-MS-MS). Hair samples were decontaminated, segmented, incubated overnight in diluted HCl, and centrifuged, and the diluted (1:10 with distilled water) extracts were analyzed in positive ionization mode monitoring two reactions per analyte. Quantifier transitions were: m/z 304.2→182.2 for CO, m/z 290.1→168.1 for benzoylecgonine (BE), and m/z 318.2→196.2 for cocaethylene (CE). The lower limit of quantification (LLOQ) was set at 0.05 ng/mg for CO and CE, and 0.012 ng/mg for BE. Imprecision and inaccuracy at LLOQ were lower than 20 % for all analytes. Linearity ranged between 0.05 and 50.0 ng/mg for CO and CE and 0.012 and 12.50 ng/mg for BE. Selectivity, matrix effect, process efficiency, recovery, carryover, cross talk, and autosampler stability were also evaluated during validation. Eighteen real hair samples and five samples from a commercial proficiency testing program were comparatively examined with the proposed multidimensional chromatography coupled with tandem mass spectrometry procedure and our reference gas chromatography coupled to mass spectrometry (GC-MS) method. Compared with our reference GC-MS method, column-switching technique and the high sensitivity of the tandem mass spectrometry detection system allowed to significantly reduce sample amount (×10) with increased sensitivity (×2) and sample throughput (×4), to simplify sample preparation, and to avoid that interfering compounds and ions impaired the ionization and detection of the analytes and deteriorate the performance of the ion source.
机译:开发了一种快速,选择性和鲁棒性测定5 mg头发样品中可卡因(CO)和代谢物的方法,并使用列切换液相色谱-串联质谱系统(LC-MS-MS)进行了充分验证。将头发样品去污,分段,在稀HCl中孵育过夜,然后离心,然后以正电离模式分析稀释的提取物(用蒸馏水以1:10比例),监测每个分析物的两个反应。定量转换为:对于CO而言是m / z 304.2→182.2,对于苯甲酰芽子碱(BE)而言是m / z 290.1→168.1,对于可口乙烯(CE)而言是m / z 318.2→196.2。 CO和CE的定量下限(LLOQ)设置为0.05ng / mg,BE的定量下限(LLOQ)设置为0.012ng / mg。对于所有分析物,LLOQ的不精确度和不准确性均低于20%。 CO和CE的线性范围在0.05至50.0ng / mg之间,BE的线性范围在0.012至12.50ng / mg之间。验证期间还评估了选择性,基质效应,过程效率,回收率,残留,串扰和自动进样器稳定性。用提议的多维色谱结合串联质谱方法和我们的参考气相色谱结合质谱(GC-MS)方法,对18个真发样品和来自商业能力测试程序的5个样品进行了比较检查。与我们的参考GC-MS方法相比,色谱柱切换技术和串联质谱检测系统的高灵敏度可以显着减少样品量(×10),同时提高灵敏度(×2)和样品通量(×4)简化了样品制备,并避免了干扰的化合物和离子损害分析物的电离和检测,并降低了离子源的性能。

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