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采用柱切换 LC-MS-MS 分析测定头发中的可卡因及其代谢物。

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

机构信息

Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Universidade de São Paulo, São Paulo, Brazil.

出版信息

Anal Bioanal Chem. 2013 Jul;405(19):6299-306. doi: 10.1007/s00216-013-7046-3. Epub 2013 May 24.

Abstract

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.

摘要

建立并全面验证了一种使用柱切换液相色谱-串联质谱系统(LC-MS-MS)快速、选择性和稳健地测定 5 毫克毛发样品中可卡因(CO)及其代谢物的方法。对毛发样品进行去污染、分段、在稀释的 HCl 中孵育过夜、离心,然后以正离子模式分析稀释(用蒸馏水稀释 1:10)提取物,监测每个分析物的两个反应。定量器转换为:m/z 304.2→182.2 用于 CO,m/z 290.1→168.1 用于苯甲酰古柯碱(BE),m/z 318.2→196.2 用于可卡乙基醚(CE)。CO 和 CE 的定量下限(LLOQ)设定为 0.05 ng/mg,BE 的定量下限设定为 0.012 ng/mg。所有分析物的 LLOQ 处的精密度和准确度均低于 20%。CO 和 CE 的线性范围在 0.05 至 50.0 ng/mg 之间,BE 的线性范围在 0.012 至 12.50 ng/mg 之间。在验证过程中还评估了选择性、基质效应、过程效率、回收率、携带、串扰和自动进样器稳定性。将提出的多维色谱与串联质谱程序与我们的参考气相色谱与质谱(GC-MS)方法比较检查了 18 个真实毛发样本和 5 个商业能力验证计划样本。与我们的参考 GC-MS 方法相比,柱切换技术和串联质谱检测系统的高灵敏度允许显著减少样品量(×10),同时提高灵敏度(×2)和样品通量(×4),简化样品制备,并避免干扰化合物和离子干扰分析物的离子化和检测,恶化离子源的性能。

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