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液相色谱-高分辨率质谱法测定死后血液中的多种药物和代谢物:与标称质量技术的比较

Multi-drug and metabolite quantification in postmortem blood by liquid chromatography-high-resolution mass spectrometry: comparison with nominal mass technology.

作者信息

Rosano Thomas G, Na Seo, Ihenetu Kenneth, Swift Thomas A, Wood Michelle

机构信息

Forensic Toxicology Laboratory, Department of Pathology and Laboratory Medicine, Albany Medical Center Hospital and College, 43 New Scotland Avenue, Albany, NY 12208, USA

Forensic Toxicology Laboratory, Department of Pathology and Laboratory Medicine, Albany Medical Center Hospital and College, 43 New Scotland Avenue, Albany, NY 12208, USA.

出版信息

J Anal Toxicol. 2014 Oct;38(8):495-506. doi: 10.1093/jat/bku066.

Abstract

High-resolution mass spectrometry (HRMS) is being applied in postmortem drug screening as an alternative to nominal mass spectrometry, and additional evaluation in quantitative casework is needed. We report quantitative analysis of benzoylecgonine, citalopram, cocaethylene, cocaine, codeine, dextromethorphan, dihydrocodeine, diphenhydramine, 2-ethylidene-1,5-dimethyl-3,3-diphenylpyrrolidine, hydrocodone, hydromorphone, meperidine, methadone, morphine, oxycodone and oxymorphone in postmortem blood by ultra-performance liquid chromatography (UPLC)-MS(E)/time-of-flight (TOF). The method employs analyte-matched deuterated internal standardization and MS(E) acquisition of precursor and product ions at low (6 eV) and ramped (10-40 eV) collision energies, respectively. Quantification was performed using precursor ion data obtained with a mass extraction window of ± 5 ppm. Fragment and residual precursor ion acquisitions at ramped collision energies were evaluated as additional analyte identifiers. Extraction recovery of >60% and matrix effect of <20% were determined for all analytes and internal standards. Defined limits of detection (10 ng/mL) and quantification (25 ng/mL) were validated along with a linearity analytical range of 25-3,000 ng/mL (R(2) > 0.99) for all analytes. Parallel UPLC-MS(E)/TOF and UPLC-MS/MS analysis showed comparable precision and bias along with concordance of 253 positive (y = 1.002x + 1.523; R(2) = 0.993) and 2,269 negative analyte findings in 159 postmortem cases. Analytical performance and correlation studies demonstrate accurate quantification by UPLC-MS(E)/TOF and extended application of HRMS in postmortem casework.

摘要

高分辨率质谱法(HRMS)正被应用于死后药物筛查,以替代标称质谱法,并且在定量实际案件工作中还需要进一步评估。我们报告了通过超高效液相色谱(UPLC)-MS(E)/飞行时间(TOF)对死后血液中的苯甲酰爱康宁、西酞普兰、可卡因乙烯、可卡因、可待因、右美沙芬、二氢可待因、苯海拉明、2-亚乙基-1,5-二甲基-3,3-二苯基吡咯烷、氢可酮、氢吗啡酮、哌替啶、美沙酮、吗啡、羟考酮和羟吗啡酮进行定量分析。该方法采用与分析物匹配的氘代内标法,并分别在低(6 eV)和斜坡式(10 - 40 eV)碰撞能量下对前体离子和产物离子进行MS(E)采集。使用在±5 ppm质量提取窗口获得的前体离子数据进行定量。在斜坡式碰撞能量下的碎片和残留前体离子采集被评估为额外的分析物标识符。确定了所有分析物和内标的提取回收率>60%以及基质效应<20%。定义的检测限(10 ng/mL)和定量限(25 ng/mL)得到验证,所有分析物的线性分析范围为25 - 3000 ng/mL(R²>0.99)。并行的UPLC-MS(E)/TOF和UPLC-MS/MS分析显示出相当的精密度和偏差,以及在159例死后案件中253例阳性(y = 1.002x + 1.523;R² = 0.993)和2269例阴性分析物结果的一致性。分析性能和相关性研究证明了UPLC-MS(E)/TOF进行准确定量以及HRMS在死后案件工作中的扩展应用。

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