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首页> 外文期刊>Forensic science international >Quantitative estimation of alpha-PVP metabolites in urine by GC-APCI-QTOFMS with nitrogen chemiluminescence detection based on parent drug calibration
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Quantitative estimation of alpha-PVP metabolites in urine by GC-APCI-QTOFMS with nitrogen chemiluminescence detection based on parent drug calibration

机译:基于母体药物校准的GC-APCI-QTOFMS通过GC-APCI-QTOFMS进行定量估计尿液中尿液中的尿液中的氮磷代谢物

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Gas chromatography (GC) hyphenated with nitrogen chemiluminescence detection (NCD) and quadrupole time-of-flight mass spectrometry (QTOFMS) was applied for the first time to the quantitative analysis of new psychoactive substances (NPS) in urine, based on the N-equimolar response of NCD. A method was developed and validated to estimate the concentrations of three metabolites of the common stimulant NPS alpha-pyrrolidinovalerophenone (alpha-PVP) in spiked urine samples, simulating an analysis having no authentic reference standards for the metabolites and using the parent drug instead for quantitative calibration. The metabolites studied were OH-alpha-PVP (M1), 2 ''-oxo-alpha-PVP (M3), and N,N-bis-dealkyl-PVP (2-amino-1-phenylpentan-1-one; M5). Sample preparation involved liquid-liquid extraction with a mixture of ethyl acetate and butyl chloride at a basic pH and subsequent silylation of the sec-hydroxyl and prim-amino groups of M1 and M5, respectively. Simultaneous compound identification was based on the accurate masses of the protonated molecules for each compound by QTOFMS following atmospheric pressure chemical ionization. The accuracy of quantification of the parent-calibrated NCD method was compared with that of the corresponding parent-calibrated QTOFMS method, as well as with a reference QTOFMS method calibrated with the authentic reference standards. The NCD method produced an equally good accuracy to the reference method for alpha-PVP, M3 and M5, while a higher negative bias (25%) was obtained for M1, best explainable by recovery and stability issues. The performance of the parent-calibrated QTOFMS method was inferior to the reference method with an especially high negative bias (60%) for M1. The NCD method enabled better quantitative precision than the QTOFMS methods To evaluate the novel approach in casework, twenty post-mortem urine samples previously found positive for alpha-PVP were analyzed by the parent calibrated NCD method and the reference QTOFMS method. The highest difference in the quantitative results between the two methods was only 33%, and the NCD method's precision as the coefficient of variation was better than 13%. The limit of quantification for the NCD method was approximately 0.25 mg/mL in urine, which generally allowed the analysis of alpha-PVP and the main metabolite M1. However, the sensitivity was not sufficient for the low concentrations of M3 and M5. Consequently, while having potential for instant analysis of NPS and metabolites in moderate concentrations without reference standards, the NCD method should be further developed for improved sensitivity to be more generally applicable. (c) 2018 Elsevier B.V. All rights reserved.
机译:用氮化学发光检测(NCD)和四极杆飞行时间质谱(QTOFMS)连字符的气相色谱(GC)首次施加到尿液中新的精神活性物质(NPS)的定量分析,基于N- NCD的等摩尔响应。开发并验证了一种方法,以估计掺入尿液样品中常见兴奋剂NPS-吡咯烷戊二烷酮(Alpha-PVP)的三种代谢物的浓度,模拟了代谢物没有真正参考标准的分析,并使用母体药物进行定量校准。研究的代谢物是OH-α-PVP(M1),2''-OxO-α-PVP(M3),N,N-BIS-Dealkyl-PVP(2-氨基-1-苯基戊烷-1-one; M5 )。样品制备涉及在碱性pH下用乙酸乙酯和丁酰氯的混合物和随后的M1和M5的亚羟基和Prim-氨基的甲硅烷基化的液 - 液萃取。通过QTOFMS在大气压化学电离之后,同时化合物鉴定基于对每个化合物的质子化分子的精确质量。将母校准NCD方法的定量精度与相应的父校准的QTOFMS方法的定量进行比较,以及用真实参考标准校准的参考QTOFMS方法。 NCD方法对α-PVP,M3和M5的参考方法产生同等的准确度,而M1获得较高的负偏差(25%),通过恢复和稳定性问题最佳说明。母校准的QTOFMS方法的性能差不等于具有特别高的M1的负偏差(60%)的参考方法。 NCD方法使得比QTOFMS方法能够评估QTOFMS方法,以评估案例的新方法,通过父校准的NCD方法和参考QTOFMS方法分析先前发现α-PVP阳性的二十次验验尿液。两种方法之间定量结果的最高差异仅为33%,而NCD方法的精确度随着变异系数优于13%。尿液中NCD方法的定量极限约为0.25mg / ml,通常允许分析α-PVP和主要代谢物M1。然而,敏感性对于低浓度的M3和M5不足。因此,在没有参考标准的中等浓度下具有NPS和代谢物的即时分析的可能性,应该进一步开发NCD方法,以改善更普遍适用的敏感性。 (c)2018 Elsevier B.v.保留所有权利。

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