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采用液相色谱-串联质谱法对废水中68种精神活性药物、非法药物及相关人体代谢物进行高灵敏度测定。

Highly sensitive determination of 68 psychoactive pharmaceuticals, illicit drugs, and related human metabolites in wastewater by liquid chromatography-tandem mass spectrometry.

作者信息

Borova Viola L, Maragou Niki C, Gago-Ferrero Pablo, Pistos Constantinos, Thomaidis Nikolaos S

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, Panepistimiopolis, Zografou, 15771, Athens, Greece.

出版信息

Anal Bioanal Chem. 2014 Jul;406(17):4273-85. doi: 10.1007/s00216-014-7819-3. Epub 2014 May 2.

Abstract

The present work describes the development and validation of a highly sensitive analytical method for the simultaneous determination of 68 compounds, including illicit drugs (opiates, opioids, cocaine compounds, amphetamines, and hallucinogens), psychiatric drugs (benzodiazepines, barbiturates, anesthetics, antiepileptics, antipsychotics, antidepressants, and sympathomimetics), and selected human metabolites in influent and effluent wastewater (IWW and EWW) by liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS). The method involves a pre-concentration and cleanup step, carried out by solid-phase extraction (SPE) using the adsorbent Strata-XC, followed by the instrumental analysis performed by LC-MS/MS, using a Kinetex pentafluorophenyl (PFP) reversed-phase fused-core column and electrospray ionization (ESI) in both positive and negative modes. A systematic optimization of mobile phases was performed to cope with the wide range of physicochemical properties of the analytes. The PFP column was also compared with two reversed-phase columns: fused-core C18 and XB-C18 (with a cross-butyl C18 ligand). SPE optimization and critical aspects associated with the trace level determination of the target compounds (e.g., matrix effects) have been also considered and discussed. Fragmentation patterns for all the classes were proposed. The validated method provides absolute recoveries between 75 and 120% for most compounds in IWW and EWW. Low method limits of detection were achieved (between 0.04 and 10.0 ng/L for 87% of the compounds), allowing a reliable and accurate quantification of the analytes at trace level. The method was successfully applied to the analysis of these compounds in five wastewater treatment plants in Santorini, a touristic island of the Aegean Sea, Greece. Thirty-two out of 68 compounds were detected in all IWW samples in the range between 0.6 ng/L (for nordiazepam) and 6,822 ng/L (for carbamazepine) and 22 out of 68 in all EWW samples, with values between 0.4 ng/L (for 9-OH risperidone) and 2,200 ng/L (for carbamazepine). The novel methodology described herein maximizes the information on the environmental analysis of these substances and also provides a first profile of 68 drugs in a Greek touristic area.

摘要

本研究描述了一种高灵敏度分析方法的开发与验证,该方法可通过液相色谱-串联质谱联用(LC-MS/MS)同时测定68种化合物,包括非法药物(阿片类、阿片样物质、可卡因类、苯丙胺类和致幻剂)、精神药物(苯二氮䓬类、巴比妥类、麻醉剂、抗癫痫药、抗精神病药、抗抑郁药和拟交感神经药)以及进水和出水污水(IWW和EWW)中的选定人体代谢物。该方法包括一个预浓缩和净化步骤,通过使用吸附剂Strata-XC的固相萃取(SPE)进行,随后通过LC-MS/MS进行仪器分析,使用Kinetex五氟苯基(PFP)反相熔融核柱,并在正、负模式下进行电喷雾电离(ESI)。对流动相进行了系统优化,以应对分析物广泛的物理化学性质。还将PFP柱与两根反相柱进行了比较:熔融核C18和XB-C18(带有交联丁基C18配体)。还考虑并讨论了SPE优化以及与目标化合物痕量水平测定相关的关键方面(例如基质效应)。提出了所有类别化合物的碎裂模式。验证后的方法对IWW和EWW中大多数化合物的绝对回收率在75%至120%之间。实现了较低的方法检测限(87%的化合物在0.04至10.0 ng/L之间),从而能够可靠、准确地对痕量水平的分析物进行定量。该方法成功应用于希腊爱琴海岛圣托里尼的五个污水处理厂中这些化合物的分析。在所有IWW样品中检测到68种化合物中的32种,浓度范围在0.6 ng/L(去甲西泮)至6822 ng/L(卡马西平)之间,在所有EWW样品中检测到68种中的22种,浓度值在0.4 ng/L(9-羟基利培酮)至2200 ng/L(卡马西平)之间。本文所述的新方法最大限度地增加了这些物质环境分析的信息,还提供了希腊旅游区68种药物的首个概况。

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