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Tracing Pharmaceutical Residues of Different Therapeutic Classes in Environmental Waters by Using Liquid Chromatography/Quadrupole-Linear Ion Trap Mass Spectrometry and Automated Library Searching

机译:液相色谱/四极杆-线性离子阱质谱法和自动文库检索追踪环境水中不同治疗类别的药物残留

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This article describes the development, optimization, and validation of an analytical method for the simultaneous detection and identification of 73 pharmaceutical residues, covering various therapeutic groups, in both surface and wastewaters. The method is based on the simultaneous extraction of all target compounds by Solid Phase Extraction (SPE), using a hydrophilic-lipophilic balanced polymer followed by liquid chromatography tandem mass spectrometry, using a hybrid triple quadrupole-linear ion trap mass spectrometer (QqLIT). Quantitative analysis was performed using the 4000 Qtrap tandem mass spectrometer in Selected Reaction Monitoring (SRM) mode, monitoring two SRM transitions to fulfill EC guidelines, as well as to ensure an accurate identification of target compounds in the samples. Quantitation is performed by the internal standard approach, indispensable to correct matrix effects. Moreover, to obtain an extra tool for confirmation and identification of the studied pharmaceuticals, an Information Dependent Acquisition (IDA) experiment was performed, with SRM as the survey scan and an enhanced product ion (EPI) scan, at three different collision energies, as dependent scan. Compound identification was carried out by library search with a developed library, created by the infusion of standards, based on EPI spectra at the three collision energies. The main advantages of the developed method, besides high sensitivity (limits of detection ranging from 0.1-55 ng/L, depending on the matrix), selectivity, and reliability of results, are that all compounds are extracted in a single step, speeding up considerably sample preparation. Recoveries obtained were generally higher than 50percent for both surface and wastewaters, with the exception of metronidazole (20-30percent), salbutamol (33-43percent), atorvastatin (40percent in surface water), and nadolol (31percent in surface water) that yielded lower but still acceptable recoveries. The overall variability of the method was below 15percent, for all compounds and all matrixes tested. Finally, the method developed has been applied to the analysis of various influent and effluent wastewaters as well as river waters from Spain.
机译:本文介绍了一种分析方法的开发,优化和验证,该分析方法可同时检测和识别地表和废水中的73种药物残留,涵盖各种治疗组。该方法基于使用亲水亲脂平衡聚合物通过固相萃取(SPE)同时萃取所有目标化合物,然后使用混合三重四极杆线性离子阱质谱仪(QqLIT)进行液相色谱串联质谱法。使用4000 Qtrap串联质谱仪在“选择性反应监测(SRM)”模式下进行定量分析,监测两个SRM跃迁以符合EC指南,并确保准确鉴定样品中的目标化合物。定量是通过校正内在基质效应必不可少的内标方法进行的。此外,为了获得用于确认和鉴定所研究药物的额外工具,还进行了信息依赖获取(IDA)实验,在三种不同的碰撞能量下,SRM作为调查扫描,而增强的产物离子(EPI)扫描则为依赖扫描。化合物鉴定是通过在三个碰撞能量下的EPI谱图上,通过注入标准液而建立的发达谱库进行谱库检索来进行的。所开发方法的主要优点除了灵敏度高(检测限在0.1-55 ng / L,取决于基质),选择性和结果可靠性外,还包括所有化合物都可以在一个步骤中提取,从而加快了分离速度。大量样品制备。除甲硝唑(20-30%),沙丁胺醇(33-43%),阿托伐他汀(地表水中40%)和纳多洛尔(地表水中31%)产生的收率较低外,地表和废水的回收率通常都高于50%。但回收率仍然可以接受。对于所有测试的化合物和所有基质,该方法的总体变异性均低于15%。最后,开发的方法已用于分析西班牙的各种进水和出水废水以及河水。

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