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Comparison of GC-MS/MS and LC-MS/MS for the analysis of hormones and pesticides in surface waters: advantages and pitfalls

机译:比较GC-MS / MS和LC-MS / MS用于分析地表水中的激素和农药的优点和缺点

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The occurrence of endocrine disrupting chemicals (EDCs) in aquatic environments has long been a concern because of their threat to human and aquatic health. Liquid chromatography coupled with tandem mass spectrometry (LC-MS/MS) and gas chromatography coupled with tandem mass spectrometry (GC-MS/MS) were optimized and compared for the detection of potential EDCs in order to examine the advantages and limitations of these commonly used instrumental methods in environmental analysis. The comparison between the two methods indicated that the performance and analytical results were not significantly different, except for the analysis of legacy organochlorine pesticides, such as dichlorodiphenyltrichloroethane (DDT) and its metabolites, where GC-MS/MS outperformed LC-MS/MS. However, because of the very low water solubility of these compounds they are less likely to be found in surface water samples, and they were therefore removed from the list of target analytes in the LC-MS/MS method. On the other hand, by using LC-MS/MS, highly water-soluble EDCs such as estrogens and their conjugates were simultaneously analyzed with the currently registered pesticides without the need for derivatization. In this study, an optimized procedure for solvent exchange of sample extracts originally dissolved in ethyl acetate (for GC-MS/MS) is described in order to prepare them for LC-MS/MS analysis. Quantitative analysis using LC-MS/MS was developed for the detection of potential EDCs including estrogens, pesticides, and industrial chemicals. Scheduled selected reaction monitoring acquisition in LC-MS/MS assured the optimum sensitivity of trace analysis. Electrospray positive and negative ionizations were performed in a single run by using wrong-way-round ionization employing a pH 10 mobile phase. Limits of detection ranging from 0.4 to 6 ng L?1 for all the target compounds could be achieved using the developed LC-MS/MS method. Recoveries (n = 3) for most of the compounds were above 70% with a relative standard deviation below 20%. The validated LC-MS/MS method was applied to natural river water samples and the results showed no significant difference from those obtained using GC-MS/MS.
机译:由于其对人类和水生健康的威胁,长期以来人们一直关注在水生环境中出现内分泌干扰化学物质(EDC)。液相色谱-串联质谱联用(LC-MS / MS)和气相色谱-串联质谱联用(GC-MS / MS)进行了优化,并进行了比较,以检测潜在的EDC,以检查它们的优势和局限性在环境分析中使用了仪器方法。两种方法之间的比较表明,除了分析传统的有机氯农药(例如二氯二苯基三氯乙烷(DDT)及其代谢产物)(GC-MS / MS优于LC-MS / MS)外,性能和分析结果没有显着差异。但是,由于这些化合物的水溶性极低,因此在地表水样品中不太可能发现它们,因此在LC-MS / MS方法中将它们从目标分析物列表中删除。另一方面,通过使用LC-MS / MS,无需衍生化,即可与目前注册的农药同时分析高水溶性EDC(如雌激素及其结合物)。在这项研究中,描述了一种溶剂交换最初溶于乙酸乙酯的样品提取物(用于GC-MS / MS)的优化程序,以便为进行LC-MS / MS分析做准备。开发了使用LC-MS / MS进行定量分析的方法,用于检测潜在的EDC,包括雌激素,农药和工业化学品。 LC-MS / MS中预定的选定反应监测采集确保了痕量分析的最佳灵敏度。通过使用pH 10流动相进行的反方向电离,可在一次运行中进行电喷雾正电离和负电离。使用开发的LC-MS / MS方法可实现所有目标化合物的检出限为0.4至6 ng L?1。大多数化合物的回收率(n = 3)均高于70%,相对标准偏差低于20%。经过验证的LC-MS / MS方法应用于天然河水样品,结果与使用GC-MS / MS所得结果没有显着差异。

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