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首页> 外文期刊>Environmental Science: Water Research & Technology >Emerging investigators series: prioritization of suspect hits in a sensitive suspect screening workflow for comprehensive micropollutant characterization in environmental samples
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Emerging investigators series: prioritization of suspect hits in a sensitive suspect screening workflow for comprehensive micropollutant characterization in environmental samples

机译:新兴研究人员系列:在敏感的嫌疑人筛查工作流程中优先考虑嫌疑人,以全面表征环境样品中的微污染物

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The emergence of suspect screening has enabled the comprehensive characterization of micropollutants in water systems. In this work, we developed a sensitive suspect screening workflow and applied it to characterize the occurrence of micropollutants in eighteen water samples collected from an urban water system in New York State. We used high-resolution mass spectrometry to collect full-scan and data-dependent tandem mass spectra from the water samples and compiled a suspect database that contained 1113 chemical substances including pesticides, Pharmaceuticals, personal care products, and industrial chemicals. The suspect screening workflow included peak picking, suspect database matching, isotopic pattern scoring, a replication filter, blank subtraction and artifact removal, and clustering of suspect hits. Each step in the workflow relied only on the quality of the analytical data, and was optimized and validated using a set of compounds that covered a broad range of physicochemical properties. After applying the optimized suspect screening workflow to the data acquired from the water samples, we developed a series of prioritization strategies that ranked the resulting suspect hits according to metrics that we hypothesized would favor true positive detections. We then acquired authentic standards for suspect hits based on their ranking on the priority lists to confirm or reject their occurrence. With this approach, we confirmed the presence of 112 micropollutants in at least one of the eighteen water samples. Comparing these results to the scope of conventional micropollutant monitoring methods, we approximate that our suspect screening approach more than doubled the number of micropollutants that may otherwise have been identified.
机译:可疑筛查的出现使水系统中微污染物的全面表征成为可能。在这项工作中,我们开发了一个敏感的嫌疑人筛选工作流程,并将其应用于表征从纽约州城市供水系统收集的18个水样中微量污染物的发生。我们使用高分辨率质谱仪从水样中收集了全扫描和数据相关的串联质谱图,并建立了一个可疑数据库,其中包含1113种化学物质,包括农药,药品,个人护理产品和工业化学品。可疑物筛选工作流程包括峰选择,可疑数据库匹配,同位素模式评分,复制过滤器,空白减法和伪影去除以及可疑命中聚类。工作流程中的每个步骤仅依赖于分析数据的质量,并使用一组涵盖广泛理化特性的化合物进行了优化和验证。在将优化的嫌疑人筛选工作流程应用于从水样中获取的数据之后,我们制定了一系列优先策略,根据我们假设的指标将对可疑命中结果进行排名,我们认为这些指标将有利于真正的阳性检测。然后,我们根据优先级列表上可疑命中的排名获取了可疑命中的真实标准,以确认或拒绝其发生。通过这种方法,我们确认了十八种水样品中的至少一种存在112种微污染物。将这些结果与常规微污染物监测方法的范围进行比较,我们估计,我们的可疑筛查方法使原本可以确定的微污染物数量增加了一倍以上。

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