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使用带有 MS/MS 谱库的非靶向液相色谱高分辨质谱筛选技术鉴定水中及相关基质中的有机污染物。

Identification of organic contaminants in water and related matrices using untargeted liquid chromatography high-resolution mass spectrometry screening with MS/MS libraries.

机构信息

Water Research Institute, Nábr. arm. gen. L. Svobodu 5, 81249, Bratislava, Slovakia.

Water Research Institute, Nábr. arm. gen. L. Svobodu 5, 81249, Bratislava, Slovakia.

出版信息

Chemosphere. 2024 Oct;366:143489. doi: 10.1016/j.chemosphere.2024.143489. Epub 2024 Oct 5.

Abstract

Nontargeted and suspect screening with liquid chromatography-high resolution mass spectrometry (LC-HRMS) has become an indispensable tool for quality assessment in the aquatic environment - complementary to targeted analysis of organic (micro)contaminants. An LC-HRMS method is presented, suitable for the analysis of a wide variety of water related matrices: surface water, groundwater, wastewater, sediment and sludge, including extracts from passive samplers and on-site solid phase enrichment, while focusing on the data processing aspect of the method. A field study is included to demonstrate the practical application and versatility of the whole process. HRMS/MS data were recorded following LC separation in both (ESI) positive and negative ionization modes using data dependent as well as data independent acquisition. Two vendor (Agilent's Personal Compound Database and Library and from National Institute of Standards and Technology) and one open (MassBank/EU) tandem mass spectral libraries were utilized for the identification of compounds via mass spectral match. The development of a novel software tool for parsing, grouping and reduction of MS/MS features in data files converted to mascot generic format (MGF) helped to substantially decrease the amount of time and effort needed for MS library search. While applying the method, in the course of the entire field study, 18771 detections (from 870 individual compounds) in total were recorded in 275 samples, resulting in 68.3 identified compounds per sample, on average. Among the top ten most frequently detected contaminants across all samples and sample types were pharmaceutical compounds carbamazepine, 4-acetamidoantipyrine, 4-formylaminoantipyrine, tramadol, lamotrigine and phenazone and industrial contaminants toluene-2-sulfonamide, tolytriazole, tris(2-butoxyethyl) phosphate and benzotriazole. Exploratory data analysis methods and tools enabled us to discover organic pollutant occurrence patterns within the comprehensive sets of qualitative data collected from various projects between the years 2018-2023. The results may be used as valuable inputs for future water quality monitoring programs.

摘要

采用液相色谱-高分辨质谱(LC-HRMS)进行非靶向和可疑筛查已经成为评估水质质量不可或缺的工具——这与对有机(微)污染物的靶向分析相辅相成。本研究提出了一种 LC-HRMS 方法,适用于分析各种与水相关的基质:地表水、地下水、废水、沉积物和污泥,包括从被动采样器和现场固相富集提取的样品,同时侧重于方法的数据处理方面。本研究还包含一个现场研究,以演示整个过程的实际应用和多功能性。在 LC 分离后,通过(ESI)正离子和负离子模式记录 HRMS/MS 数据,同时使用数据依赖和数据独立采集。利用两个供应商(安捷伦的个人化合物数据库和库以及美国国家标准与技术研究院)和一个开放(MassBank/EU)串联质谱谱库,通过质谱匹配对化合物进行鉴定。开发了一种新的软件工具,用于解析、分组和减少转换为 Mascot 通用格式(MGF)的数据文件中的 MS/MS 特征,这有助于大大减少进行 MS 库搜索所需的时间和精力。在应用该方法的过程中,在整个野外研究过程中,在 275 个样品中总共记录了 18771 次检测(来自 870 种不同的化合物),导致每个样品平均鉴定出 68.3 种化合物。在所有样品和样品类型中,十种最常检测到的污染物包括药物化合物卡马西平、4-乙酰氨基安替比林、4-甲酰氨基安替比林、曲马多、拉莫三嗪和苯并三唑,以及工业污染物甲苯-2-磺酰胺、甲苯三唑、三(2-丁氧基乙基)磷酸酯和苯并三唑。探索性数据分析方法和工具使我们能够发现 2018-2023 年间在各种项目中收集的定性数据综合集中的有机污染物的出现模式。这些结果可以作为未来水质监测计划的有价值的输入。

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