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比较用于同时定量和鉴定全氟和多氟烷基物质(PFAS)的高分辨率质谱采集方法。

Comparison of high-resolution mass spectrometry acquisition methods for the simultaneous quantification and identification of per- and polyfluoroalkyl substances (PFAS).

机构信息

Australian Laboratory for Emerging Contaminants, School of Chemistry, University of Melbourne, Victoria, 3010, Australia.

Department of Materials and Environmental Chemistry, Stockholm University, 11418, Stockholm, Sweden.

出版信息

Anal Bioanal Chem. 2024 Feb;416(4):895-912. doi: 10.1007/s00216-023-05075-x. Epub 2023 Dec 30.

DOI:10.1007/s00216-023-05075-x
PMID:38159142
Abstract

Simultaneous identification and quantification of per- and polyfluoroalkyl substances (PFAS) were evaluated for three quadrupole time-of-flight mass spectrometry (QTOF) acquisition methods. The acquisition methods investigated were MS-Only, all ion fragmentation (All-Ions), and automated tandem mass spectrometry (Auto-MS/MS). Target analytes were the 25 PFAS of US EPA Method 533 and the acquisition methods were evaluated by analyte response, limit of quantification (LOQ), accuracy, precision, and target-suspect screening identification limit (IL). PFAS LOQs were consistent across acquisition methods, with individual PFAS LOQs within an order of magnitude. The mean and range for MS-Only, All-Ions, and Auto-MS/MS are 1.3 (0.34-5.1), 2.1 (0.49-5.1), and 1.5 (0.20-5.1) pg on column. For fast data processing and tentative identification with lower confidence, MS-Only is recommended; however, this can lead to false-positives. Where high-confidence identification, structural characterisation, and quantification are desired, Auto-MS/MS is recommended; however, cycle time should be considered where many compounds are anticipated to be present. For comprehensive screening workflows and sample archiving, All-Ions is recommended, facilitating both quantification and retrospective analysis. This study validated HRMS acquisition approaches for quantification (based upon precursor data) and exploration of identification workflows for a range of PFAS compounds.

摘要

同时鉴定和定量分析了三种四极杆飞行时间质谱 (QTOF) 采集方法中的全氟和多氟烷基物质 (PFAS)。研究的采集方法有 MS-Only、全离子碎片化 (All-Ions) 和自动串联质谱 (Auto-MS/MS)。目标分析物为美国环保署方法 533 中的 25 种 PFAS,通过分析物响应、定量限 (LOQ)、准确度、精密度和目标-可疑筛查鉴定限 (IL) 来评估采集方法。PFAS 的 LOQ 在采集方法之间是一致的,个别 PFAS 的 LOQ 在一个数量级内。MS-Only、All-Ions 和 Auto-MS/MS 的平均值和范围分别为 1.3(0.34-5.1)、2.1(0.49-5.1)和 1.5(0.20-5.1)pg/column。为了快速处理数据并以较低的置信度进行暂定鉴定,推荐使用 MS-Only;然而,这可能会导致假阳性。如果需要高置信度的鉴定、结构特征和定量分析,则推荐使用 Auto-MS/MS;然而,应该考虑到循环时间,因为预计会有许多化合物存在。对于综合筛选工作流程和样本存档,推荐使用 All-Ions,它可以促进定量和回顾性分析。本研究验证了 HRMS 采集方法在定量(基于前体数据)和探索各种 PFAS 化合物的鉴定工作流程方面的应用。

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Communicating Confidence of Per- and Polyfluoroalkyl Substance Identification via High-Resolution Mass Spectrometry.
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