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固相微萃取-传输模式(SPME-TM)和实时直接分析(DART)快速筛选和定量检测食品和环境基质中的农药。

Ultrafast Screening and Quantitation of Pesticides in Food and Environmental Matrices by Solid-Phase Microextraction-Transmission Mode (SPME-TM) and Direct Analysis in Real Time (DART).

机构信息

Department of Chemistry, University of Waterloo , Waterloo, Ontario, Canada.

出版信息

Anal Chem. 2017 Jul 5;89(13):7240-7248. doi: 10.1021/acs.analchem.7b01553. Epub 2017 Jun 12.

Abstract

The direct interface of microextraction technologies to mass spectrometry (MS) has unquestionably revolutionized the speed and efficacy at which complex matrices are analyzed. Solid Phase Micro Extraction-Transmission Mode (SPME-TM) is a technology conceived as an effective synergy between sample preparation and ambient ionization. Succinctly, the device consists of a mesh coated with polymeric particles that extracts analytes of interest present in a given sample matrix. This coated mesh acts as a transmission-mode substrate for Direct Analysis in Real Time (DART), allowing for rapid and efficient thermal desorption/ionization of analytes previously concentrated on the coating, and dramatically lowering the limits of detection attained by sole DART analysis. In this study, we present SPME-TM as a novel tool for the ultrafast enrichment of pesticides present in food and environmental matrices and their quantitative determination by MS via DART ionization. Limits of quantitation in the subnanogram per milliliter range can be attained, while total analysis time does not exceed 2 min per sample. In addition to target information obtained via tandem MS, retrospective studies of the same sample via high-resolution mass spectrometry (HRMS) were accomplished by thermally desorbing a different segment of the microextraction device.

摘要

微萃取技术与质谱(MS)的直接接口无疑极大地提高了分析复杂基质的速度和效率。固相微萃取-传输模式(SPME-TM)是一种被认为是样品制备和环境离子化之间有效协同作用的技术。简单来说,该装置由涂覆有聚合物颗粒的网格组成,可从给定的样品基质中提取感兴趣的分析物。这种涂覆的网格作为实时直接分析(DART)的传输模式基质,允许先前在涂层上浓缩的分析物快速有效地进行热解吸/离子化,并大大降低了仅通过 DART 分析获得的检测限。在这项研究中,我们将 SPME-TM 作为一种新颖的工具,用于快速富集食品和环境基质中的农药,并通过 DART 离子化进行 MS 定量测定。可以达到亚纳克/毫升级的定量限,而每个样品的总分析时间不超过 2 分钟。除了通过串联 MS 获得的目标信息外,还通过热解吸微萃取装置的不同部分来完成对同一样品的高分辨率质谱(HRMS)的回溯研究。

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