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纸喷雾质谱直接耦合与四相电萃取样品制备。

Direct coupling of paper spray mass spectrometry and four-phase electroextraction sample preparation.

机构信息

Universidade Federal de Minas Gerais, Instituto de Ciências Exatas, Departamento de Química, Belo Horizonte, MG, Brazil.

出版信息

Analyst. 2021 Feb 7;146(3):1057-1064. doi: 10.1039/d0an01699c. Epub 2020 Dec 17.

Abstract

This paper presents a novel coupling between a four-phase electroextraction (EE) system and paper spray mass spectrometry (PS-MS) for the extraction, pre-concentration, and direct analysis of target compounds in different samples. The approach, EE-PS-MS, is based on the sorption of analytes directly on the tip of a triangular-shaped chromatographic paper, with subsequent prompt analysis by PS-MS. Thus, no off-line extraction step is required before the PS analysis, improving the protocol efficiency and reducing the analysis time. In addition to functioning as a porous material to absorb the target compounds, the chromatographic paper also served as the support for one of the aqueous phases of the optimized four-phase electroextraction system. Extraction conditions, such as the composition of the donor and organic phases, applied electric potential, and extraction time, were optimized. Three different applications, involving biofluid, food, and water quality analysis, were evaluated as a proof-of-concept. These applications involved the determination of (i) cocaine and lidocaine in saliva, (ii) malachite green in tap water, and (iii) bisphenol A (BPA) in red wine. When compared with direct PS-MS, the novel EE-PS-MS protocol improved the sensitivities by factors ranging from 14 to 110, depending on the analyte and the sample. The electroextraction procedures were performed on a laboratory-built 66-well plate, which offered the functionality of simultaneous sample handling and, most importantly, improved analytical throughput.

摘要

本文提出了一种将四相电萃取 (EE) 系统与纸喷雾质谱 (PS-MS) 相结合的新方法,用于从不同样品中提取、预浓缩和直接分析目标化合物。该方法(EE-PS-MS)基于将分析物直接吸附在三角形色谱纸条的尖端,随后通过 PS-MS 进行即时分析。因此,在 PS 分析之前不需要进行离线提取步骤,从而提高了实验效率并缩短了分析时间。除了作为多孔材料吸收目标化合物外,色谱纸条还作为优化的四相电萃取系统的其中一个水相的支撑。优化了萃取条件,如供体相和有机相的组成、施加的电势和萃取时间。评估了三个不同的应用,包括生物流体、食品和水质分析,作为概念验证。这些应用涉及到:(i) 唾液中的可卡因和利多卡因,(ii) 自来水中的孔雀石绿,以及 (iii) 红酒中的双酚 A (BPA)。与直接 PS-MS 相比,新的 EE-PS-MS 方法通过因子从 14 到 110 不等,提高了灵敏度,具体取决于分析物和样品。电萃取程序在实验室自制的 66 孔板上进行,该板提供了同时处理样品的功能,最重要的是提高了分析通量。

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