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带涂层的刀片喷雾:改善负电喷雾离子化和样品制备。

Coated Blade Spray with a Barrier: Improving Negative Electrospray Ionization and Sample Preparation.

机构信息

Department of Chemistry, University of Waterloo, Waterloo, OntarioN2L 3G1, Canada.

出版信息

Anal Chem. 2022 Nov 15;94(45):15879-15886. doi: 10.1021/acs.analchem.2c04003. Epub 2022 Nov 3.

Abstract

Substrate-based electrospray ionization (ESI) techniques like paper, wooden tip, plastic tip, and metal-needle-based spray suffer from corona discharge, high background noise, and unstable spray in negative ionization mode, especially for the analysis of complex biological matrices, such as blood and urine. Coated blade spray coupled with mass spectrometry (CBS-MS) combines solid-phase microextraction's (SPME) efficient sample clean-up and enrichment and ambient MS's fast analysis and has proven to be an appealing alternative tool for the fast screening of target analytes in complex matrices. This paper documents the development of a new CBS blade design that features a barrier at the far end of the ESI tip. The findings of this work show that the addition of this simple barrier enabled the total RSD% to be reduced to less than 10% for sample preparation, ionization, and the MS detection of several drugs of abuse in negative mode, without compensation using internal standards. The improved stability of ESI in negative mode was investigated by observing the ESI process with a microscope camera and testing via CBS-MS. The new design was applied for the analysis of three drugs of abuse in urine, with the calibration curve correlation coefficient ( ≥ 0.9997) being calculated without the use of internal standards. The overall RSD% of the peak area for one compound in 42 samples was 6.9%, which highlights the method's incredible reproducibility compared to other ambient MS techniques for analyzing real samples. The CBS device with a barrier was also applied for the on-blade sampling of 14 drugs of abuse in 20 μL of plasma spot in positive ionization mode. The results of these tests yielded a calibration curve correlation coefficient of ≥ 0.9883 and limits of quantification (LOQs) between 0.25 and 25 ng/mL. The obtained results provide guidance on CBS device design optimization and the effective automation of the protocol.

摘要

基于底物的电喷雾电离(ESI)技术,如纸、木尖、塑料尖和金属针尖喷雾,在负离子模式下会受到电晕放电、背景噪声高和喷雾不稳定的影响,尤其是在分析复杂的生物基质,如血液和尿液时。涂覆刀片喷雾与质谱(CBS-MS)相结合,结合了固相微萃取(SPME)的高效样品净化和富集以及环境 MS 的快速分析,已被证明是一种有吸引力的替代工具,可用于快速筛选复杂基质中的目标分析物。本文介绍了一种新型 CBS 刀片设计的开发,该设计在 ESI 尖端的远端有一个屏障。这项工作的结果表明,添加这个简单的屏障可以将样品制备、电离和 MS 检测几种滥用药物的总 RSD%降低到 10%以下,而无需使用内标进行补偿。通过显微镜相机观察 ESI 过程和通过 CBS-MS 进行测试,研究了负离子模式下 ESI 的稳定性。新设计应用于尿液中三种滥用药物的分析,无需使用内标即可计算校准曲线相关系数(≥0.9997)。在 42 个样品中一种化合物的峰面积的总 RSD%为 6.9%,这突出了与其他环境 MS 技术相比,该方法在分析实际样品时具有令人难以置信的重现性。带有屏障的 CBS 装置也应用于正离子模式下在 20μL 血浆斑点上对 14 种滥用药物的在线采样。这些测试的结果得到了校准曲线相关系数≥0.9883 和定量下限(LOQ)在 0.25 和 25ng/mL 之间。获得的结果为 CBS 装置设计优化和协议的有效自动化提供了指导。

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