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低温等离子体解吸/电离质谱法在滤器基质上采集呼出气的定量分析。

Quantitative Analysis of Exhaled Breath Collected on Filter Substrates via Low-Temperature Plasma Desorption/Ionization Mass Spectrometry.

机构信息

Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, Texas 79409-1061, United States.

出版信息

J Am Soc Mass Spectrom. 2022 Aug 3;33(8):1518-1529. doi: 10.1021/jasms.2c00109. Epub 2022 Jul 6.

Abstract

Breath analysis has attracted increasing attention in recent years due to its great potential for disease diagnostics at early stages and for clinical drug monitoring. There are several recent examples of successful development of real-time, in vivo quantitative analysis of exhaled breath metabolites via mass spectrometry. On the other hand, current mass spectrometer accessibility limitations restrict point-of-care applications. Here now, an offline method is developed for quantitative analysis of exhaled breath collected on inexpensive filter substrates for direct desorption and ionization by using low-temperature plasma-mass spectrometry (LTP-MS). In particular, different operating conditions of the ionization source were systematically studied to optimize desorption/ionization by using glycerol, a low volatility compound. Applications with respect to propofol, γ-valprolactone, and nicotine analysis in exhaled breath are demonstrated in this study. The effects of several filter substrate properties, including filter material and pore size, on the analyte signal were characterized. Cellulose filter papers performed best with the present analytes. In addition, filters with smaller pores enabled a more efficient sample collection. Furthermore, sample-collection flow rate was determined to have a very significant effect, with slower flow rates yielding the best results. It was also found that filters loaded with sample can be successfully stored in glass vials with no observable sample loss even after 3 days. Limits of detection under optimized conditions are shown to be competitive or significantly better compared with relevant techniques and with additional benefits of cost-efficiency and sample storage capabilities.

摘要

近年来,由于呼吸分析在疾病早期诊断和临床药物监测方面具有巨大的潜力,因此越来越受到关注。有几个最近成功开发实时、体内呼出代谢物定量分析的例子通过质谱法。另一方面,当前质谱仪的可及性限制限制了即时护理应用。现在,开发了一种离线方法,用于对在廉价过滤衬底上收集的呼出气体进行定量分析,该方法通过低温等离子体质谱(LTP-MS)直接进行解吸和电离。特别是,系统地研究了离子源的不同操作条件,以使用甘油优化解吸/电离,甘油是一种低挥发性化合物。本研究中展示了呼出气体中丙泊酚、γ-羟基丁酸和尼古丁分析的应用。研究了几种过滤衬底特性(包括过滤材料和孔径)对分析物信号的影响。对于本分析物,纤维素滤纸的性能最佳。此外,较小孔径的过滤器能够更有效地收集样品。此外,确定了样品收集流速对结果有非常显著的影响,较慢的流速可获得最佳结果。还发现,即使在 3 天后,装有样品的过滤器也可以成功地储存在玻璃小瓶中,而不会观察到样品损失。在优化条件下,检测限与相关技术相当或显著更好,并且具有成本效益和样品存储能力的额外优势。

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