LC-MS Lab, Department of Pure and Applied Sciences, University of Urbino Carlo Bo, Piazza Rinascimento 6, 61029, Urbino, Italy.
Laboratorio di Tossicologia, A.S.T. AV1, Via Lombroso 15, 61122, Pesaro, Italy.
Sci Rep. 2023 Apr 20;13(1):6429. doi: 10.1038/s41598-023-33647-5.
One of modern analytical chemistry main challenges is providing as fast as possible results in different application fields. In this view, real-time analysis techniques are experiencing ever-increasing success as they can provide data quickly, almost without sample preparation steps. Most of real-time approaches are based on direct mass spectrometry (DMS), a method of analyzing samples without the need for separation or pre-treatment steps. Instead, the sample is directly introduced into the mass spectrometer for analysis. In this context, ambient ionization mass spectrometry (AIMS) techniques are widely represented and successfully used. Extractive-liquid sampling electron ionization-mass spectrometry (E-LEI-MS) represents a different analytical strategy that allows coupling ambient sampling with electron ionization (EI), avoiding any sample preparation step and providing identification based on the comparison with the National Institute of Standards and Technology (NIST) library spectra. E-LEI-MS consists of a dispositive for solvent release and sampling at ambient conditions coupled with an EI source of a single quadrupole mass spectrometer. A micromanipulator allows fine (x,y,z) positioning of a sampling tip. MS can operate in scan or SIM modes depending on the application goals and requirements. Several preliminary successful results were already obtained due to the highly informative EI mass spectra generation. The system was applied to the analysis of active ingredients in pharmaceutical tablets, pesticides on fruit peel, a drug of abuse (cocaine) determination in banknotes, and analysis of unknown components on painting surfaces. Both forensic and artwork applications allowed determining the spatial distribution of the analytes. Here we present a proof-of-concept of E-LEI-MS for targeted/non-targeted analysis and semi-quantitative detection.
现代分析化学的主要挑战之一是在不同的应用领域提供尽可能快的结果。从这个角度来看,实时分析技术越来越成功,因为它们可以快速提供数据,几乎不需要样品制备步骤。大多数实时方法都是基于直接质谱(DMS),这是一种无需分离或预处理步骤即可分析样品的方法。相反,样品直接引入质谱仪进行分析。在这种情况下,大气离子化质谱(AIMS)技术得到了广泛的应用和成功应用。萃取液采样电子电离质谱(E-LEI-MS)代表了一种不同的分析策略,它允许将环境采样与电子电离(EI)相结合,避免任何样品制备步骤,并基于与国家标准与技术研究所(NIST)库光谱的比较提供识别。E-LEI-MS 由一个在环境条件下释放溶剂和采样的装置组成,与单四极杆质谱仪的 EI 源耦合。一个微操作器允许对采样尖端进行精细的(x,y,z)定位。MS 可以在扫描或 SIM 模式下运行,具体取决于应用目标和要求。由于生成了高度信息丰富的 EI 质谱,已经获得了一些初步的成功结果。该系统已应用于药物片剂中有效成分的分析、水果皮上的农药、钞票中滥用药物(可卡因)的测定以及绘画表面上未知成分的分析。法医和艺术品应用都允许确定分析物的空间分布。在这里,我们提出了 E-LEI-MS 用于靶向/非靶向分析和半定量检测的概念验证。