喷雾溶剂选择对下一代喷雾式环境质谱电离源性能的关键性:基于合成大麻素法医证据的案例研究

Q3 Physics and Astronomy Instruments Pub Date : 2024-06-01 DOI:10.3390/instruments8020034
Shahnaz Mukta, Ebenezer H. Bondzie, Sara E. Bell, Chase Deberry, Christopher C. Mulligan
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引用次数: 0

摘要

质谱法(MS)是一种选择性强、灵敏度高的分析工具,应用广泛,但由于需要处理和准备,此类技术通常在实验室环境中使用。便携式质谱系统和下一代环境电离方法这两个强大的研究方向的融合,使我们现在有能力以现场和按需的方式进行高性能的化学筛选,并自然而然地应用于法医学等学科,在这些学科中,感兴趣的样本通常是在现场环境中发现的(如交通站、犯罪现场等)。因此,在将这些方法用于真实的法医证据处理时,对其适用性和稳健性进行调查是非常谨慎的。本研究报告对喷雾溶剂系统的选择在两种基于喷雾的环境电离源(纸喷雾电离(PSI)和过滤锥喷雾电离(FCSI))的分析性能方面所起的作用进行了深入探讨,这两种环境电离源用于含有新合成大麻素的证据类型。本文所报告的系统特性研究表明,所使用的喷雾溶剂会极大地影响光谱强度和信号持续时间,在某些情况下还会产生有害的假阴性反应。总体而言,基于乙腈的系统可在分析物溶解度问题和便携式 MS 系统采用的新型离子源的喷雾电离动力学之间取得平衡。
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Criticality of Spray Solvent Choice on the Performance of Next Generation, Spray-Based Ambient Mass Spectrometric Ionization Sources: A Case Study Based on Synthetic Cannabinoid Forensic Evidence
Mass spectrometry (MS) is a highly selective and sensitive analytical tool with a myriad of applications, but such techniques are typically used in laboratory settings due to the handling and preparations that are necessary. The merging of two streams of robust research, portable MS systems and next-generation ambient ionization methods, now provides the ability to perform high-performance chemical screening in an on-site and on-demand manner, with natural applications in disciplines such as forensic science, where samples of interest are typically found in field environments (i.e., traffic stops, crime scenes, etc.). Correspondingly, investigations regarding the suitability and robustness of these methodologies when they are utilized for authentic forensic evidence processing are prudent. This work reports critical insights into the role that choice of spray solvent system plays regarding analytical performance of two spray-based ambient ionization sources, paper spray ionization (PSI) and filter cone spray ionization (FCSI), when employed for evidence types containing emerging synthetic cannabinoids. The systematic characterization studies reported herein show that the applied spray solvent can dramatically affect both spectral intensity and signal duration, and in some circumstances, yield deleterious false negative responses. Overall, acetonitrile-based systems are shown to strike a balance between analyte solubility concerns and spray ionization dynamics of the novel ion sources employed on portable MS systems.
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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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