Department of Chemistry and Biochemistry, Auburn University, Auburn, Alabama 36849-5312, United States.
J Am Soc Mass Spectrom. 2022 Jan 5;33(1):160-171. doi: 10.1021/jasms.1c00311. Epub 2021 Dec 15.
Current methods typically used for metabolite screening and disease diagnosis often require extensive sample preparation, which increases analysis time and associated costs. While ambient ionization techniques enable the analysis of various samples in complex matrices with little or no sample preparation in a short time (typically within a minute), their reduced selectivity, even when coupled with high-resolution mass spectrometers, limits their application in certain fields. In this study, we have optimized the coupling of paper spray (PS) and leaf spray (LS) ambient ionization techniques with a commercially available ion mobility mass spectrometer (IM-MS) and demonstrated the separation of geometric and constitutional isomers. Ambient ionization techniques allow simultaneous introduction and ionization of samples, while background noise and matrix interference from paper and leaf substrates are filtered out by IM separation, resulting in high sensitivity and selectivity of the PS-IM-MS and LS-IM-MS workflows. In addition, we introduced a novel approach to perform single-field collision cross section (CCS) measurements, which resulted in CCS values that differ by 0.15% and 0.25% from traditional stepped-field and single-field methods, respectively. In addition, we used advanced computational tools to confidently identify analyte structures by comparing CCS values from experimental IM measurements and theoretical calculations. These results suggest that the coupling of ambient ionization methods with ion mobility techniques enables rapid, sensitive, and highly selective analysis that can be used in different fields, such as agrochemical screening and disease diagnostics.
目前用于代谢物筛选和疾病诊断的方法通常需要进行大量的样品制备,这增加了分析时间和相关成本。虽然大气离子化技术能够在短时间内(通常在一分钟内)对各种复杂基质中的样品进行分析,而无需或只需少量的样品制备,但它们的选择性较低,即使与高分辨率质谱仪结合使用,也限制了它们在某些领域的应用。在这项研究中,我们优化了纸喷雾(PS)和叶喷雾(LS)大气离子化技术与市售离子淌度质谱仪(IM-MS)的耦合,并展示了对几何和构象异构体的分离。大气离子化技术允许样品的同时引入和离子化,而纸和叶基质的背景噪声和基质干扰则通过 IM 分离过滤掉,从而提高了 PS-IM-MS 和 LS-IM-MS 工作流程的灵敏度和选择性。此外,我们引入了一种新的方法来进行单场碰撞截面(CCS)测量,得到的 CCS 值与传统的分步场和单场方法相比分别相差 0.15%和 0.25%。此外,我们使用先进的计算工具通过比较实验 IM 测量和理论计算的 CCS 值来自信地识别分析物结构。这些结果表明,大气离子化方法与离子淌度技术的结合能够实现快速、灵敏和高度选择性的分析,可用于不同领域,如农药筛选和疾病诊断。