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纳升级液相色谱-电喷雾串联质谱:生物化学分析新视角。

NanoLC-EI-MS: Perspectives in Biochemical Analysis.

机构信息

Institute of Chemistry of São Carlos, University of São Paulo, São Carlos 13566-590, Brazil.

出版信息

Int J Mol Sci. 2023 Jul 21;24(14):11746. doi: 10.3390/ijms241411746.

Abstract

Although LC-MS with atmospheric pressure ionization (API) sources is the primary technique used in modern bioanalytical studies, electron ionization mass spectrometry (EI-MS) can provide some substantial advantages over it. EI-MS is a matrix effect-free technique that provides reproducible and comparable mass spectra, serving as a compound fingerprint for easy identification through automated comparison with spectral libraries. Leveraging EI-MS in biochemical studies can yield critical analytical benefits for targeted and untargeted analyses. However, to fully utilize EI-MS for heavy and non-volatile molecules, a new technology that enables the coupling of liquid chromatography with EI-MS is needed. Recent advancements in nanoLC have addressed the compatibility issues between LC and EI-MS, and innovative interfacing strategies such as Direct-EI, liquid electron ionization (LEI), and Cold-EI have extended the application of EI-MS beyond the determination of volatile organic molecules. This review provides an overview of the latest developments in nanoLC-EI-MS interfacing technologies, discussing their scope and limitations. Additionally, selected examples of nanoLC-EI-MS applications in the field of biochemical analysis are presented, highlighting the potential prospects and benefits that the establishment of this technique can bring to this field.

摘要

尽管大气压电离 (API) 源的 LC-MS 是现代生物分析研究中主要使用的技术,但电子电离质谱 (EI-MS) 与之相比具有一些实质性的优势。EI-MS 是一种无基质效应的技术,可提供重现性和可比较的质谱,通过与光谱库的自动比较作为化合物指纹,便于识别。在生化研究中利用 EI-MS 可以为靶向和非靶向分析带来关键的分析益处。然而,要充分利用 EI-MS 分析重质和非挥发性分子,需要一种能够将液相色谱与 EI-MS 耦合的新技术。最近在纳升液相色谱方面的进展解决了 LC 和 EI-MS 之间的兼容性问题,创新的接口策略,如直接 EI、液体电子电离 (LEI) 和冷 EI,已经将 EI-MS 的应用扩展到了挥发性有机分子的测定之外。本文综述了纳升液相色谱 -EI-MS 接口技术的最新发展,讨论了它们的范围和局限性。此外,还介绍了纳升液相色谱 -EI-MS 在生化分析领域的应用实例,突出了该技术的建立可能给该领域带来的潜在前景和益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85ee/10380556/567c00e77f63/ijms-24-11746-g001.jpg

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