Université de Lorraine, LCP-A2MC, F-57000, Metz, France; Laboratoire de Spectrométrie de Masse des Interactions et des Systèmes (LSMIS) UMR 7140 (Unistra-CNRS), Université de, Strasbourg, France.
Université de Lorraine, LCP-A2MC, F-57000, Metz, France.
Talanta. 2023 May 15;257:124324. doi: 10.1016/j.talanta.2023.124324. Epub 2023 Feb 3.
This review provides an overview of the online hyphenation of Fourier Transform Ion Cyclotron Resonance Mass Spectrometry (FT-ICR MS) with separation methods to date. The online coupling between separation techniques (gas and liquid chromatography, capillary electrophoresis) and FT-ICR MS essentially raises questions of compromise and is not look as straightforward as hyphenation with other analyzers (QTOF-MS for instance). FT-ICR MS requires time to reach its highest resolving power and accuracy in mass measurement capabilities whereas chromatographic and electrophoretic peaks are transient. In many applications, the strengths and the weaknesses of each technique are balanced by their hyphenation. Untargeted "Omics" (e.g. proteomics, metabolomics, petroleomics, …) is one of the main areas of application for FT-ICR MS hyphenated to online separation techniques because of the complexity of the sample. FT-ICR MS achieves the required high mass measurement accuracy to determine accurate molecular formulae and resolution for isobar distinction. Meanwhile separation techniques highlight isomers and reduce the ion suppression effects extending the dynamic range. Even if the implementation of FT-ICR MS hyphenated with online separation methods is a little trickier (the art of compromise), this review shows that it provides unparalleled results to the scientific community (the art of the possible), along with raising the issue of its future in the field with the relentless technological progress.
这篇综述概述了傅里叶变换离子回旋共振质谱(FT-ICR MS)与迄今为止的分离方法的在线连接。分离技术(气相和液相色谱、毛细管电泳)与 FT-ICR MS 的在线耦合本质上提出了妥协的问题,并不像与其他分析仪(例如 QTOF-MS)的连接那样简单。FT-ICR MS 需要时间来达到其最高的分辨率和质量测量能力的准确性,而色谱和电泳峰是瞬态的。在许多应用中,每种技术的优缺点通过它们的连接得到平衡。非靶向的“组学”(例如蛋白质组学、代谢组学、石油组学等)是 FT-ICR MS 与在线分离技术连接的主要应用领域之一,因为样品的复杂性。FT-ICR MS 实现了所需的高质量测量准确性,以确定准确的分子公式和分辨率,以区分等摩尔峰。同时,分离技术突出了异构体,减少了离子抑制效应,扩展了动态范围。即使 FT-ICR MS 与在线分离方法的连接实施稍微复杂一些(妥协的艺术),但这篇综述表明,它为科学界提供了无与伦比的结果(可能的艺术),同时随着技术的不断进步,提出了其在该领域的未来问题。