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超高压液相色谱与质谱联用:限制因素及可能的应用。

Coupling ultra high-pressure liquid chromatography with mass spectrometry: constraints and possible applications.

机构信息

School of Pharmaceutical Sciences, University of Geneva, University of Lausanne, Boulevard d'Yvoy 20, 1211 Geneva 4, Switzerland.

出版信息

J Chromatogr A. 2013 May 31;1292:2-18. doi: 10.1016/j.chroma.2012.09.061. Epub 2012 Sep 25.

Abstract

The introduction of columns packed with porous sub-2μm particles and the extension of the upper pressure limit of HPLC instrumentation to 1300bar (ultra-high pressure liquid chromatography, UHPLC) has opened new frontiers in resolution and speed of analysis. However, certain constraints appear when coupling UHPLC technology with mass spectrometry (MS). First, the most significant limitation is related to the narrow peaks that are produced by UHPLC that require a fast duty cycle, which is only available on the latest generations of MS devices. Thus, certain analyzers are more readily compatible with UHPLC (e.g., QqQ or TOF/MS) than others (e.g., ion trap or FT-MS). Second, due to the reduction of the column volume, extra-column band broadening can become significant, leading to a reduction in the kinetic performance of the UHPLC-MS configuration. Third, as the mobile phase linear velocity is higher in UHPLC, the electrospray ionization source must also be able to provide high sensitivity at flow rates of up to 1mL/min. Despite these limitations, the UHPLC-MS/MS platform has successfully been employed over the last decade for various types of applications, including those related to bioanalysis, drug metabolism, multi-residue screening, metabolomics, biopharmaceuticals and polar compounds.

摘要

柱内填充多孔亚 2μm 颗粒的引入以及高效液相色谱仪(HPLC)的上压限制扩展到 1300bar(超高效液相色谱,UHPLC),为分析的分辨率和速度开辟了新的领域。然而,当将 UHPLC 技术与质谱(MS)联用时,会出现某些限制。首先,最显著的限制与 UHPLC 产生的窄峰有关,这些窄峰需要快速的工作周期,而这仅在最新几代 MS 设备上可用。因此,某些分析仪比其他分析仪(例如离子阱或 FT-MS)更易于与 UHPLC 兼容(例如 QqQ 或 TOF/MS)。其次,由于柱体积的减小,柱外带宽展宽可能变得显著,从而降低 UHPLC-MS 配置的动力学性能。第三,由于 UHPLC 中的流动相线速度较高,电喷雾电离源还必须能够在高达 1mL/min 的流速下提供高灵敏度。尽管存在这些限制,但 UHPLC-MS/MS 平台在过去十年中已成功用于各种类型的应用,包括与生物分析、药物代谢、多残留筛选、代谢组学、生物制药和极性化合物相关的应用。

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