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氮杂螺旋酸生物毒素的研究。I. 使用整体柱的超快速高分辨率液相色谱/质谱分离

Studies on azaspiracid biotoxins. I. Ultrafast high-resolution liquid chromatography/mass spectrometry separations using monolithic columns.

作者信息

Volmer Dietrich A, Brombacher Stephan, Whitehead Bob

机构信息

Institute for Marine Biosciences, National Research Council, 1411 Oxford Street, Halifax, Nova Scotia B3H 3Z1, Canada.

出版信息

Rapid Commun Mass Spectrom. 2002;16(24):2298-305. doi: 10.1002/rcm.851.

Abstract

In this study, the performance of monolithic columns was evaluated for ultrafast liquid chromatography/mass spectrometry (LC/MS) analyses and for high-resolution separations of several azaspiracid biotoxin analogs. Because of their high permeability, monolithic columns offer a number of advantages over conventional packed columns; viz., very low backpressures and relatively flat van Deemter curves at high flow rates. That is, very high flow rates can be used for ultrafast analyses or, by using longer than normal columns, high-resolution separations are possible. In a series of experiments, we varied the mobile phase flow rates between 1 and 8 mL/min, and studied their impact on chromatographic parameters such as retention time, resolution, number of plates and pressure. The chromatographic run times could be reduced to ca. 30 s without a significant change in the separation efficiency. A signal intensity comparison revealed interesting differences between atmospheric-pressure chemical ionization (APCI) and electrospray ionization (ESI) in their flow-rate dependency. An explanation with respect to the behavior as of a mass-flow or a concentration-dependent device is given in the paper. Additionally, the column length was varied between 10 and 70 cm. As a result, the number of theoretical plates increased substantially. In the example shown in the report, an increase from 13 000 plates for a 10-cm column to 80 000 for a 70-cm column is demonstrated. In addition, the potential of the monolithic columns for high-resolution LC/MS separations is shown for a complex biotoxin mixture, which was separated on a 40-cm-long column.

摘要

在本研究中,对整体柱在超快速液相色谱/质谱(LC/MS)分析以及几种azaspiracid生物毒素类似物的高分辨率分离方面的性能进行了评估。由于其高渗透性,整体柱相对于传统填充柱具有许多优势;即,背压非常低,并且在高流速下范德姆特曲线相对平坦。也就是说,可以使用非常高的流速进行超快速分析,或者通过使用比正常柱更长的柱,实现高分辨率分离。在一系列实验中,我们将流动相流速在1至8 mL/min之间变化,并研究了它们对色谱参数(如保留时间、分离度、塔板数和压力)的影响。色谱运行时间可缩短至约30秒,而分离效率没有显著变化。信号强度比较揭示了大气压化学电离(APCI)和电喷雾电离(ESI)在流速依赖性方面的有趣差异。本文给出了关于其作为质量流或浓度依赖性装置行为的解释。此外,柱长在10至70 cm之间变化。结果,理论塔板数大幅增加。在报告中所示的示例中,展示了从10 cm柱的13000个塔板增加到70 cm柱的80000个塔板。此外,对于在40 cm长的柱上分离的复杂生物毒素混合物,展示了整体柱用于高分辨率LC/MS分离的潜力。

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