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CE 和 ESI 解耦,以实现与 MS 更稳健的接口。

Decoupling CE and ESI for a more robust interface with MS.

机构信息

Department of Chemistry, University of British Columbia, Vancouver, BC, Canada.

出版信息

Electrophoresis. 2010 Apr;31(7):1130-1137. doi: 10.1002/elps.200900517.

Abstract

An interface for CE-ESI-MS that decouples both the electrical and the solution flow rate requirements of the separation and ionization processes is presented. The interface uses a tapered and beveled stainless steel hollow needle surrounding the separation capillary terminus so that the inside of the electrode acts as the CE outlet vial and the outside tip acts as the electrospray emitter. No capillary pre-treatment is required, enabling the use of capillaries with any type of surface modification. A chemical modifier solution is introduced through a second capillary connected to the needle via a tee junction and can be used to improve the compatibility of the CE BGE with electrospray. The flow rate of modifier solution can be as low as 0.1 microL/min, much less than that in a typical sheath-flow interface, thus minimizing dilution of the CE effluent in order to maximize sensitivity. The presence of the modifier solution also allows the use of neutral-coated capillaries for protein analysis by CE-MS without using an assisting pressure, despite the absence of EOF under these conditions. The interface is easily integrated into a commercial CE instrument, such that all operations can be carried out by the automated controls. Compared with a commercial sheath-flow CE-MS interface operating under optimized conditions, LODs for amino acids were, on average, improved fivefold.

摘要

本文介绍了一种用于 CE-ESI-MS 的接口,该接口可解耦分离和离子化过程的电和溶液流速要求。该接口使用锥形和斜角不锈钢空心针围绕分离毛细管末端,使得电极的内部充当 CE 出口小瓶,而外部尖端充当电喷雾发射器。不需要毛细管预处理,从而可以使用任何类型表面改性的毛细管。通过通过 T 形接头连接到针的第二根毛细管引入化学改性剂溶液,并且可以用于改善 CE BGE 与电喷雾的兼容性。改性剂溶液的流速可以低至 0.1 μL/min,远低于典型的鞘流接口中的流速,从而最大程度地减少了 CE 流出物的稀释,以最大程度地提高灵敏度。改性剂溶液的存在还允许在没有辅助压力的情况下使用中性涂层毛细管进行 CE-MS 中的蛋白质分析,尽管在这些条件下不存在 EOF。该接口易于集成到商业 CE 仪器中,从而可以通过自动化控制进行所有操作。与在优化条件下运行的商业鞘流 CE-MS 接口相比,氨基酸的 LOD 平均提高了五倍。

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