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一种带有离子载体膜填充导电通道的无鞘CE/ESI-MS接口。

A sheathless CE/ESI-MS interface with an ionophore membrane-packed electro-conduction channel.

作者信息

Shi Lian-Hua, Jin You-Xun, Moon Dong-Cheul, Kim Sook-Kyung, Park Sang-Ryoul

机构信息

Health Metrology Center, Korea Research Institute of Standards and Science, Yusung-gu, Daejeon, Korea.

出版信息

Electrophoresis. 2009 May;30(10):1661-9. doi: 10.1002/elps.200800664.

Abstract

A robust and convenient sheathless CE/ESI-MS interface realized with an ionophore membrane-packed electro-conduction channel is described. Sheathless interfaces that may provide higher sensitivity for MS detection than sheath flow-supported interfaces generally show instability and short lifetimes due to their imperfection in making an electrical contact with the emitter tip. In this work, we designed a sheathless interface based on an ionophore membrane-packed electro-conduction channel. At the joining point of the CE capillary and the emitter capillary, the conduction channel was implemented toward the exterior of the interface body, where a platinum wire electrode was placed. The conduction channel transferred the electric field from the external Pt electrode to the joining point, but prevented the effluent of CE from leaking. The interface body was designed to have receptacles for standard capillary tubing with finger-tight fittings, which allowed easy replacement of capillary tubing. Stable electrospray was observed for an extended time period without any signs of bubbling or damage to the emitter tip. No significant increment of dead-volume at the interface was observed for well-aligned capillaries. Sensitive and stable CE-MS detection of the model compound of creatinine and uric acid was demonstrated.

摘要

描述了一种通过离子载体膜填充的导电通道实现的坚固且便捷的无鞘CE/ESI-MS接口。与鞘流支持的接口相比,无鞘接口可能为质谱检测提供更高的灵敏度,但由于其在与发射极尖端进行电接触方面存在缺陷,通常表现出不稳定性和较短的使用寿命。在这项工作中,我们设计了一种基于离子载体膜填充导电通道的无鞘接口。在CE毛细管和发射极毛细管的连接点处,导电通道朝向接口主体外部延伸,在那里放置了一根铂丝电极。导电通道将电场从外部铂电极传递到连接点,但防止CE流出液泄漏。接口主体设计有用于标准毛细管的插座,带有手指拧紧的配件,便于更换毛细管。在较长时间内观察到稳定的电喷雾,没有任何气泡迹象或发射极尖端损坏。对于对齐良好的毛细管,在接口处未观察到明显的死体积增加。证明了对肌酐和尿酸模型化合物进行灵敏且稳定的CE-MS检测。

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