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使用膜接口实现高效凝胶过滤色谱与成像毛细管等电聚焦的在线联用。

On-line coupling of high performance gel filtration chromatography with imaged capillary isoelectric focusing using a membrane interface.

作者信息

Tragas C, Pawliszyn J

机构信息

Department of Chemistry, University of Waterloo, ON, Canada.

出版信息

Electrophoresis. 2000 Jan;21(1):227-37. doi: 10.1002/(SICI)1522-2683(20000101)21:1<227::AID-ELPS227>3.0.CO;2-M.

Abstract

A high performance liquid chromatography system, a sample preparation device, and an imaged capillary IEF (CIEF) instrument are integrated and multiplexed on-line. The system is equivalent to two-dimensional polyacrylamide gel electrophoresis (2-D PAGE), by transferring the principle of 2-D separation to the capillary format. High performance liquid chromatography (HPLC) provides protein separation based on size using a gel filtration chromatography (GFC) column. Each eluted protein is sampled and directed to a novel microdialysis hollow fiber membrane device, where simultaneous desalting and carrier ampholyte mixing occurs. The sample is then driven to the separation column in an on-line fashion, where CIEF takes place. The fluidic technology used by our 2-D system leads to natural automation. The coupling of the two techniques is simple. This is attributed to high speed and efficiency of the sample preparation device that acts as an interface between the two systems, as well as the speed and simplicity of our whole column absorption imaged CIEF instrument. To demonstrate the feasibility of this approach, the separation of a mixture of two model proteins is studied. Sample preparation and CIEF were complete in just 4-5 min, for each of the eluted proteins. Total analysis time is about 24 min. Three-dimensional data representations are constructed. Challenges and methods to further improve our instrument are discussed, and the design of an improved horseshoe-shaped sample preparation sample loop membrane interface is presented and characterized.

摘要

一个高效液相色谱系统、一个样品制备装置和一个成像毛细管等电聚焦(CIEF)仪器被在线集成和多路复用。该系统相当于二维聚丙烯酰胺凝胶电泳(2-D PAGE),它将二维分离原理转移到毛细管形式中。高效液相色谱(HPLC)使用凝胶过滤色谱(GFC)柱基于大小对蛋白质进行分离。每个洗脱的蛋白质都被采样并导向一个新型的微透析中空纤维膜装置,在那里同时进行脱盐和载体两性电解质混合。然后样品以在线方式被驱动到分离柱,在那里进行CIEF。我们的二维系统所使用的流体技术实现了自然自动化。这两种技术的耦合很简单。这归因于作为两个系统之间接口的样品制备装置的高速和高效,以及我们的全柱吸收成像CIEF仪器的速度和简便性。为了证明这种方法的可行性,研究了两种模型蛋白质混合物的分离。对于每个洗脱的蛋白质,样品制备和CIEF在仅4 - 5分钟内就完成了。总分析时间约为24分钟。构建了三维数据表示。讨论了进一步改进我们仪器的挑战和方法,并展示了一种改进的马蹄形样品制备样品环膜接口的设计并对其进行了表征。

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