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使用连续多层离子聚合物层(SMIL)涂层技术修饰的毛细管对蛋白质和对映体进行电泳分析。

Electrophoretic analysis of proteins and enantiomers using capillaries modified by a successive multiple ionic-polymer layer (SMIL) coating technique.

作者信息

Kitagawa Fumihiko, Kamiya Masato, Okamoto Yukihiro, Taji Hiromi, Onoue Satomi, Tsuda Yoshiko, Otsuka Koji

机构信息

Department of Material Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto, 615-8510, Japan.

出版信息

Anal Bioanal Chem. 2006 Oct;386(3):594-601. doi: 10.1007/s00216-006-0438-x. Epub 2006 May 16.

Abstract

The applicability of three-layer coatings consisting of three different polymers (A(+)-B(-)-C(+) coating) prepared by a successive multiple ionic-polymer layer (SMIL) coating technique to the immobilization of polypeptides and/or proteins onto the inner surface of the capillaries was investigated to provide a high-performance separation medium for proteins and enantiomers in capillary electrophoresis (CE). To obtain a stable protein-coated capillary, high molecular mass poly(ethyleneimine) (PEI) was employed as the first layer in the A(+)-B(-)-C(+) coating, and then a cationic protein was immobilized as the third layer. Comparisons of analytical performances between the A(+)-B(-)-C(+) coating and the conventional SMIL-coated (A(+)-B(-)-A(+) coating) capillary were conducted. The CE separation of cationic proteins was successfully achieved with the prepared capillaries. In addition, the polypeptide- and protein-coated capillaries were applied to the chiral separation of a binaphthyl compound. It should be noted that the chiral separation efficiency was strongly dependent on the second anionic polymer layer of the coating. Effects of the interaction between oppositely charged ionic polymer layers on the separation efficiency are discussed.

摘要

研究了通过连续多层离子聚合物层(SMIL)涂覆技术制备的由三种不同聚合物组成的三层涂层(A(+)-B(-)-C(+)涂层)在将多肽和/或蛋白质固定到毛细管内表面上的适用性,以提供用于毛细管电泳(CE)中蛋白质和对映体的高性能分离介质。为了获得稳定的蛋白质涂覆毛细管,在A(+)-B(-)-C(+)涂层中使用高分子量聚(乙烯亚胺)(PEI)作为第一层,然后将阳离子蛋白质固定为第三层。对A(+)-B(-)-C(+)涂层毛细管和传统SMIL涂覆(A(+)-B(-)-A(+)涂层)毛细管的分析性能进行了比较。使用制备的毛细管成功实现了阳离子蛋白质的CE分离。此外,将多肽和蛋白质涂覆的毛细管应用于联萘化合物的手性分离。应该注意的是,手性分离效率强烈依赖于涂层的第二阴离子聚合物层。讨论了带相反电荷的离子聚合物层之间的相互作用对分离效率的影响。

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