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偶联剂性质对胰岛素在接枝唾液酸的载体上吸附的影响及其在高效亲和色谱中的应用

Influence of the nature of coupling agents on insulin adsorption on supports grafted with sialic acid for high-performance affinity chromatography.

作者信息

Lakhiari H, Jozefonvicz J, Muller D

机构信息

Laboratoire de Recherches sur les Macromolécules, CNRS URA 502, Université Paris Nord, Institut Galilée, Villetaneuse, France.

出版信息

J Chromatogr B Biomed Sci Appl. 1998 Feb 27;706(1):33-41. doi: 10.1016/s0378-4347(97)00483-0.

Abstract

Porous silica exhibits excellent mechanical properties for use as a stationary phase for high-performance liquid chromatography. However, negative surface charges make it unusable in its native state. For this reason, silica beads are coated with dextran polymers carrying a calculated amount of diethylaminoethyl groups. Both the minimization of non-specific interactions and the hydrophilic character of such supports allow their functionalization with biospecific ligands and finally their use in high-performance affinity chromatography of biological products. The use of these modified supports in high-performance affinity chromatography requires a better understanding of various characteristics of stationary phases. For this purpose, several techniques were utilized, in particular, size-exclusion chromatography and adsorption of radiolabelled albumin. These methods provided complementary information on the structure of these supports. Coated silica-based supports were functionalized with sialic acid by means of different coupling agents. The affinity of these supports for insulin was determined by the establishment of adsorption isotherms and by high-performance affinity chromatography, to evidence the relationships between structural characteristics of the supports and their separation properties. The study of interactions between these supports and insulin allowed us to show the importance of the coupling method on the performances of supports in affinity chromatography.

摘要

多孔硅胶作为高效液相色谱固定相具有优异的机械性能。然而,其表面带负电荷,使其在天然状态下无法使用。因此,硅胶微球用携带计算量二乙氨基乙基基团的葡聚糖聚合物进行包被。这种载体非特异性相互作用的最小化及其亲水性,使得它们能够用生物特异性配体进行功能化,最终用于生物制品的高效亲和色谱。在高效亲和色谱中使用这些改性载体需要更好地了解固定相的各种特性。为此,采用了多种技术,特别是尺寸排阻色谱和放射性标记白蛋白的吸附。这些方法提供了关于这些载体结构的互补信息。通过不同的偶联剂,用唾液酸对包被的硅胶基载体进行功能化。通过建立吸附等温线和高效亲和色谱法测定这些载体对胰岛素的亲和力,以证明载体的结构特征与其分离性能之间的关系。对这些载体与胰岛素之间相互作用的研究使我们能够表明偶联方法对载体在亲和色谱中性能的重要性。

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