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制备具有高液相色谱容量的亚微米级骨架整体柱。

Preparation of sub-micron skeletal monoliths with high capacity for liquid chromatography.

机构信息

Beijing National Laboratory for Molecular Sciences, Laboratory of Analytical Chemistry for Life Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing, P. R. China.

出版信息

J Sep Sci. 2010 Mar;33(4-5):475-83. doi: 10.1002/jssc.200900655.

Abstract

A novel kind of poly(glycidyl methacrylate-co-ethylene glycol dimethacrylate)-based monolithic column was developed for LC by directing supramolecular self-assembly of high internal phase emulsion. Mercury intrusion porosimetry characterization and scanning electron microscope pictures showed that these monoliths presented micrometer-sized throughpores, unique sub-micron skeletons and relatively large specific surface area. Additionally, porosity of monoliths could be adjusted while skeletons remained in the size range of 100.0-1000.0 nm. The new monoliths demonstrated not only better column efficiency, but also larger binding capacity. Dynamic binding capacity for protein (BSA) was evaluated to be 42.5 mg/mL, above two times higher than that of the general monoliths (19.1 mg/mL) and higher than that of commercial "Convective Interaction Media" monolithic columns (30.0 mg/mL). Moreover, their chromatographic behaviors were also evaluated in detail by chemical stability and swelling characterization of the monolithic column. Separation of proteins mixture (cytochrome c, myoglobin, ribonuclease A, lysozyme and BSA) on the monolith was achieved within 4 min at velocity of 1440.0 cm/h. Those unique properties made the novel monolithic column a promising alternative to commercially available monolithic supports in LC applications.

摘要

一种新型的聚(甲基丙烯酸缩水甘油酯-乙二醇二甲基丙烯酸酯)基整体柱通过高内相乳液的超分子自组装用于 LC 开发。压汞孔隙率表征和扫描电子显微镜照片表明,这些整体柱呈现出具有微米级贯穿孔、独特的亚微米骨架和相对较大比表面积的微孔结构。此外,在保持骨架尺寸在 100.0-1000.0nm 范围内的同时,可以调节整体柱的孔隙率。新型整体柱不仅表现出更好的柱效,而且具有更大的结合容量。蛋白质(BSA)的动态结合容量评估为 42.5mg/mL,比普通整体柱(19.1mg/mL)高两倍以上,比商业“对流相互作用介质”整体柱(30.0mg/mL)高。此外,还通过整体柱的化学稳定性和溶胀特性详细评估了它们的色谱行为。在 1440.0cm/h 的流速下,在 4 分钟内即可实现蛋白质混合物(细胞色素 c、肌红蛋白、核糖核酸酶 A、溶菌酶和 BSA)的分离。这些独特的性能使新型整体柱成为 LC 应用中商业可用整体支撑物的有前途的替代品。

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