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具有固定化金属亲和配体的大孔聚丙烯酰胺整体凝胶:孔结构和配体偶联化学对蛋白质结合的影响。

Macroporous polyacrylamide monolithic gels with immobilized metal affinity ligands: the effect of porous structure and ligand coupling chemistry on protein binding.

作者信息

Plieva Fatima, Bober Beata, Dainiak Maria, Galaev Igor Yu, Mattiasson Bo

机构信息

Protista Biotechnology AB, IDEON, SE-22370 Lund, Sweden.

出版信息

J Mol Recognit. 2006 Jul-Aug;19(4):305-12. doi: 10.1002/jmr.775.

Abstract

Macroporous polyacrylamide gels (MPAAG) with iminodiacetic acid (IDA) functionality were prepared by (i) chemical modification of polyacrylamide gel, (ii) co-polymerization of acrylamide with allyl glycidyl ether (AGE) and N,N'metylene-bis(acrylamide) (MBAAm) followed by coupling IDA ligand or (iii) by copolymerization of acrylamide and MBAAm with functional monomer carrying IDA-functionality (1-(N,N-bis(carboxymethyl)amino-3-allylglycerol). Screening for optimized conditions for the production of the MPAAG with required porous properties was performed in a 96-well chromatographic format that allowed parallel production and analysis of the MPAAG prepared from reaction mixtures with different compositions. Scanning electron microscopy of the fabricated MPAAG revealed two different types of the porous structures: monomodal macroporous structure with large interconnected pores separated by dense non-porous pore walls in case of plain gels or gels produced via copolymerization with AGE. The other type of the MPAAG (gel produced via co-polymerization with functional monomer carrying IDA-functionality) had bimodal pore structure with large interconnected pores separated by the pore walls pierced through with micropores. The effect of different modifications of MPAAG monoliths and of porous structure of the MPAAG (monomodal and bimodal porous structure) on protein binding has been evaluated.

摘要

通过以下方法制备了具有亚氨基二乙酸(IDA)功能的大孔聚丙烯酰胺凝胶(MPAAG):(i)对聚丙烯酰胺凝胶进行化学改性;(ii)使丙烯酰胺与烯丙基缩水甘油醚(AGE)和N,N'-亚甲基双丙烯酰胺(MBAAm)共聚,随后偶联IDA配体;或(iii)使丙烯酰胺和MBAAm与带有IDA功能的功能单体(1-(N,N-双(羧甲基)氨基-3-烯丙基甘油))共聚。在96孔色谱形式中进行筛选,以确定制备具有所需多孔性质的MPAAG的优化条件,该形式允许平行制备和分析由不同组成的反应混合物制备的MPAAG。对制备的MPAAG进行扫描电子显微镜观察,发现了两种不同类型的多孔结构:对于普通凝胶或通过与AGE共聚制备的凝胶,为单峰大孔结构,具有由致密无孔孔壁分隔的大的相互连通的孔。另一种类型的MPAAG(通过与带有IDA功能的功能单体共聚制备的凝胶)具有双峰孔结构,大的相互连通的孔被贯穿有微孔的孔壁分隔。评估了MPAAG整体的不同改性以及MPAAG的多孔结构(单峰和双峰多孔结构)对蛋白质结合的影响。

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