Activation of cellulose-based carriers with pentaethylenehexamine 

J. Aniulyte, J. Bryjak, J. Liesienė
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引用次数: 5

Abstract

A method for the activation of a cellulose-based matrix resulting in obtaining active primary amino groups via a long spacer arm was developed. The method is based on coupling pentaethylenehexamine (PEHA) to the polymeric matrix through epoxy groups. It was shown that modification of cellulose with PEHA is a straightforward and convenient procedure that has the advantages of high coupling efficiency. The primary amino group density on the carrier surf ace can be easily adjusted by changing the content of epoxy groups in the matrix or by altering the amount of PEHA in the reaction mixture. The lectins Concanavalin A and Wheat Germ Agglutinin were employed as ligands for the immobilization onto the PEHA-activated carrier using glutaraldehyde. It was shown that the spacer arm affected ligand coupling kinetics as well as the chromatographic behaviour of the adsorbents obtained. Covalent immobilization of enzyme glucoamylase on PEHA-activated cellulose was done. It was found that covalent binding via glutaraldehyde offers satisfactorily stable and active preparations.
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纤维素基载体的五乙烯活化研究
开发了一种通过长间隔臂活化纤维素基基质从而获得活性初级氨基的方法。该方法是基于通过环氧基团将五乙烯(PEHA)偶联到聚合物基体上。结果表明,用PEHA改性纤维素是一种简单、方便、偶联效率高的方法。通过改变基质中环氧基团的含量或改变反应混合物中PEHA的量,可以很容易地调节载体表面的初级氨基密度。以凝集素刀豆蛋白A和小麦胚芽凝集素为配体,用戊二醛将其固定在peha活化载体上。结果表明,间隔臂影响配体偶联动力学以及所得吸附剂的色谱行为。研究了葡萄糖淀粉酶在peha活化纤维素上的共价固定化。经戊二醛共价结合可获得稳定的活性制剂。
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