Markvicheva E A, Bronin A S, Kudriavtseva N E, Kuz'kina I F, Pashkin I I, Kirsh Iu E, Rumsh L D, Zubov V P
Bioorg Khim. 1994 Mar;20(3):257-62.
A novel one-step method for enzyme immobilization in composite gels based on the thermally reversible polymer poly (N-vinyl-caprolactam) was developed. Conditions for entrapment of trypsin and carboxypeptidase B in the gels were optimized. After immobilization, 80 and 90% of the original carboxypeptidase B and trypsin activities, respectively, were found to retain. Both immobilizes enzymes were active in a wider pH and temperature range. The granules with entrapped enzymes were successfully applied to obtain human insulin from recombinant proinsulin.
开发了一种基于热可逆聚合物聚(N-乙烯基己内酰胺)在复合凝胶中固定化酶的新型一步法。优化了胰蛋白酶和羧肽酶B包埋在凝胶中的条件。固定化后,分别发现保留了80%和90%的原始羧肽酶B和胰蛋白酶活性。两种固定化酶在更宽的pH和温度范围内都具有活性。含有包埋酶的颗粒成功地用于从重组胰岛素原中获得人胰岛素。