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Agar-agar immobilization: An alternative approach for the entrapment of protease to improve the catalytic efficiency, thermal stability and recycling efficiency

机译:琼脂 - 琼脂固定化:一种替代方法,用于抑制蛋白酶以提高催化效率,热稳定性和回收效率

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摘要

The catalytic performance of an immobilized enzyme could be enhanced by using entrapment technique. In this contemporary study agar-agar, a natural polysaccharide, is subjected to entrap serine-protease produced by Aspergillus niger KIBGE-IB36. The results revealed that maximum enzymatic activity was attained when 3.0% agar agar was used. It was observed that in case of both free and entrapped forms the enzyme was stable at pH-5.0. While, an increment in reaction temperature and time was noticed from 50 to 55 degrees C and 15.0 to 20.0 min, respectively. K-m value increased from 1.883 mM to 2.399 mM and V-max value decreased from 1753 U mg(-1) to 1372 U mg(-1) after agar-agar entrapment of protease as compared to soluble enzyme. Additionally, entrapped protease within the polymer exhibited significant increase in the thermal stability at various temperatures and retained approximately 68.0% of its residual activity at 60 degrees C. However, at this extreme temperature the soluble protease lost its catalytic performance. Storage stability considerably improved as entrapped protease revealed enzymatic activity up to 30 days as compared to soluble enzyme. Recycling efficiency was calculated up to eight cycles which is an exceptional characteristic for economic feasibility and continuous reusability of protease. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过使用夹带技术可以提高固定化酶的催化性能。在这种当代研究琼脂,一种天然多糖,受到由Aspergillus Niger Kibge-Ib36产生的筛选丝氨酸蛋白酶。结果表明,当使用3.0%琼脂琼脂时,达到了最大酶活性。观察到,如果自由和捕获的形式,酶在pH-5.0下稳定。虽然,在50至55℃和15.0至20.0分钟中,将反应温度和时间的增量分别升高。与可溶性酶相比,K-M值从1.883mm增加到2.883mm至2.399mm,V-mx值从1753 u mg(-1)到1372u mg(-1)减少。另外,聚合物中的捕获蛋白酶在各种温度下的热稳定性显着增加,并在60℃下保留约68.0%的残余活性。然而,在这个极端温度下,可溶性蛋白酶损失其催化性能。捕获稳定性显着改善,捕获的蛋白酶明显,与可溶性酶相比,酶活性可达30天。将回收效率计算出高达八个循环,这是经济可行性和蛋白酶连续可重复使用的特征。 (c)2018年elestvier b.v.保留所有权利。

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