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Ionic Liquid-Based Periodic Mesoporous Organosilica: An Innovative Matrix for Enzyme Immobilization

机译:基于离子液体的周期性介孔有机硅:固定酶的创新基质

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摘要

Employment of enzyme immobilization technique for aamylase, provides useful approaches to improve enzyme resistance to harsh conditions and reusability. Two silica supports, Ionic Liquid-Based Periodic Mesoporous Organosilica which we call it PMO-IL, and SBA-15, have been used for immobilization of a-amylase. We found that proper electrostatic interactions result in a higher immobilization yield of PMO-IL rather than SBA-15. The kinetics parameters show that a-amylase@PMO-IL activity has slightly decreased in comparison to free enzyme and the stability studies indicate that it is even more active than free enzyme in the natural pH which shows the improving role of ionic liquid on enzyme structure and function. Also, both immobilized enzymes have 2 times more stability at 70℃ and 80℃ after 60 min in comparison to free enzyme. Finally, the recovery efficiency of a-amylase@PMO- IL is 88% of its initial activity after 4 cycles which is 23% more than a previous report.
机译:酶固定技术用于苯基酶,提供了有用的方法来改善对恶劣条件和可重复性的耐药性。 两种二氧化硅支持,我们称为PMO-IL和SBA-15的离子液体基周期性介孔有机硅,已用于固定A-淀粉酶。 我们发现,正确的静电相互作用导致PMO-IL而不是SBA-15的固定产率更高。 动力学参数表明,与游离酶相比,A-淀粉酶@PMO-IL活性略有下降,稳定性研究表明,在自然pH中,它比自由酶更活跃,这表明离子液体在酶结构上的作用不断提高。 和功能。 同样,与游离酶相比,这两种固定酶在70°℃和80分钟时的稳定性增加了2倍。 最后,A-淀粉酶@PMO-IL的恢复效率是4个周期后其初始活性的88%,比以前的报告高23%。

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