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Immobilization of peroxidase enzyme onto the porous silicon structure forenhancing its activity and stability

机译:将过氧化物酶固定在多孔硅结构上增强其活性和稳定性

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摘要

In this work, a commercial peroxidase was immobilized onto porous silicon (PS) support functionalized with 3-aminopropyldiethoxysilane (APDES) and the performance of the obtained catalytic microreactor was studied. The immobilization steps were monitored and the activity of the immobilized enzyme in the PS pores was spectrophotometrically determined. The enzyme immobilization in porous silicon has demonstrated its potential as highly efficient enzymatic reactor. The effect of a polar organic solvent (acetonitrile) and the temperature (up to 50°C) on the activity and stability of the biocatalytic microreactor were studied. After 2-h incubation in organic solvent, the microreactor retained 80% of its initial activity in contrast to the system with free soluble peroxidase that lost 95% of its activity in the same period of time. Peroxidase immobilized into the spaces of the porous silicon support would be perspective for applications in treatments for environmental security such as removal of leached dye in textile industry or in treatment of different industrial effluents. The system can be also applied in the field of biomedicine.
机译:在这项工作中,将商业化的过氧化物酶固定在用3-氨基丙基二乙氧基硅烷(APDES)功能化的多孔硅(PS)载体上,并研究了所得催化微反应器的性能。监测固定步骤,并用分光光度法测定PS孔中固定酶的活性。固定在多孔硅中的酶已显示出其作为高效酶促反应器的潜力。研究了极性有机溶剂(乙腈)和温度(最高50°C)对生物催化微反应器活性和稳定性的影响。在有机溶剂中孵育2小时后,微反应器保留了其初始活性的80%,而带有游离可溶性过氧化物酶的系统则在同一时间内丧失了其活性的95%。固定在多孔硅载体空间中的过氧化物酶将用于环境安全性处理中,例如在纺织工业中去除浸出的染料或处理不同的工业废水。该系统还可以应用于生物医学领域。

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