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Immobilisation of α-amylase on activated amidrazone acrylic fabric: a new approach for the enhancement of enzyme stability and reusability

机译:将α-淀粉酶固定在活化的amidrazone丙烯酸织物上:增强酶稳定性和可重复使用性的新方法

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摘要

In this study, amidrazone acrylic fabric was applied as an immobilising support for α-amylase. The immobilised α-amylase was characterised by Fourier transform infrared spectroscopy and scanning electron microscopy. Furthermore, the optimum conditions for immobilisation efficiency, immobilisation time, reusability, kinetic parameters and pH, for the immobilisation process were examined. The study demonstrated that with 4% cyanuric chloride, and a pH of 7.0, the highest immobilization efficiency of 81% was obtained. Around 65% of the initial activity was maintained after storage at 4 °C for 8 weeks. The immobilised enzyme retained 53% of its original activity after being reused 15 times and exhibited improved stability compared with the free enzyme in relation to heavy metal ions, pH, temperature and inhibitors. The immobilised enzyme presented kinetic parameters of 2.6 mg starch and 0.65 µmol maltose/mL for Km and Vmax respectively, compared with 3.7 mg starch and 0.83 µmol maltose/ mL for the free enzyme. The improvements in the enzyme’s catalytic properties, stability and reusability obtained from immobilisation make amidrazone acrylic fabric support a good promising candidate for bio-industrial applications.
机译:在这项研究中,将amidrazone丙烯酸织物用作α-淀粉酶的固定载体。通过傅里叶变换红外光谱和扫描电子显微镜对固定化的α-淀粉酶进行了表征。此外,检查了固定过程中固定效率,固定时间,可重复使用性,动力学参数和pH的最佳条件。研究表明,在4%的氰尿酰氯和pH值为7.0的情况下,可获得最高的固定率81%。在4°C下保存8周后,大约保留了初始活性的65%。固定化的酶重复使用15次后,保留了其原始活性的53%,并且与游离酶相比在重金属离子,pH,温度和抑制剂方面显示出更高的稳定性。固定化酶对Km和Vmax的动力学参数分别为2.6μmg淀粉和0.65μmol麦芽糖/ mL,而游离酶的动力学参数分别为3.7μmg淀粉和0.83μmol麦芽糖/ mL。固定化所获得的酶催化性能,稳定性和可重复使用性方面的改进使amidrazone丙烯酸纤维织物成为生物工业应用的良好前途候选者。

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