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Substrate Specificity and Enzyme Recycling Using Chitosan Immobilized Laccase

机译:使用壳聚糖固定化漆酶的底物特异性和酶回收

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The immobilization of laccase (Aspergillus sp.) on chitosan by cross-linking and its application in bioconversion of phenolic compounds in batch reactors were studied. Investigation was performed using laccase immobilized via chemical cross-linking due to the higher enzymatic operational stability of this method as compared to immobilization via physical adsorption. To assess the influence of different substrate functional groups on the enzyme's catalytic efficiency, substrate specificity was investigated using chitosan-immobilized laccase and eighteen different phenol derivatives. It was observed that 4-nitrophenol was not oxidized, while 2,5-xylenol, 2,6-xylenol, 2,3,5-trimethylphenol, syringaldazine, 2,6-dimetoxyphenol and ethylphenol showed reaction yields up 90% at 40 degrees C. The kinetic of process, enzyme recyclability and operational stability were studied. In batch reactors, it was not possible to reuse the enzyme when it was applied to syringaldazne bioconversion. However, when the enzyme was applied to bioconversion of 2,6- DMP, the activity was stable for eight reaction batches.
机译:研究了漆酶(Aspergillus sp。)的交联固定在壳聚糖上及其在间歇反应器中酚类化合物的生物转化中的应用。由于通过化学交联固定的漆酶与通过物理吸附固定的方法相比具有较高的酶促操作稳定性,因此进行了研究。为了评估不同底物官能团对酶催化效率的影响,使用壳聚糖固定的漆酶和18种不同的酚衍生物研究了底物特异性。观察到4-硝基苯酚没有被氧化,而2,5-二甲苯酚,2,6-二甲苯酚,2,3,5-三甲基苯酚,丁香嗪,2,6-二甲氧基苯酚和乙基苯酚显示在40℃下反应产率提高了90%。 C.研究了过程动力学,酶可循环性和操作稳定性。在间歇反应器中,将酶用于丁香醛氮酮的生物转化是不可能的。然而,当将该酶用于2,6-DMP的生物转化时,活性对于八个反应批次是稳定的。

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