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Preparation of lipase/Zn-3(PO4)(2) hybrid nanoflower and its catalytic performance as an immobilized enzyme

机译:脂肪酶/ Zn-3(PO4)(2)杂化纳米花的制备及其作为固定化酶的催化性能

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A facile and rapid method is reported in this paper to prepare a novel immobilized enzyme named lipase/Zn-3(PO4)(2) hybrid nanoflower. The growth mechanism of the nanoflower has been studied in detail and can be described as the following four steps: crystallization and coordination, in-situ precipitation, self-assembly, size growth. Addition amount of lipase, reaction temperature and stirring form affect the morphology and lipase content of the hybrid nanoflower. Besides, the catalytic performance of lipase/Zn-3(PO4)(2) hybrid nanoflower was investigated and the optimal catalytic conditions have been found. The maximum enzyme activity was 855 +/- 13 U/g. In comparison with the free lipase, the enzyme activity increment of hybrid nanoflower is 147%. Meanwhile, the unique nanostructure makes lipase/Zn-3(PO4)(2) hybrid nanoflower an excellent operational stabilizer. The results indicate that the well designed materials should be useful in industrial enzyme catalysis. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文报道了一种简便快捷的方法来制备一种新型的固定化酶,称为脂肪酶/ Zn-3(PO4)(2)杂合纳米花。对纳米花的生长机理进行了详细的研究,可以描述为以下四个步骤:结晶和配位,原位沉淀,自组装,大小增长。脂肪酶的添加量,反应温度和搅拌形式影响杂种纳米花的形态和脂肪酶含量。此外,研究了脂肪酶/ Zn-3(PO4)(2)杂化纳米花的催化性能,并找到了最佳的催化条件。最大酶活性为855 +/- 13U / g。与游离脂肪酶相比,杂种纳米花的酶活性增加为147%。同时,独特的纳米结构使脂肪酶/ Zn-3(PO4)(2)杂合纳米花成为出色的操作稳定剂。结果表明,精心设计的材料应可用于工业酶催化。 (C)2016 Elsevier B.V.保留所有权利。

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