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固定在改性聚砜膜上的脲酶:制备与性能

Urease immobilized on modified polysulphone membrane: preparation and properties.

作者信息

Poźniak G, Krajewska B, Trochimczuk W

机构信息

Department of Polymer Physicochemistry, Technical University of Wrocław, Poland.

出版信息

Biomaterials. 1995 Jan;16(2):129-34. doi: 10.1016/0142-9612(95)98275-j.

Abstract

Porous asymmetric membranes were formed by the phase inversion method from one-to-one blends of polysulphone and its aminated derivative. Amino groups were introduced into polysulphone UDEL P 1700 by chlorosulphonation followed by amination. Urease was immobilized on the modified polysulphone membranes. The properties of the immobilized urease were investigated and related to the free enzyme. The Michaelis constant was 4.4 times higher for the immobilized than for the free urease. Immobilization improved the pH stability of the enzyme at pH < 6.5 as well as its temperature stability. However, the immobilization did not protect the enzyme against heat inactivation at 70 degrees C; the half-times for the activity decay were equal to 120 and 50 min for the free and immobilized enzymes, respectively. The immobilized urease exhibited good storage and operational stability, and good reusability, properties that prove the applicability of the obtained system in enzymatic-membrane reactors.

摘要

通过相转化法,由聚砜及其胺化衍生物的一对一共混物形成了多孔不对称膜。通过氯磺化然后胺化,将氨基引入聚砜UDEL P 1700中。脲酶固定在改性聚砜膜上。研究了固定化脲酶的性质,并与游离酶进行了比较。固定化脲酶的米氏常数比游离脲酶高4.4倍。固定化提高了酶在pH < 6.5时的pH稳定性及其温度稳定性。然而,固定化并不能保护酶在70℃下免受热失活;游离酶和固定化酶活性衰减的半衰期分别为120分钟和50分钟。固定化脲酶表现出良好的储存和操作稳定性以及良好的可重复使用性,这些特性证明了所得系统在酶膜反应器中的适用性。

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