首页> 美国卫生研究院文献>International Scholarly Research Notices >Immobilization of Aspergillus oryzae  β-Galactosidase on Cellulose Acetate-Polymethylmethacrylate Membrane and Its Application in Hydrolysis of Lactose from Milk and Whey
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Immobilization of Aspergillus oryzae  β-Galactosidase on Cellulose Acetate-Polymethylmethacrylate Membrane and Its Application in Hydrolysis of Lactose from Milk and Whey

机译:米曲霉的固定化醋酸纤维素-聚甲基丙烯酸甲酯膜上的β-半乳糖苷酶及其在牛奶和乳清中水解乳糖的应用

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摘要

The present study demonstrates the immobilization of Aspergillus oryzae β-galactosidase on cellulose acetate-polymethylmethacrylate (CA-PMMA) membrane and its application in hydrolyzing lactose in dairy industries. The effect of physical and chemical denaturants like pH, temperature, product inhibition by galactose, storage stability, and reuse number of the enzyme immobilized on CA-PMMA membrane has been investigated. Lactose was hydrolyzed from milk and whey in batch reactors at 50°C by free and immobilized β-galactosidase (IβG). Optimum pH for the free and immobilized enzyme was found to be the same, that is, 4.5. However, IβG retained greater fractions of catalytic activity at lower and higher pH ranges. The temperature optimum for the immobilized enzyme was increased by 10°C. Moreover, Michaelis-Menten constant was increased for IβG as compared to the native one while maximum reaction rate was reduced for the immobilized enzyme. The preserved activity of free and immobilized enzyme was found to be 45% and 83%, respectively, after five weeks of storage at 4°C. Reusability of IβG was observed to be 86% even after fifth repeated use, thereby signifying its application in lactose hydrolysis (as shown in lab-scale batch reactors) in various dairy products including milk and whey.
机译:本研究证明了米曲霉β-半乳糖苷酶在醋酸纤维素-聚甲基丙烯酸甲酯(CA-PMMA)膜上的固定化及其在水解乳业中的乳糖中的应用。研究了物理和化学变性剂如pH值,温度,半乳糖对产物的抑制作用,储存稳定性和固定在CA-PMMA膜上的酶的再利用次数的影响。在间歇反应器中,游离和固定的β-半乳糖苷酶(IβG)在50°C下将牛奶和乳清中的乳糖水解。发现游离和固定化酶的最佳pH是相同的,即4.5。但是,在较低和较高的pH范围内,IβG保留了较大比例的催化活性。固定化酶的最佳温度提高了10°C。此外,与天然酶相比,IβG的Michaelis-Menten常数增加,而固定化酶的最大反应速率降低。在4°C储存五周后,发现游离和固定化酶的保留活性分别为45%和83%。即使在第五次重复使用后,仍观察到IβG的可重用性为86%,从而表明其在乳糖水解中的应用(如实验室规模的分批反应器所示)在包括牛奶和乳清在内的各种乳制品中。

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