Yavari Maroufi Leila, Rashidi Mohsen, Tabibiazar Mahnaz, Mohammadi Maryam, Pezeshki Akram, Ghorbani Marjan
Department of Food Science and Technology, Faculty of Nutrition and Food Science, Tabriz University of Medical Sciences, Tabriz, Iran.
Department of Pharmacology, Faculty of Medicine, Mazandaran University of Medical Sciences, Sari, Iran.
Adv Pharm Bull. 2022 Mar;12(2):309-318. doi: 10.34172/apb.2022.043. Epub 2021 Jul 4.
Enzymes are one of the main biocatalysts with various applications in the food industry. Stabilization of enzymes on insoluble carriers is important due to the low reuse, low operational stability, and high cost in applications. The immobility and the type of carrier affect the activity of the immobile enzyme. Hydrogels are three-dimensionally cross-linked macromolecular network structures designed from various polymers. Hydrogels can provide a matrix for an immobile enzyme due to their extraordinary properties such as high water absorbing capacity, carrier of bioactive substances and enzymes, biocompatibility, safety, and biodegradability. Therefore, this study mainly focuses on some enzymes (lactase, lipases, amylases, pectinase, protease, glucose oxidase) that are of special importance in the food industry. These enzymes could be immobilized in the hydrogels constructed of macromolecules such as kappa-carrageenan, chitosan, Arabic gum, pectin, alginate, and cellulose. At last, in the preparation of these hydrogels, different enzyme immobilization methods in macromolecular hydrogels, and effect of hydrogels on enzyme activity were discussed.
酶是主要的生物催化剂之一,在食品工业中有多种应用。由于酶在应用中的低重复利用率、低操作稳定性和高成本,将酶固定在不溶性载体上很重要。固定化以及载体类型会影响固定化酶的活性。水凝胶是由各种聚合物设计而成的三维交联大分子网络结构。水凝胶因其具有高吸水能力、生物活性物质和酶的载体、生物相容性、安全性和生物可降解性等非凡特性,可为固定化酶提供基质。因此,本研究主要聚焦于在食品工业中具有特殊重要性的一些酶(乳糖酶、脂肪酶、淀粉酶、果胶酶、蛋白酶、葡萄糖氧化酶)。这些酶可以固定在由κ-卡拉胶、壳聚糖、阿拉伯胶、果胶、海藻酸盐和纤维素等大分子构建的水凝胶中。最后,在这些水凝胶的制备过程中,讨论了大分子水凝胶中不同的酶固定化方法以及水凝胶对酶活性的影响。