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Polymer materials for enzyme immobilization and their application in bioreactors

机译:固定化酶的高分子材料及其在生物反应器中的应用

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Enzymatic catalysis has been pursued extensively in a wide range of important chemical processes for their unparalleled selectivity and mild reaction conditions. However, enzymes are usually costly and easy to inactivate in their free forms. Immobilization is the key to optimizing the in-service performance of an enzyme in industrial processes, particularly in the field of non-aqueous phase catalysis. Since the immobilization process for enzymes will inevitably result in some loss of activity, improving the activity retention of the immobilized enzyme is critical. To some extent, the performance of an immobilized enzyme is mainly governed by the supports used for immobilization, thus it is important to fully understand the properties of supporting materials and immobilization processes. In recent years, there has been growing concern in using polymeric materials as supports for their good mechanical and easily adjustable properties. Furthermore, a great many work has been done in order to improve the activity retention and stabilities of immobilized enzymes. Some introduce a spacer arm onto the support surface to improve the enzyme mobility. The support surface is also modified towards biocompatibility to reduce non-biospecific interactions between the enzyme and support. Besides, natural materials can be used directly as supporting materials owning to their inert and biocompatible properties. This review is focused on recent advances in using polymeric materials as hosts for lipase immobilization by two different methods, surface attachment and encapsulation. Polymeric materials of different forms, such as particles, membranes and nanofibers, are discussed in detail. The prospective applications of immobilized enzymes, especially the enzyme-immobilized membrane bioreactors (EMBR) are also discussed. [BMB reports 2011; 44(2): 87-95]
机译:酶催化以其无与伦比的选择性和温和的反应条件,在许多重要的化学过程中得到了广泛的追求。然而,酶通常昂贵且容易以其游离形式失活。固定化是优化酶在工业过程中(特别是在非水相催化领域中)的使用性能的关键。由于酶的固定过程将不可避免地导致某些活性损失,因此提高固定酶的活性保留至关重要。在某种程度上,固定化酶的性能主要取决于固定化所用的载体,因此,充分了解载体材料的性质和固定化过程非常重要。近年来,由于聚合物材料具有良好的机械性能和易于调节的性能,因此越来越关注使用聚合物材料作为载体。此外,为了改善固定化酶的活性保留和稳定性,已经进行了大量工作。一些将间隔臂引入支持物表面以改善酶的迁移率。还对载体表面进行了生物相容性修饰,以减少酶与载体之间的非生物特异性相互作用。此外,由于其惰性和生物相容性,天然材料可直接用作支撑材料。这篇综述的重点是通过两种不同的方法(表面附着和包封)将聚合材料用作脂肪酶固定化基质的最新进展。详细讨论了不同形式的聚合物材料,例如颗粒,膜和纳米纤维。还讨论了固定化酶特别是固定化酶的膜生物反应器(EMBR)的预期应用。 [BMB报告2011; 44(2):87-95]

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