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Immobilization of Proteins in Poly-Styrene-Divinylbenzene Matrices: Functional Properties and Applications

机译:聚苯乙烯-二乙烯基苯基质中蛋白质的固定化:功能性质和应用

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摘要

Supports based on poly-styrene-divinylbenzene (PSD) are commercially available since a long time ago. However, they are not commonly used as enzyme immobilization matrices. The main reason for this lies in the negative effect of the very hydrophobic surface on enzyme stability that produces the instantaneous enzyme inactivation in many instances. However, they have recently regained some impact in enzyme immobilization. They are easy to modify, and have been prepared with different modifiers. We will pay special attention to the coating of these supports with ionic liquids, which permits to have the ionic liquid phase anchored to the solid and modulate the enzyme properties without risk of losing these expensive and potentially toxic compounds. Thus, this review will present the covalent or physical immobilization of enzymes on PSD supports, submitted to different modifications. Moreover, lipases immobilized via interfacial activation on some naked PSD supports have shown some unexpected improvement in their catalytic properties, with uses in reactions like hydrolysis, esterification or transesterification.
机译:基于聚苯乙烯-二乙烯基苯(PSD)的支撑物很久以前就可商购获得。但是,它们通常不用作酶固定基质。主要原因是非常疏水的表面对酶稳定性的负面影响,在许多情况下会导致瞬时酶失活。然而,它们最近在酶固定中重新获得了一些影响。它们易于修改,并且已使用不同的修改器进行了准备。我们将特别注意用离子液体涂覆这些载体,这可以使离子液相固定在固体上并调节酶的特性,而又不会失去这些昂贵且有潜在毒性的化合物的风险。因此,本综述将介绍酶在PSD载体上的共价或物理固定,并进行不同的修饰。此外,通过界面活化固定在某些裸露的PSD载体上的脂肪酶已显示出其催化性能的某些出乎意料的改善,可用于水解,酯化或酯交换等反应中。

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