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Chitin and chitosan-based support materials for enzyme immobilization and biotechnological applications

机译:基于甲壳素和壳聚糖的酶固定化和生物技术应用的支持材料

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摘要

Enzymes of industrial importance are primarily employed for biotechnological applications. However, high-cost and instability issues of purified enzymes hamper their usage. Multiple reuses rather than the single use is more cost-effective. A robuster bioprocess is feasible by enzyme immobilization. Performance of immobilized enzymes depends on the nature of support materials. Chitin and its derivatives-based supports offer stability and cost-effective bioprocessing. Chitosan is biocompatible, biodegradable, non-toxic and has multiple functional groups. A variety of supports such as chitosan, chitosan film, chitosan nanoparticle and chitosan nanocomposite are employed for enzyme immobilization. Chitosan bound enzymes, as compared to free enzymes, have improved the biocatalytic performances due to exceptionally high operational stability and reusability. Here we review enzymes immobilized on chitin/chitosan supporting materials with applications ranging from agriculture to drug delivery.
机译:产业重要性的酶主要用于生物技术应用。 然而,纯化酶的高成本和稳定性问题妨碍了它们的用法。 多重重复使用而不是单一使用更具成本效益。 酶活化是一种强大的生物过程。 固定化酶的性能取决于支持材料的性质。 基于几丁质及其衍生品的支持提供稳定性和经济高效的生物处理。 壳聚糖是生物相容性的,可生物降解,无毒的,具有多种官能团。 使用壳聚糖,壳聚糖薄膜,壳聚糖纳米粒子和壳聚糖纳米复合材料进行各种载体用于酶固定。 与游离酶相比,壳聚糖结合的酶由于特殊的操作稳定性和可重用性而改善了生物催化性能。 在这里,我们审查用农业从农业到药物递送的应用来审查固定的诱饵。

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