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Magnetic Catechol-Chitosan with Bioinspired Adhesive Surface: Preparation and Immobilization of ω-Transaminase

机译:具有生物启发性粘合表面的邻苯二酚磁性壳聚糖:ω-转氨酶的制备和固定化

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摘要

The magnetic chitosan nanocomposites have been studied intensively and been used practically in various biomedical and biological applications including enzyme immobilization. However, the loading capacity and the remained activity of immobilized enzyme based on existing approaches are not satisfied. Simpler and more effective immobilization strategies are needed. Here we report a simple catechol modified protocol for preparing a novel catechol-chitosan (CCS) - iron oxide nanoparticles (IONPs) composites carrying adhesive moieties with strong surface affinity. The ω-transaminase (ω-TA) was immobilized onto this magnetic composite via nucleophilic reactions between catechol and ω-TA. Under optimal conditions, 87.5% of the available ω-TA was immobilized on the composite, yielding an enzyme loading capacity as high as 681.7 mg/g. Furthermore, the valuation of enzyme activity showed that ω-TA immobilized on CCS-IONPs displayed enhanced pH and thermal stability compared to free enzyme. Importantly, the immobilized ω-TA retained more than 50% of its initial activity after 15 repeated reaction cycles using magnetic separation and 61.5% of its initial activity after storage at 4°C in phosphate buffered saline (PBS) for 15 days. The results suggested that such adhesive magnetic composites may provide an improved platform technology for bio-macromolecules immobilized.
机译:磁性壳聚糖纳米复合材料已得到深入研究,并已实际用于包括酶固定在内的各种生物医学和生物学应用中。然而,基于现有方法的固定化酶的负载能力和剩余活性不能令人满意。需要更简单,更有效的固定策略。在这里,我们报告了一个简单的邻苯二酚改性方案,用于制备新型的邻苯二酚-壳聚糖(CCS)-氧化铁纳米颗粒(IONPs)复合材料,该复合材料具有较强的表面亲和力。 ω-转氨酶(ω-TA)通过邻苯二酚和ω-TA之间的亲核反应固定在该磁性复合材料上。在最佳条件下,将87.5%的可用ω-TA固定在复合材料上,产生的酶负载量高达681.7 mg / g。此外,酶活性的评估表明,与游离酶相比,固定在CCS-IONP上的ω-TA具有增强的pH和热稳定性。重要的是,固定的ω-TA在经过15次重复的磁分离重复反应循环后,保留了其初始活性的50%以上,在4°C的磷酸盐缓冲盐水(PBS)中存储15天后,保留了其初始活性的61.5%。结果表明,这种粘合磁性复合材料可以为固定化的生物大分子提供改进的平台技术。

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