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胰蛋白酶/Zn(PO)杂化纳米花:作为固定化酶的可控合成及优异性能。

Trypsin/Zn(PO) Hybrid Nanoflowers: Controlled Synthesis and Excellent Performance as an Immobilized Enzyme.

机构信息

The Key Laboratory of Space Applied Physics and Chemistry, Ministry of Education, Shaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Int J Mol Sci. 2022 Oct 6;23(19):11853. doi: 10.3390/ijms231911853.

Abstract

Immobilized enzymes are a significant technological approach to retain enzyme activity and reduce enzyme catalytic cost. In this work, trypsin-incorporated Zn(PO) hybrid nanoflowers were prepared via mild precipitation and coordination reactions. The controllable preparation of hybrid nanoflowers was achieved by systematically investigating the effects of the raw-material ratio, material concentration and reaction temperature on product morphology and physicochemical properties. The enzyme content of hybrid nanoflowers was about 6.5%, and the maximum specific surface area reached 68.35 m/g. The hybrid nanoflowers exhibit excellent catalytic activity and environmental tolerance compared to free trypsin, which was attributed to the orderly accumulation of nanosheets and proper anchoring formation. Further, the enzyme activity retention rate was still higher than 80% after 12 repeated uses. Therefore, trypsin/Zn(PO) hybrid nanoflowers-which combine functionalities of excellent heat resistance, storage stability and reusability-exhibit potential industrial application prospects.

摘要

固定化酶是一种保留酶活性和降低酶催化成本的重要技术方法。在这项工作中,通过温和的沉淀和配位反应制备了载酶的 Zn(PO) 杂化纳米花。通过系统研究原料比、材料浓度和反应温度对产物形态和物理化学性质的影响,实现了杂化纳米花的可控制备。杂化纳米花的酶含量约为 6.5%,最大比表面积达到 68.35 m/g。与游离胰蛋白酶相比,杂化纳米花具有优异的催化活性和环境耐受性,这归因于纳米片的有序堆积和适当的锚固形成。此外,经过 12 次重复使用后,酶活性保留率仍高于 80%。因此,兼具优异的耐热性、储存稳定性和可重复使用性的胰蛋白酶/Zn(PO) 杂化纳米花具有潜在的工业应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b86f/9569851/3fe0bff1d952/ijms-23-11853-g001.jpg

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