共同固定多种酶的纳米材料

BMEMat Pub Date : 2024-03-12 DOI:10.1002/bmm2.12080
Jingyu Zhang, Jonathan F. Lovell, Jiafu Shi, Yumiao Zhang
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引用次数: 0

摘要

为了共同固定多种酶,人们设计了多种纳米材料,以实现协同酶活性和提高催化效率。纳米材料作为酶协同固定的载体,具有多种优势,如形态和尺寸可调、比表面积高、化学活性位点丰富等。它们可以大大提高酶的稳定性、活性和催化效率。我们概述了酶共固定的常用方法和策略。本综述进一步总结了过去 5 年中用于酶协同固定的纳米材料的最新研究进展。同时,还讨论了这些用于酶共固定的纳米材料的优势和挑战以及一些潜在的未来发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanomaterials for co‐immobilization of multiple enzymes
In order to co‐immobilize multiple enzymes, a wide range of nanomaterials has been designed to achieve synergistic enzyme activity and enhance catalytic efficiency. Nanomaterials, as carriers for enzyme co‐immobilization, possess various advantages such as tunable morphology and size, high specific surface area, and abundant chemically active sites. They can significantly enhance enzyme stability, activity, and catalytic efficiency. We overview the commonly used methods and strategies of enzyme co‐immobilization. This review further summarizes the latest research advances in nanomaterials for enzyme co‐immobilization applications over the past 5 years. Meanwhile, the advantages and challenges of these nanomaterials used for enzyme co‐immobilization as well as some potential future directions are also discussed.
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