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酶-金属有机框架(MOF)复合材料。

Enzyme-MOF (metal-organic framework) composites.

机构信息

Department of Chemistry, Texas A&M University, College Station, TX 77842-3012, USA.

出版信息

Chem Soc Rev. 2017 Jun 6;46(11):3386-3401. doi: 10.1039/c7cs00058h.

Abstract

The ex vivo application of enzymes in various processes, especially via enzyme immobilization techniques, has been extensively studied in recent years in order to enhance the recyclability of enzymes, to minimize enzyme contamination in the product, and to explore novel horizons for enzymes in biomedical applications. Possessing remarkable amenability in structural design of the frameworks as well as almost unparalelled surface tunability, Metal-Organic Frameworks (MOFs) have been gaining popularity as candidates for enzyme immobilization platforms. Many MOF-enzyme composites have achieved unprecedented results, far outperforming free enzymes in many aspects. This review summarizes recent developments of MOF-enzyme composites with special emphasis on preparative techniques and the synergistic effects of enzymes and MOFs. The applications of MOF-enzyme composites, primarily in transferation, catalysis and sensing, are presented as well. The enhancement of enzymatic activity of the composites over free enzymes in biologically incompatible conditions is emphasized in many cases.

摘要

近年来,人们广泛研究了各种过程中(尤其是通过酶固定化技术)的酶的体外应用,以提高酶的可回收性、最小化酶在产物中的污染,并为酶在生物医学应用中开拓新领域。金属-有机骨架(MOFs)在框架的结构设计方面具有显著的适应性,并且几乎可以实现无与伦比的表面可调性,因此作为酶固定化平台的候选材料越来越受到关注。许多 MOF-酶复合材料都取得了前所未有的成果,在许多方面都远远超过了游离酶。本文综述了 MOF-酶复合材料的最新进展,特别强调了制备技术以及酶和 MOFs 的协同作用。还介绍了 MOF-酶复合材料的应用,主要集中在转移、催化和传感方面。在许多情况下,强调了复合材料在生物不相容条件下比游离酶具有更高的酶活性。

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