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酶模拟物:进展与应用

Enzyme Mimics: Advances and Applications.

作者信息

Kuah Evelyn, Toh Seraphina, Yee Jessica, Ma Qian, Gao Zhiqiang

机构信息

Department of Chemistry, National University of Singapore, Singapore, 117543, Fax.

出版信息

Chemistry. 2016 Jun 13;22(25):8404-30. doi: 10.1002/chem.201504394. Epub 2016 Apr 8.

Abstract

Enzyme mimics or artificial enzymes are a class of catalysts that have been actively pursued for decades and have heralded much interest as potentially viable alternatives to natural enzymes. Aside from having catalytic activities similar to their natural counterparts, enzyme mimics have the desired advantages of tunable structures and catalytic efficiencies, excellent tolerance to experimental conditions, lower cost, and purely synthetic routes to their preparation. Although still in the midst of development, impressive advances have already been made. Enzyme mimics have shown immense potential in the catalysis of a wide range of chemical and biological reactions, the development of chemical and biological sensing and anti-biofouling systems, and the production of pharmaceuticals and clean fuels. This Review concerns the development of various types of enzyme mimics, namely polymeric and dendrimeric, supramolecular, nanoparticulate and proteinic enzyme mimics, with an emphasis on their synthesis, catalytic properties and technical applications. It provides an introduction to enzyme mimics and a comprehensive summary of the advances and current standings of their applications, and seeks to inspire researchers to perfect the design and synthesis of enzyme mimics and to tailor their functionality for a much wider range of applications.

摘要

酶模拟物或人工酶是一类已被积极研究了数十年的催化剂,作为天然酶潜在的可行替代品,引发了广泛关注。除了具有与天然酶相似的催化活性外,酶模拟物还具有结构和催化效率可调、对实验条件耐受性强、成本低以及制备途径完全合成等理想优势。尽管仍处于发展阶段,但已取得了令人瞩目的进展。酶模拟物在催化各种化学和生物反应、开发化学和生物传感及抗生物污损系统以及生产药物和清洁燃料方面展现出了巨大潜力。本综述关注各类酶模拟物的发展,即聚合物和树枝状、超分子、纳米颗粒和蛋白质类酶模拟物,重点介绍它们的合成、催化性质及技术应用。它对酶模拟物进行了介绍,并全面总结了其应用的进展和现状,旨在激励研究人员完善酶模拟物的设计与合成,并为更广泛的应用定制其功能。

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