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原位酶固定化的共价有机框架。

In Situ Enzyme Immobilization by Covalent Organic Frameworks.

机构信息

Institut Lavoisier de Versailles, UMR CNRS 8180, UVSQ, Université Paris-Saclay, 45 avenue des Etats-Unis, 78035, Versailles cedex, France.

出版信息

Angew Chem Int Ed Engl. 2023 Jan 2;62(1):e202213405. doi: 10.1002/anie.202213405. Epub 2022 Nov 24.

Abstract

Enzyme immobilization is a widely reported method to favor the applicability of enzymes by enhancing their stability and re-usability. Among the various existing solid supports and immobilization strategies, the in situ encapsulation of enzymes within crystalline porous matrices is a powerful tool to design biohybrids with a stable and protected catalytic activity. However, to date, only a few metal-organic frameworks (MOFs) and hydrogen-bonded organic frameworks (HOFs) have been reported. Excitingly, for the first time, Y. Chen and co-workers expanded the in situ bio-encapsulation to a new class of crystalline porous materials, namely covalent organic frameworks (COFs). The enzyme@COF materials not only exhibited high enzyme loading with minimal leaching, high catalytic activity and selectivity, chemical and long-term stability and recyclability but could also be scaled up to a few grams. Undoubtedly, this work opens new striking opportunities for enzymatic immobilization and will stimulate new research on COF-based matrices.

摘要

酶固定化是一种广泛报道的方法,通过提高酶的稳定性和可重复使用性来增强其适用性。在各种现有的固体载体和固定化策略中,将酶原位包封在结晶多孔基质内是设计具有稳定和受保护催化活性的生物杂化物的有力工具。然而,迄今为止,只有少数金属-有机骨架(MOFs)和氢键有机骨架(HOFs)被报道。令人兴奋的是,Y. Chen 及其同事首次将原位生物包封扩展到一类新的结晶多孔材料,即共价有机骨架(COFs)。酶@COF 材料不仅表现出高酶载量,最小的酶泄漏,高催化活性和选择性,化学和长期稳定性以及可回收性,而且还可以扩大到几克。毫无疑问,这项工作为酶固定化开辟了新的引人注目的机会,并将激发基于 COF 基质的新研究。

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