School of Chemistry, Sun Yat-sen University, Guangzhou, 510275, P. R. China.
Research Institute of Sun Yat-Sen, University in Shenzhen, Shenzhen, 518000, P. R. China.
Chemistry. 2019 Apr 11;25(21):5463-5471. doi: 10.1002/chem.201806146. Epub 2019 Mar 8.
Metal-organic frameworks (MOFs) for enzyme immobilization have already shown superior tunable and designable characteristics, however, their diverse responsive properties have rarely been exploited. In this work we integrated a responsive MOF into a MOF-enzyme composite with the purpose of designing an "all-in-one" multifunctional composite with catalytic and luminescence functions incorporated into a single particle. As a proof-of-concept, glucose oxidase (GOx) was encapsulated in situ within an oxygen (O )-sensitive, noble-metal-free, luminescent Cu triazolate framework (MAF-2), denoted as GOx@MAF-2. Owing to the rigid scaffold of MAF-2 and confinement effect, the GOx@MAF-2 composite showed significantly improved stability (shelf life of 60 days and heat resistance up to 80 °C) as well as good selectivity and recyclability. More importantly, owing to the O sensitivity of MAF-2, the GOx@MAF-2 composite exhibited a rapid and reversible response towards dissolved O , thereby allowing direct and ratiometric sensing of glucose without the need for chromogenic substrates, cascade enzymatic reactions, or electrode systems. High sensitivity with a detection limit of 1.4 μm glucose was achieved, and the glucose levels in human sera were accurately determined. This strategy has led to a new application for MOFs that can be facilely extended to other MOF-enzyme composites due to the multifunctionality of MOFs.
金属-有机骨架(MOFs)在酶固定化方面已经表现出了优越的可调谐和可设计的特性,但它们的多种响应特性很少被开发利用。在这项工作中,我们将响应性 MOF 整合到 MOF-酶复合材料中,目的是设计一种“一体化”多功能复合材料,将催化和发光功能整合到单个颗粒中。作为概念验证,葡萄糖氧化酶(GOx)原位封装在氧(O )敏、无贵金属、发光的铜三唑骨架(MAF-2)中,称为 GOx@MAF-2。由于 MAF-2 的刚性支架和限域效应,GOx@MAF-2 复合材料表现出显著提高的稳定性(60 天的货架寿命和高达 80°C 的耐热性)以及良好的选择性和可回收性。更重要的是,由于 MAF-2 的 O 敏感性,GOx@MAF-2 复合材料对溶解 O 具有快速和可逆的响应,从而可以直接和比率检测葡萄糖,而不需要显色底物、级联酶反应或电极系统。实现了检测限为 1.4 μm 葡萄糖的高灵敏度,并且可以准确地测定人血清中的葡萄糖水平。由于 MOFs 的多功能性,这种策略为 MOFs 开辟了新的应用,由于 MOFs 的多功能性,这种策略可以很容易地扩展到其他 MOF-酶复合材料。