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谷氨酸氧化酶集成仿生金属有机框架杂化物作为级联纳米酶用于超灵敏谷氨酸检测。

Glutamate Oxidase-Integrated Biomimetic Metal-Organic Framework Hybrids as Cascade Nanozymes for Ultrasensitive Glutamate Detection.

机构信息

State Key Laboratory of Food Nutrition and Safety, Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin University of Science and Technology, No 29, 13th, Avenue, Tianjin Economic and Technological Development Area (TEDA), Tianjin 300457, P R China.

出版信息

J Agric Food Chem. 2022 Mar 30;70(12):3785-3794. doi: 10.1021/acs.jafc.2c01639. Epub 2022 Mar 18.

Abstract

The hybrid coupling of biocatalysts and chemical catalysts plays a vital role in the fields of catalysis, sensing, and medical treatment due to the integrated advantages in the high activity of natural enzymes and the excellent stability of nanozymes. Herein, a new nanozyme/natural enzyme hybrid biosensor was established for ultrasensitive glutamate detection. The MIL-88B(Fe)-NH material with remarkable peroxidase mimic activity and stability was used as a nanozyme and carrier for immobilizing glutamate oxidase (GLOX) through Schiff base reaction to construct a chem-enzyme cascade detector (MIL-88B(Fe)-NH@GLOX). The resultant MIL-88B(Fe)-NH@GLOX exhibited a wide linear range (1-100 μM), with a low detection limit of 2.5 μM for glutamate detection. Furthermore, the MIL-88B(Fe)-NH@GLOX displayed excellent reusability and storage stability. After repeated seven cycles, MIL-88B(Fe)-NH-GLOX (GLOX was adsorbed on MIL-88B(Fe)-NH) lost most of its activity, whereas MIL-88B(Fe)-NH@GLOX still retained 69% of its initial activity. Meanwhile, MIL-88B(Fe)-NH@GLOX maintained 60% of its initial activity after storage for 90 days, while free GLOX only retained 30% of its initial activity. This strategy of integrating MOF mimics and natural enzymes for cascade catalysis makes it possible to design an efficient and stable chemo-enzyme composite catalysts, which are promising for applications in biosensing and biomimetic catalysis.

摘要

基于生物催化剂和化学催化剂的杂化偶联在催化、传感和医疗领域发挥着重要作用,因为其综合了天然酶的高活性和纳米酶的优异稳定性优势。在此,构建了一种新型纳米酶/天然酶杂合生物传感器,用于超灵敏谷氨酸检测。具有显著过氧化物酶模拟活性和稳定性的 MIL-88B(Fe)-NH 材料被用作纳米酶和载体,通过席夫碱反应固定谷氨酸氧化酶(GLOX),构建化学-酶级联探测器(MIL-88B(Fe)-NH@GLOX)。所得的 MIL-88B(Fe)-NH@GLOX 表现出较宽的线性范围(1-100 μM),对谷氨酸检测的检出限低至 2.5 μM。此外,MIL-88B(Fe)-NH@GLOX 显示出优异的可重复使用性和储存稳定性。经过 7 次循环后,MIL-88B(Fe)-NH-GLOX(GLOX 吸附在 MIL-88B(Fe)-NH 上)失去了大部分活性,而 MIL-88B(Fe)-NH@GLOX 仍保留了初始活性的 69%。同时,MIL-88B(Fe)-NH@GLOX 在储存 90 天后仍保持初始活性的 60%,而游离 GLOX 仅保留初始活性的 30%。这种将 MOF 模拟物与天然酶集成用于级联催化的策略,使得设计高效稳定的化学-酶复合催化剂成为可能,这在生物传感和仿生催化应用中具有广阔的前景。

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