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2-甲基苯并咪唑-铜纳米酶具有高漆酶活性,可用于比色区分和检测氨基酚异构体。

2-Methylbenzimidazole-copper nanozyme with high laccase activity for colorimetric differentiation and detection of aminophenol isomers.

机构信息

College of Chemistry, Zhengzhou Key Laboratory of Functional Nanomaterial and Medical Theranostic, Zhengzhou University, Zhengzhou, 450001, PR China.

College of Chemistry, Zhengzhou Key Laboratory of Functional Nanomaterial and Medical Theranostic, Zhengzhou University, Zhengzhou, 450001, PR China.

出版信息

Talanta. 2024 Nov 1;279:126630. doi: 10.1016/j.talanta.2024.126630. Epub 2024 Aug 2.

Abstract

Laccase is well-known for its eco-friendly applications in environmental remediation and biotechnology, but its high cost and low stability have limited its practical use. Therefore, there is an urgent need to develop efficient laccase mimetics. In this study, a novel laccase-mimicking nanozyme (MBI-Cu) was successfully synthesized using 2-methylbenzimidazole (MBI) coordinated with Cu by mimicking the copper active site and electron transfer pathway of natural laccase. MBI-Cu nanozyme exhibited excellent catalytic activity and higher stability than laccase, and was utilized to oxidize a series of phenolic compounds. Environmental pollutant aminophenol isomers were found to display different color in solution when catalytically oxidized by MBI-Cu, which provided a simple and feasible method to identify them by the naked eye. Based on the distinct absorption spectra of the oxidized aminophenol isomers, a colorimetric method for quantitatively detecting o-AP, m-AP, and p-AP was established, with detection limits of 0.06 μM, 0.27 μM, and 0.18 μM, respectively. Furthermore, by integrating MBI-Cu-based cotton pad colorimetric strips with smartphone and utilizing color recognition software to identify and analyze the RGB values of the images, a portable colorimetric sensing platform was designed for rapid detection of aminophenol isomers without the need for any analytical instrument. This work provides an effective reference for the design of laccase nanozymes and holds significant potential for applications in the field of environmental pollutant monitoring.

摘要

漆酶因其在环境修复和生物技术中的环保应用而广为人知,但由于其成本高和稳定性低,限制了其实际应用。因此,迫切需要开发高效的漆酶模拟物。在本研究中,通过模拟天然漆酶的铜活性位点和电子传递途径,成功合成了一种新型漆酶模拟纳米酶(MBI-Cu),使用 2-甲基苯并咪唑(MBI)与 Cu 配位。MBI-Cu 纳米酶表现出优异的催化活性和比漆酶更高的稳定性,并被用于氧化一系列酚类化合物。研究发现,环境污染物氨基酚异构体在被 MBI-Cu 催化氧化时,在溶液中显示出不同的颜色,这为通过肉眼识别它们提供了一种简单可行的方法。基于氧化氨基酚异构体的明显吸收光谱,建立了一种用于定量检测邻氨基酚、间氨基酚和对氨基酚的比色法,检测限分别为 0.06 μM、0.27 μM 和 0.18 μM。此外,通过将基于 MBI-Cu 的棉垫比色条与智能手机集成,并利用颜色识别软件识别和分析图像的 RGB 值,设计了一种便携式比色传感平台,用于快速检测氨基酚异构体,无需任何分析仪器。这项工作为漆酶纳米酶的设计提供了有效的参考,并且在环境污染物监测领域具有重要的应用潜力。

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