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一种金属-酚配位框架纳米酶表现出双重酶模拟活性,其应用可有效用于生物分子的比色检测。

A metal-phenolic coordination framework nanozyme exhibits dual enzyme mimicking activity and its application is effective for colorimetric detection of biomolecules.

机构信息

School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang 212013, China.

Department of Biochemistry, Faculty of Biological Sciences, University of Nigeria, Nsukka, Nigeria.

出版信息

Anal Methods. 2024 Jun 6;16(22):3530-3538. doi: 10.1039/d4ay00689e.

Abstract

Biomolecules play vital roles in many biological processes and diseases, making their identification crucial. Herein, we present a colorimetric sensing method for detecting biomolecules like cysteine (Cys), homocysteine (Hcy), and glutathione (GSH). This approach is based on a reaction system whereby colorless 3,3',5,5'-tetramethylbenzidine (TMB) undergoes catalytic oxidation to form blue-colored oxidized TMB (ox-TMB) in the presence of hydrogen peroxide (HO), utilizing the peroxidase and catalase-mimicking activities of metal-phenolic coordination frameworks (MPNs) of Cu-TA, Co-TA, and Fe-TA nanospheres. The Fe-TA nanospheres demonstrated superior activity, more active sites and enhanced electron transport. Under optimal conditions, the Fe-TA nanospheres were used for the detection of biomolecules. When present, biomolecules inhibit the reaction between TMB and HO, causing various colorimetric responses at low detection limits of 0.382, 0.776 and 0.750 μM for Cys, Hcy and GSH. Furthermore, it was successfully applied to real water samples with good recovery results. The developed sensor not only offers a rapid, portable, and user-friendly technique for multi-target analysis of biomolecules at low concentrations but also expands the potential uses of MPNs for other targets in the environmental field.

摘要

生物分子在许多生物过程和疾病中发挥着至关重要的作用,因此对它们的鉴定至关重要。在此,我们提出了一种用于检测生物分子(如半胱氨酸 (Cys)、同型半胱氨酸 (Hcy) 和谷胱甘肽 (GSH))的比色传感方法。该方法基于一个反应体系,在该体系中,无色 3,3',5,5'-四甲基联苯胺 (TMB) 在过氧化物酶和过氧化氢 (HO) 的存在下,利用金属-酚配位纳米笼(MPNs)的过氧化物酶和过氧化氢酶模拟活性,催化氧化生成蓝色氧化 TMB(ox-TMB)。Cu-TA、Co-TA 和 Fe-TA 纳米球的。Fe-TA 纳米球表现出优异的活性、更多的活性位点和增强的电子传递。在最佳条件下,Fe-TA 纳米球用于检测生物分子。当存在生物分子时,它们会抑制 TMB 和 HO 之间的反应,从而在低检测限下产生各种比色响应,对于 Cys、Hcy 和 GSH 的检测限分别为 0.382、0.776 和 0.750 μM。此外,它还成功地应用于实际水样,具有良好的回收率。该开发的传感器不仅提供了一种快速、便携且易于使用的技术,用于在低浓度下对生物分子进行多目标分析,而且还扩展了 MPNs 在环境领域中对其他目标的潜在用途。

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