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不同 pH 值下具有高双功能纳米酶活性的碱式碳酸铜用于人血清中葡萄糖和肾上腺素的比色检测。

Copper fumarate with high-bifunctional nanozyme activities at different pH values for glucose and epinephrine colorimetric detection in human serum.

机构信息

College of Chemistry, Fuzhou University, Fuzhou, Fujian 350116, P.R. China.

National & Local Joint Biomedical Engineering Research Center on Phototodynamics Technology, Fuzhou, Fujian 350108, P.R. China.

出版信息

Analyst. 2021 Dec 20;147(1):40-47. doi: 10.1039/d1an01817e.

Abstract

Metal-organic frameworks (MOFs) have attracted extensive attention for the development of colorimetric detection methods due to their ease of modification and high density of active sites. However, most of the reported colorimetric sensors based on MOFs show only a single nanozyme activity. Herein, the bifunctional enzyme activities of a hexagonal prism Cu MOF with fumaric acid as the ligand (Cu FMA), namely laccase-like activity under alkaline conditions (pH = 8) and peroxidase-like activity under acidic conditions (pH = 4), were verified. The specificity of Cu FMA at different pH values may be due to the presence of the Cu active center introduced by the weak reducibility of FMA. At pH = 8, Cu active centers are beneficial for dissociating the H-O bonds of phenolic compounds for the laccase system. In contrast, the dissociation of H-O is weakened at pH = 4, which prompts the breaking of the O-O bonds of HO as a Fenton-like reaction for the peroxidase system. Based on the dual enzyme activities, Cu FMA sensors exhibit outstanding detectability for epinephrine and glucose with linear ranges of 2.7-54.6 μM and 0.01-0.8 mM and detection limits of 1.1 μM and 2.28 × 10 M, respectively. The Cu FMA colorimetric sensor can be applied for detecting and measuring glucose and epinephrine in human serum samples. This work paves the way for Cu MOFs to be used as the basis for rational regulation of the activity of dual nanozymes and for multifunctional applications under completely independent conditions.

摘要

金属-有机骨架(MOFs)因其易于修饰和高活性位点密度而在开发比色检测方法方面引起了广泛关注。然而,大多数基于 MOFs 的报道比色传感器仅表现出单一的纳米酶活性。在此,证明了具有富马酸作为配体的六方棱柱 Cu MOF(Cu FMA)的双酶活性,即在碱性条件下(pH = 8)具有漆酶样活性,在酸性条件下(pH = 4)具有过氧化物酶样活性。Cu FMA 在不同 pH 值下的特异性可能归因于由 FMA 的弱还原性引入的 Cu 活性中心。在 pH = 8 时,Cu 活性中心有利于离解酚类化合物的 H-O 键,用于漆酶体系。相比之下,在 pH = 4 时 H-O 的离解减弱,促使 HO 的 O-O 键断裂,作为过氧化物酶体系的类 Fenton 反应。基于双酶活性,Cu FMA 传感器对肾上腺素和葡萄糖表现出出色的检测能力,线性范围分别为 2.7-54.6 μM 和 0.01-0.8 mM,检测限分别为 1.1 μM 和 2.28 × 10 M。Cu FMA 比色传感器可用于检测和测量人血清样品中的葡萄糖和肾上腺素。这项工作为 Cu MOFs 作为合理调节双纳米酶活性的基础以及在完全独立条件下的多功能应用铺平了道路。

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