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基于碳纳米管和合理设计的含硼酸席夫碱的纳米杂化材料构建电化学生物酶传感器的新策略。

A new strategy to build electrochemical enzymatic biosensors using a nanohybrid material based on carbon nanotubes and a rationally designed schiff base containing boronic acid.

机构信息

INFIQC, CONICET-UNC, Departamento de Fisicoquímica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Ciudad Universitaria, 5000, Córdoba, Argentina; CIQA, CONICET, Departamento de Ingeniería Química, Facultad Regional Córdoba, Universidad Tecnológica Nacional, Maestro López esq. Cruz Roja Argentina, 5016, Córdoba, Argentina.

INFIQC, CONICET-UNC, Departamento de Fisicoquímica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Ciudad Universitaria, 5000, Córdoba, Argentina.

出版信息

Talanta. 2024 Apr 1;270:125520. doi: 10.1016/j.talanta.2023.125520. Epub 2023 Dec 8.

Abstract

We report a nanohybrid material obtained by non-covalent functionalization of multi-walled carbon nanotubes (MWCNTs) with the new ligand (((1E,1'E)-(naphthalene-2,3-diylbis(azaneylylidene))bis(methaneylylidenedene)) bis(4-hydroxy-3,1-phenylene))diboronic acid (SB-dBA), rationally designed to mimic some recognition properties of biomolecules like concanavalin A, for the development of electrochemical biosensors based on the use of glycobiomolecules as biorecognition element. We present, as a proof-of-concept, a hydrogen peroxide biosensor obtained by anchoring horseradish peroxidase (HRP) at a glassy carbon electrode (GCE) modified with the nanohybrid prepared by sonication of 2.0 mg mL MWCNTs and 0.50 mg mL SB-dBA in N,N-dimethyl formamide (DMF) for 30 min. The hydrogen peroxide biosensing was performed at -0.050 V in the presence of 5.0 × 10 M hydroquinone. The analytical characteristics of the resulting biosensor are the following: linear range between 0.175 μM and 6.12 μM, detection limit of 58 nM, and reproducibility of 2.0 % using the same nanohybrid (6 biosensors), and 9.0 % using three different nanohybrids. The sensor was successfully used to quantify hydrogen peroxide in enriched milk and human blood serum samples and in a commercial disinfector.

摘要

我们报告了一种通过将新型配体((((1E,1'E)-(萘-2,3-二基(亚氨基)双(亚甲基)亚氨基)双(4-羟基-3,1-亚苯基)二硼酸(SB-dBA))非共价功能化多壁碳纳米管(MWCNTs)得到的纳米杂化材料,该配体合理设计为模拟生物分子的某些识别特性,如伴刀豆球蛋白 A,用于开发基于糖生物分子作为生物识别元件的电化学生物传感器。我们提出了一个概念验证,即在玻璃碳电极(GCE)上修饰了纳米杂化物,该纳米杂化物是通过超声 2.0 mg mL MWCNTs 和 0.50 mg mL SB-dBA 在 N,N-二甲基甲酰胺(DMF)中 30 分钟制备的,通过固定辣根过氧化物酶(HRP)制备了过氧化氢生物传感器。在存在 5.0×10 M 对苯二酚的情况下,在 -0.050 V 下进行过氧化氢生物传感。所得生物传感器的分析特性如下:线性范围在 0.175 μM 和 6.12 μM 之间,检测限为 58 nM,使用相同的纳米杂化物(6 个传感器)的重现性为 2.0%,使用 3 个不同的纳米杂化物的重现性为 9.0%。该传感器成功用于定量富含牛奶和人血清样品以及商业消毒剂中的过氧化氢。

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