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基于纸电极平台的金属免疫测定电化学检测 NT-proBNP

Electrochemical Detection of NT-proBNP Using a Metalloimmunoassay on a Paper Electrode Platform.

机构信息

Department of Chemistry, The University of Texas at Austin, 100 E. 24th Street, Stop A1590, Austin, Texas 78712-1224, United States.

Interactives Executive Excellence LLC, Austin, Texas 78733, United States.

出版信息

ACS Sens. 2020 Mar 27;5(3):853-860. doi: 10.1021/acssensors.0c00167. Epub 2020 Mar 10.

Abstract

In this paper, we demonstrate an electrochemical method for detection of the heart failure biomarker, N-terminal prohormone brain natriuretic peptide (NT-proBNP). The approach is based on a paper electrode assembly and a metalloimmunoassay; it is intended for eventual integration into a home-use sensor. Sensing of NT-proBNP relies on the formation of a sandwich immunoassay and electrochemical quantification of silver nanoparticle (AgNP) labels attached to the detection antibodies (Abs). There are four important outcomes reported in this article. First, compared to physisorption of the detection Abs on the AgNP labels, a 27-fold increase in signal is observed when a heterobifunctional cross-linker is used to facilitate this labeling. Second, the assay is selective in that it does not cross-react with other cardiac natriuretic peptides. Third, the assay forms in undiluted human serum (though the electrochemical analysis is carried out in buffer). Finally, and most important, the assay is able to detect NT-proBNP at concentrations between 0.58 and 2.33 nM. This performance approaches the critical NT-proBNP concentration threshold often used by physicians for risk stratification purposes: ∼0.116 nM.

摘要

本文介绍了一种电化学方法,用于检测心力衰竭生物标志物 N 末端脑钠肽前体(NT-proBNP)。该方法基于纸电极组件和金属免疫测定法;它旨在最终集成到家用传感器中。NT-proBNP 的检测依赖于三明治免疫测定法的形成和电化学定量附着在检测抗体(Abs)上的银纳米颗粒(AgNP)标记物。本文报道了四个重要结果。首先,与检测 Abs 在 AgNP 标记物上的物理吸附相比,当使用异双官能交联剂来促进这种标记时,信号增强了 27 倍。其次,该测定法具有选择性,因为它不会与其他心脏利钠肽发生交叉反应。第三,该测定法可在未稀释的人血清中形成(尽管电化学分析在缓冲液中进行)。最后,也是最重要的,该测定法能够检测到浓度在 0.58 到 2.33 nM 之间的 NT-proBNP。这种性能接近医生用于风险分层目的的临界 NT-proBNP 浓度阈值:约 0.116 nM。

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