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基于共价有机框架的电化学适体传感器用于抗生素的超灵敏检测。

Covalent organic framework-based electrochemical aptasensors for the ultrasensitive detection of antibiotics.

机构信息

Henan Provincial Key Laboratory of Surface and Interface Science, Zhengzhou University of Light Industry, No. 136, Science Avenue, Zhengzhou 450001, PR China.

Henan Provincial Key Laboratory of Surface and Interface Science, Zhengzhou University of Light Industry, No. 136, Science Avenue, Zhengzhou 450001, PR China.

出版信息

Biosens Bioelectron. 2019 May 1;132:8-16. doi: 10.1016/j.bios.2019.02.040. Epub 2019 Feb 21.

Abstract

We designed and synthesized a novel covalent organic framework (COF) by condensation polymerization of 1,3,6,8-tetrakis(4-formylphenyl)pyrene and melamine through imine bonds (represented by Py-M-COF). The basic characterizations revealed that the Py-M-COF not only exhibited an extended π-conjugation framework, a large specific surface area (495.5 m g), big pore cavities, and nanosheet-like structure but also possessed rich functional groups, such as C˭C, C˭N, C˭O, and NH. These features endowed the Py-M-COF with high charge carrier mobility, further improving the strong immobilization of DNA aptamer strands via π-π stacking interaction and electrostatic interaction. As such, the Py-M-COF-based electrochemical aptasensors are ultrasensitive in detecting different antibiotics, including enrofloxacin (ENR) and ampicillin (AMP), yielding extremely low detection limits of 6.07 and 0.04 fg mL (S/N = 3) toward ENR and AMP, respectively, along with other excellent sensing performances. This biosensing platform based on Py-M-COF has potential applications for the sensitive detection of antibiotics or other analytes by replacing the corresponding aptamers.

摘要

我们通过缩合聚合反应,设计并合成了一种新型的共价有机框架(COF),该 COF 是由 1,3,6,8-四(4-醛基苯基)芘和三聚氰胺通过亚胺键(以 Py-M-COF 表示)连接而成。基本特性表明,Py-M-COF 不仅具有扩展的π共轭骨架、大的比表面积(495.5 m g)、大的孔腔和纳米片状结构,而且还具有丰富的官能团,如 C˭C、C˭N、C˭O 和 NH。这些特性赋予了 Py-M-COF 较高的电荷载流子迁移率,进一步通过π-π堆积相互作用和静电相互作用增强了 DNA 适体链的强固定化。因此,基于 Py-M-COF 的电化学适体传感器在检测不同抗生素(包括恩诺沙星(ENR)和氨苄西林(AMP))方面具有超灵敏性,对 ENR 和 AMP 的检测限分别低至 6.07 和 0.04 fg mL(S/N = 3),同时具有其他优异的传感性能。这种基于 Py-M-COF 的生物传感平台具有通过替换相应适体来灵敏检测抗生素或其他分析物的应用潜力。

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