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Co-MOF-on-TPN-COF 杂化的新型纳米结构:氨苄西林电化学适体传感器的超低灵敏生物平台。

Novel nanoarchitecture of Co-MOF-on-TPN-COF hybrid: Ultralowly sensitive bioplatform of electrochemical aptasensor toward ampicillin.

机构信息

Department of Orthopedics, The First Affiliated Hospital of Zhengzhou University, Zhengzhou 450000, 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 Jan 1;123:59-68. doi: 10.1016/j.bios.2018.09.089. Epub 2018 Sep 27.

Abstract

Owning to the misuse of the antibiotics in animal husbandry and agriculture, it is highly urgent to determine the quantification of antibiotics in biological systems by the simple, sensitive, and fast method. In this work, a novel nanoarchitecture of Co-based metal-organic frameworks (Co-MOF) and terephthalonitrile-based covalent organic framework (TPN-COF) was synthesized (represented by Co-MOF@TPN-COF), followed by the exploitation as the bioplatform of non-label aptasensor for detecting the most frequently used β-lactam antibiotics, ampicillin (AMP). The new porous hybrid material of Co-MOF@TPN-COF was synthesized by adding the as-prepared TPN-COF into the Co-MOF preparation system. The multilayered Co-MOF@TPN-COF nanosheets exhibit a high specific surface area (52.64 m g), nitrogen-rich groups and excellent electrochemical activity. As a result, large amounts of aptamer strands can be bound over the Co-MOF@TPN-COF nanosheets owning to the strong π-π stacking and hydrogen bonds. When detecting AMP by the electrochemical impedance spectroscopy, the fabricated Co-MOF@TPN-COF-based aptasensor exhibits an ultra-low detection limit of 0.217 fg mL within the AMP concentration from 1.0 fg mL to 2.0 ng mL, which was superior to those previously reported in literatures. In addition, this proposed aptasensor also shows high selectivity, good reproducibility and stability, acceptable regenerability, and favorable applicability in human serum, river water and milk. Therefore, the proposed Co-MOF@TPN-COF-based aptasensor has a great promise to be applied as a powerful tool in the fields of food safety.

摘要

由于在畜牧业和农业中抗生素的滥用,因此非常需要通过简单、灵敏、快速的方法来确定生物体系中的抗生素定量。在这项工作中,合成了一种新型的基于钴的金属有机骨架(Co-MOF)和对苯二甲腈基共价有机骨架(TPN-COF)的纳米结构(表示为 Co-MOF@TPN-COF),并将其作为非标记适体传感器的生物平台用于检测最常用的β-内酰胺类抗生素氨苄西林(AMP)。将制备的 TPN-COF 添加到 Co-MOF 制备体系中,合成了新型多孔复合材料 Co-MOF@TPN-COF。多层 Co-MOF@TPN-COF 纳米片具有高比表面积(52.64 m g)、富含氮基团和出色的电化学活性。结果,由于强π-π堆积和氢键的作用,大量的适体链可以结合在 Co-MOF@TPN-COF 纳米片上。通过电化学阻抗谱法检测 AMP 时,所制备的 Co-MOF@TPN-COF 基适体传感器在 AMP 浓度为 1.0 fg mL 至 2.0 ng mL 范围内表现出超低检测限为 0.217 fg mL,优于文献中报道的检测限。此外,该提出的适体传感器还表现出高选择性、良好的重现性和稳定性、可接受的再生性以及在人血清、河水和牛奶中的良好适用性。因此,所提出的基于 Co-MOF@TPN-COF 的适体传感器有望成为食品安全领域的有力工具。

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