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MOF@COF 杂化结构用于光电化学-电化学双模式 HIV-1 DNA 传感。

MOF@COF Heterostructure Hybrid for Dual-Mode Photoelectrochemical-Electrochemical HIV-1 DNA Sensing.

机构信息

College of Material and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou 450001, P. R. China.

出版信息

Langmuir. 2021 Nov 16;37(45):13479-13492. doi: 10.1021/acs.langmuir.1c02253. Epub 2021 Nov 4.

Abstract

We developed a novel metal-organic framework (MOF)@covalent-organic framework (COF) hybrid with a hierarchical nanostructure and excellent photoactivity, which further acted as the bifunctional platform of a dual-mode photoelectrochemical (PEC) and electrochemical (EC) biosensor for detecting HIV-1 DNA via immobilizing the HIV-1 DNA probe. First, the presynthesized Cu-MOF nanoellipsoids were used as the template for the in situ growth of the COF network, which was synthesized using copper-phthalocyanine tetra-amine (CoPc-TA) and 2,9-bis[-(formyl)phenyl]-1,10-phenanthroline as building blocks through the Schiff base condensation. In view of the large specific surface area, abundant reserved amino group, excellent electrochemical activity, and high photoactivity, the obtained Cu-MOF@CuPc-TA-COF heterostructure not only can serve as the sensitive platform for anchoring the HIV-1 DNA probe strands but also can be utilized as the signal transducers for PEC and EC biosensors. Thereby, the constructed biosensor shows the sensitive and selective analysis ability toward the HIV-1 target DNA via the complementary hybridization between probe and target DNA strands. The dual-mode PEC and EC measurements revealed that the Cu-MOF@CuPc-TA-COF-based biosensor displayed a wide linear detection range from 1 fM to 1 nM and an extremely low limit of detection (LOD) of 0.07 and 0.18 fM, respectively. In addition, the dual-mode PEC-EC biosensor also demonstrated remarkable selectivity, high stability, good reproducibility, and preferable regeneration ability, as well as acceptable applicability, for which the detected HIV-1 DNA in human serum showed good consistency with real concentrations. Thereby, the present work can open a new dual-mode PEC-EC platform for detecting HIV-1 DNA based on the porous-organic framework heterostructure.

摘要

我们开发了一种具有分级纳米结构和优异光活性的新型金属-有机骨架(MOF)@共价有机骨架(COF)杂化物,它进一步作为双模式光电化学(PEC)和电化学(EC)生物传感器的双功能平台,通过固定 HIV-1 DNA 探针来检测 HIV-1 DNA。首先,将预合成的 Cu-MOF 纳米椭圆体用作 COF 网络的原位生长模板,该网络是使用铜酞菁四胺(CoPc-TA)和 2,9-双[-(甲酰基)苯基]-1,10-菲咯啉作为构建块通过席夫碱缩合合成的。鉴于大的比表面积、丰富的保留氨基、优异的电化学活性和高光活性,所得的 Cu-MOF@CuPc-TA-COF 杂化物不仅可以作为固定 HIV-1 DNA 探针链的敏感平台,还可以用作 PEC 和 EC 生物传感器的信号转换器。因此,通过探针和目标 DNA 链之间的互补杂交,构建的生物传感器对 HIV-1 靶 DNA 表现出灵敏和选择性的分析能力。双模式 PEC 和 EC 测量表明,基于 Cu-MOF@CuPc-TA-COF 的生物传感器具有从 1 fM 到 1 nM 的宽线性检测范围和分别为 0.07 和 0.18 fM 的极低检测限(LOD)。此外,双模式 PEC-EC 生物传感器还表现出显著的选择性、高稳定性、良好的重现性和良好的再生能力,以及可接受的适用性,用于人血清中检测到的 HIV-1 DNA 与真实浓度具有良好的一致性。因此,本工作可以为基于多孔有机骨架杂化物的 HIV-1 DNA 的双模式 PEC-EC 检测开辟一个新的平台。

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