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钯纳米粒子附着共价有机框架的双 ECL 信号增强策略和外切酶循环反应用于孕酮的超灵敏检测。

The dual ECL signal enhancement strategy of Pd nanoparticles attached covalent organic frameworks and exonuclease cycling reaction for the ultrasensitive detection of progesterone.

机构信息

Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, College of Chemistry and Materials Science, College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua 321004, China.

Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, College of Chemistry and Materials Science, College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua 321004, China.

出版信息

Talanta. 2024 Jul 1;274:125934. doi: 10.1016/j.talanta.2024.125934. Epub 2024 Apr 3.

Abstract

Nowadays, novel and efficient signal amplification strategy in electrochemiluminescence (ECL) platform is urgently needed to enhance the sensitivity of biosensor. In this work, the dual ECL signal enhancement strategy was constructed by the interactions of Pd nanoparticles attached covalent organic frameworks (Pd NPs@COFs) with tris (bipyridine) ruthenium (RuP) and Exonuclease III (Exo.III) cycle reaction. Within this strategy, the COFs composite was generated from the covalent reaction between 2-nitro-1,4-phenylenediamine (NPD) and trialdehyde phloroglucinol (Tp), and then animated by glutamate (Glu) to attach the Pd NPs. Next, the "signal on" ECL biosensor was constructed by the coordination assembly of thiolation capture DNA (cDNA) onto the Pd NPs@COFs modified electrode. After the aptamer recognition of progesterone (P4) with hairpin DNA 1 (HP1), the Exo. III cycle reaction was initiated with HP2 to generate free DNA, which hybridized with cDNA to form double-stranded DNA (dsDNA). For that, the RuP was embedded into the groove of dsDNA and achieved the ultrasensitive detection of P4 with a lower limit of detection (LOD) down to 0.45 pM, as well as the excellent selectivity and stability. This work expands the COFs-based materials application in ECL signal amplification and valuable DNA cyclic reaction in biochemical testing field.

摘要

如今,迫切需要在电化学发光(ECL)平台中开发新颖而高效的信号放大策略,以提高生物传感器的灵敏度。在这项工作中,通过钯纳米粒子附着的共价有机框架(Pd NPs@COFs)与三(联吡啶)钌(RuP)和核酸外切酶 III(Exo.III)循环反应的相互作用构建了双 ECL 信号增强策略。在此策略中,COFs 复合材料是通过 2-硝基-1,4-苯二胺(NPD)与三醛基间苯二酚(Tp)之间的共价反应生成的,然后通过谷氨酸(Glu)激活以附着 Pd NPs。接下来,通过巯基化捕获 DNA(cDNA)与 Pd NPs@COFs 修饰电极的配位组装构建“信号开启”ECL 生物传感器。在发夹 DNA 1(HP1)与孕酮(P4)的适配体识别后,用 HP2 启动 Exo.III 循环反应以产生游离 DNA,该游离 DNA 与 cDNA 杂交形成双链 DNA(dsDNA)。为此,将 RuP 嵌入 dsDNA 的沟槽中,实现了对 P4 的超灵敏检测,检测限(LOD)低至 0.45 pM,并且具有出色的选择性和稳定性。这项工作扩展了 COFs 基材料在 ECL 信号放大和生物化学测试领域中宝贵的 DNA 循环反应中的应用。

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