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高效电化学发光的锌基金属有机框架微花的可控合成及其用于 miR-21 的检测。

Controlled synthesis of zinc-metal organic framework microflower with high efficiency electrochemiluminescence for miR-21 detection.

机构信息

Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, Chongqing, 400715, China.

Key Laboratory of Luminescent and Real-Time Analytical System (Southwest University), Chongqing Science and Technology Bureau, College of Pharmaceutical Sciences, Southwest University, Chongqing, 400715, China.

出版信息

Biosens Bioelectron. 2022 Oct 1;213:114443. doi: 10.1016/j.bios.2022.114443. Epub 2022 May 31.

Abstract

In this study, as the self-enhanced electrochemiluminescence (ECL) emitter, the dual ligand metal-organic framework microflower was successfully synthesized via a facile one-pot method by integrating 9,10-di(pcarboxyphenyl) anthracene (DPA) ligand and N, N-Diethylethylenediamine (DEAEA) ligand into zinc ions metal node, denoted as Zn-DPA/DEAEA (d-MOF). The DPA ligand was a typical ECL luminophore. The DEAEA ligand not only could be used as an effective co-reactant but also a morphologic regulator. The morphology of d-MOF changed from a thick sheet to a thin sheet and finally a microflower by controlling the dosage of DEAEA. Linking emitter and co-reactant in a MOF structure, the d-MOF exhibited an efficient intramolecular electron transfer process, with a strong and ultra-stable ECL performance without any extra co-reactants compared with the DPA ligand or the Zn-DPA single ligand MOF (s-MOF). Furthermore, an ECL resonance energy transfer (ECL-RET) biosensor was fabricated using d-MOF as donor, and 6-carboxy-4', 5'-dichloro-2', 7'-dimethoxyfluorescein (JOE) as accepter for the ultra-sensitive detection of miR-21 without additional co-reactant. And with a detection linear range of miR-21 was 100.0 aM to 10.0 pM, with a detection limit of 61.7 aM. This work offers a new perspective for the future design of stable self-enhanced ECL materials.

摘要

在这项研究中,我们通过简便的一锅法成功合成了双配体金属有机骨架微花作为自增强电化学发光(ECL)发射器,该方法将 9,10-二(对羧基苯基)蒽(DPA)配体和 N,N-二乙基亚乙基二胺(DEAEA)配体整合到锌离子金属节点中,记为 Zn-DPA/DEAEA(d-MOF)。DPA 配体是一种典型的 ECL 发光体。DEAEA 配体不仅可用作有效的共反应物,还可用作形态调节剂。通过控制 DEAEA 的用量,d-MOF 的形态从厚片变为薄片,最终变为微花。将发射器和共反应物连接在 MOF 结构中,d-MOF 表现出有效的分子内电子转移过程,与 DPA 配体或 Zn-DPA 单配体 MOF(s-MOF)相比,具有强大且超稳定的 ECL 性能,无需任何额外的共反应物。此外,我们使用 d-MOF 作为供体,6-羧基-4',5'-二氯-2',7'-二甲氧基荧光素(JOE)作为受体,构建了 ECL 共振能量转移(ECL-RET)生物传感器,用于超灵敏检测 miR-21,无需额外的共反应物。并且 miR-21 的检测线性范围为 100.0 aM 至 10.0 pM,检测限为 61.7 aM。这项工作为未来设计稳定的自增强 ECL 材料提供了新的视角。

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