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双配体铕有机凝胶作为高效阳极猝灭电化学发光发射器用于超灵敏检测 microRNA。

Dual-Ligand Europium-Organic Gels as a Highly Efficient Anodic Annihilation Electrochemiluminescence Emitter for Ultrasensitive Detection of MicroRNA.

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, People's Republic of China.

出版信息

Anal Chem. 2024 Jun 18;96(24):9961-9968. doi: 10.1021/acs.analchem.4c01239. Epub 2024 Jun 5.

Abstract

In this study, a novel europium dual-ligand metal-organic gel (Eu-D-MOGs) with high-efficient anodic annihilation electrochemiluminescence (ECL) was synthesized as an ECL emitter to construct a biosensor for ultrasensitive detection of microRNA-221 (miR-221). Impressively, compared to the ECL signal of europium single-ligand metal-organic gels (Eu-S-MOGs), the ECL signal of Eu-D-MOGs was significantly improved since the two organic ligands could jointly replace the HO and coordinate with Eu, which could remarkably reduce the nonradiative vibrational energy transfer caused by the coordination between HO and Eu with a high coordination demand. In addition, Eu-D-MOGs could be electrochemically oxidized to Eu-D-MOGs at 1.45 V and reduced to Eu-D-MOGs at 0.65 V to achieve effective annihilation of ECL, which overcame the side reaction brought by the remaining emitters at negative potential. This benefited from the annihilation ECL performance of the central ion Eu caused by its redox in the electrochemical process. Furthermore, the annihilation ECL signal of Eu could be improved by sensitizing Eu via the antenna effect. In addition, combined with the improved rolling circle amplification-assisted strand displacement amplification strategy (RCA-SDA), a sensitive biosensor was constructed for the sensitive detection of miR-221 with a low detection limit of 5.12 aM and could be successfully applied for the detection of miR-221 in the lysate of cancer cells. This strategy offered a unique approach to synthesizing metal-organic gels as ECL emitters without a coreactant for the construction of ECL biosensing platforms in biomarker detection and disease diagnosis.

摘要

在这项研究中,合成了一种新型的铕双配体金属有机凝胶(Eu-D-MOGs),作为电致化学发光(ECL)发射器,构建了用于超灵敏检测 microRNA-221(miR-221)的生物传感器。令人印象深刻的是,与铕单配体金属有机凝胶(Eu-S-MOGs)的 ECL 信号相比,Eu-D-MOGs 的 ECL 信号显著增强,因为这两个有机配体可以共同取代 HO 并与 Eu 配位,这可以显著减少由 HO 和 Eu 之间的配位引起的非辐射振动能量转移,Eu 具有很高的配位需求。此外,Eu-D-MOGs 可以在 1.45 V 下电化学氧化为 Eu-D-MOGs,并在 0.65 V 下还原为 Eu-D-MOGs,以实现 ECL 的有效湮灭,这克服了由于负电势下剩余发射器带来的副反应。这得益于电化学过程中中心离子 Eu 的氧化还原引起的湮灭 ECL 性能。此外,通过天线效应敏化 Eu 可以提高 Eu 的湮灭 ECL 信号。此外,结合改进的滚环扩增辅助链置换扩增策略(RCA-SDA),构建了用于超灵敏检测 miR-221 的敏感生物传感器,检测限低至 5.12 aM,并可成功应用于癌细胞裂解液中 miR-221 的检测。该策略为合成金属有机凝胶作为 ECL 发射器提供了一种独特的方法,无需共反应物,为构建用于生物标志物检测和疾病诊断的 ECL 生物传感平台提供了新的思路。

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