Versatile Au nanoclusters/Au-MnO2 nanoflowers electrochemiluminescence energy transfer platform coupled with rolling circle amplification for dual-targets biosensing of PSA and Let-7a

生物传感器 电化学发光 纳米团簇 抗坏血酸 化学 适体 组合化学 猝灭(荧光) 纳米颗粒 噻吩 检出限 纳米技术 材料科学 物理 荧光 有机化学 色谱法 生物 量子力学 遗传学 食品科学
作者
Yu Zhao,Runze Wang,Yali Xue,Guifen Jie
出处
期刊:Sensors and Actuators B-chemical [Elsevier BV]
卷期号:369: 132397-132397 被引量:24
标识
DOI:10.1016/j.snb.2022.132397
摘要

In this work, a versatile electrochemiluminescence (ECL) biosensor based on Au nanoclusters (AuNCs)/Au-MnO 2 nanoflowers resonant energy transfer (RET) system coupled with rolling circle amplification (RCA) was designed for “OFF-ON” detection of prostate specificantigen (PSA) and Let-7a microRNA (miRNA). The biocompatible Au nanoclusters (Au NCs) displayed dramatically enhanced ECL intensitity and stability on 3,4-thiophene dicarboxylic acid (TDA) modified-electrode. Efficient ECL-RET system between AuNCs donors and Au-MnO 2 nanoflowers (NFs) acceptors was constructed, which was used to develop a sandwich ECL immunosensor for signal “OFF” detection of PSA. Furthermore, Let-7a miRNA (target II) triggered RCA reaction to produce long DNA nanowires, which can bridge a large number of biotin-streptavidin to label alkaline phosphatase (ALP), catalyzing L -ascorbic acid-2-trisodium phosphate (AAP) to produce abundant ascorbic acid (AA). Then AA in-situ reduced MnO 2 NFs to Mn 2+ , which inhibited ECL quenching, thus ECL was significantly recovered for “ON” detection of Let-7a. This versatile ECL platform combines 3,4-TDA-enhanced ECL of AuNCs, high quenching and oxidizing ability of Au-MnO 2 NFs, and target-initiated RCA reaction for multi-target assay. The proposed multifunctional biosensing system is also suitable for highly sensitive detection of other disease-related proteins with promising actual and clinical applications. • A new ECL-RET system of Au-MnO 2 NFs/AuNCs was fabricated for versatile assay of dual targets. • A versatile biosensor based on a new ECL-RET system and RCA amplification was developed. • 3,4-Thiophene dicarboxylic acid was firstly used to much improve ECL and stability of AuNCs.
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