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Ultrasensitive Detection of Biomarkers by Using a Molecular Imprinting Based Capacitive Biosensor
Published on: February 16, 2018
Bimetallic nanoclusters and dual-amplification tactic: an ultrasensitive electrochemiluminescence biosensor for
Tong Shen1, Hongwei Yu1, Xin Xu1
1Medical Laboratory Department of Fudan University Pudong Medical Center, 201399, China.
Abstract:
The elevated expression of microRNA-21 (miRNA-21) in exosomes derived from early-stage non-small cell lung cancer (NSCLC) holds significant promise for early diagnosis. However, detecting exosomal miRNA-21 remains challenging due to its low abundance. Here, we developed an electrochemiluminescence (ECL) biosensor integrating a 3D DNA walker with rolling circle amplification (RCA) for ultrasensitive miRNA-21 detection. Gold-silver nanoclusters (AuAgNCs, Au:Ag = 4:1) served as ECL emitters, while ferrocene-modified DNA (Fc-DNA) quenched the signal ("signal-off"). Target miRNA-21 activated the 3D DNA walker, generating primers for RCA. The RCA products displaced Fc-DNA, restoring ECL ("signal-on"). The biosensor achieved a wide linear range (1 fM-1 nM) with a 0.14 fM detection limit. Critically, it distinguished NSCLC patients (n = 10) from healthy controls (n = 10) and COPD patients (n = 10) with statistical significance (P < 0.001) in clinical serum samples. Excellent stability (84 % signal retention after 25 days) and reproducibility (RSD = 3.95 %) further support its utility for early lung cancer screening.

