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Proximity hybridization induced bipedal DNA walker and rolling circle amplification for label-free electrochemical detection of apolipoprotein A4. | LitMetric

AI Article Synopsis

  • Apo-A4 is being studied as a potential biomarker for diagnosing depression due to its harmful effects on the nervous system.
  • The research introduces a novel DNA-based strategy for quantifying Apo-A4 using a bipedal DNA walker that utilizes rolling circle amplification (RCA) triggered by the binding of poly adenine to silver nanoparticles (AgNPs).
  • This method offers a label-free approach with high sensitivity, enabling the detection of Apo-A4 across a wide range of concentrations (0.001 to 100 ng mL) and a detection limit as low as 0.46 pg mL, making it useful for various bioanalytical applications.

Article Abstract

Apolipoprotein A4 (Apo-A4) is considered as a prospective molecular biomarker for diagnosis of depression due to its neurosynaptic toxicity. We develop a proximity hybridization-induced DNAzyme-driven bipedal DNA walker strategy for Apo-A4 quantification based on rolling circle amplification (RCA) triggered by poly adenine binding to Ag nanoparticles (AgNPs). With the help of DNAzyme, the free-running bipedal DNA walker can quickly and sequentially shear a molecular beacon that acts as a primer to initiate the RCA process, producing a large number of long DNA strands containing numerous adenines. The long repetitive adenine strands then absorb large amounts of AgNPs on the electrode interface, which is then electrochemically stripped of the AgNPs. The method has a linear detection range of 0.001 ∼ 100 ng mL and a detection limit of 0.46 pg mL. The presented detection strategy is label-free, which allows high sensitivity and selectivity for detection of a wide range of protein targets by corresponding DNA-based affinity probes, which have potential applications in bioanalysis.

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Source
http://dx.doi.org/10.1016/j.bioelechem.2023.108596DOI Listing

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