期刊
ANALYTICAL CHEMISTRY
卷 93, 期 10, 页码 4593-4600出版社
AMER CHEMICAL SOC
DOI: 10.1021/acs.analchem.0c05055
关键词
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资金
- National Natural Science Foundation of China [21775003, 21375002]
- Foundation for Innovation Team of Bioanalytical Chemistry of Anhui Province
This study developed an electrochemical amplification strategy to monitor the electrocatalytic behavior of single G-quadruplex/hemin, and designed a hybridization chain reaction strategy for miRNA-15 detection. These provide a meaningful approach for nucleic acid sensing at the single molecule/particle level with good selectivity and sensitivity.
Stochastic collision electrochemistry is a hot topic in single molecule/particle research, which provides an opportunity to investigate the details of the single molecule/particle reaction mechanism that is always masked in ensemble-averaged measurements. In this work, we develop an electrochemical amplification strategy to monitor the electrocatalytic behavior of single G-quadruplex/hemin (GQH) for the reaction between hydrogen peroxide and hydroquinone (HQ) through the collision upon a gold nanoelectrode. The intrinsic peroxidase activities of single GQH were investigated by stochastic collision electrochemical measurements, giving further insights into understanding biocatalytic processes. Based on the unique catalytic activity of GQH, we have also designed a hybridization chain reaction strategy to detect miRNA-15 with good selectivity and sensitivity. This work provided a meaningful strategy to investigate the electrochemical amplification and the broad application for nucleic acid sensing at the single molecule/particle level.
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