| Literature DB >> 25022510 |
Wei Cheng1, Wei Zhang2, Yurong Yan2, Bo Shen2, Dan Zhu2, Pinhua Lei2, Shijia Ding3.
Abstract
A novel electrochemical biosensing strategy was developed for ultrasensitive and specific detection of target DNA using a cascade signal amplification based on molecular beacon (MB) mediated circular strand displacement (CSD), rolling circle amplification (RCA), biotin-strepavidin system, and enzymatic amplification. The target DNA hybridized with the loop portion of MB probe immobilized on the gold electrode and triggered the CSD, leading to multiple biotin-tagged DNA duplex. Furthermore, via biotin-streptavidin interaction, the RCA was implemented, producing long massive tandem-repeat DNA sequences for binding numerous biotinylated detection probes. This enabled an ultrasensitive electrochemical readout by further employing the streptavidin-alkaline phosphatase. The proposed biosensor showed very high sensitivity and selectivity with a dynamic response range from 1 fM to 100 pM. The proposed strategy could have the potential for applying in clinical molecular diagnostics and environmental monitoring.Entities:
Keywords: Alkaline phosphatase; Circular isothermal strand displacement amplification; Electrochemical DNA sensor; Rolling circle amplification
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Year: 2014 PMID: 25022510 DOI: 10.1016/j.bios.2014.06.056
Source DB: PubMed Journal: Biosens Bioelectron ISSN: 0956-5663 Impact factor: 10.618