Ultrasensitive detection of microRNA through rolling circle amplification on a DNA tetrahedron decorated electrode

P Miao, B Wang, F Meng, J Yin, Y Tang - Bioconjugate Chemistry, 2015 - ACS Publications
P Miao, B Wang, F Meng, J Yin, Y Tang
Bioconjugate Chemistry, 2015ACS Publications
MicroRNAs are a class of evolutionally conserved, small noncoding RNAs involved in the
regulation of gene expression and affect a variety of biological processes including cellular
differentiation, immunological response, tumor development, and so on. Recently,
microRNAs have been identified as promising disease biomarkers. In this work, we have
fabricated a novel electrochemical method for ultrasensitive detection of microRNA.
Generally, a DNA tetrahedron decorated gold electrode is employed as the recognition …
MicroRNAs are a class of evolutionally conserved, small noncoding RNAs involved in the regulation of gene expression and affect a variety of biological processes including cellular differentiation, immunological response, tumor development, and so on. Recently, microRNAs have been identified as promising disease biomarkers. In this work, we have fabricated a novel electrochemical method for ultrasensitive detection of microRNA. Generally, a DNA tetrahedron decorated gold electrode is employed as the recognition interface. Then, hybridizations between DNA tetrahedron, microRNA, and primer probe initiate rolling circle amplification (RCA) on the electrode surface. Silver nanoparticles attached to the RCA products provide significant electrochemical signals and a limit of detection as low as 50 aM is achieved. Moreover, homology microRNA family members with only one or two mismatches can be successfully distinguished. Therefore, this proposed method reveals great advancements toward improved disease diagnosis and prognosis.
ACS Publications