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Updated: Apr 30, 2026

A Polyaniline-based Sensor of Nucleic Acids
Published on: November 1, 2016
A highly sensitive microRNA biosensor based on hybridized microRNA-guided deposition of polyaniline
Huimin Deng1, Wei Shen1, Yuqian Ren1
1Department of Chemistry, National University of Singapore, Singapore 117543, Republic of Singapore.
Abstract:
On the basis of hybridized microRNA (miRNA)-guided deposition of polyaniline (PAn), a highly sensitive impedimetric miRNA biosensor is developed in this report. Briefly, a gold electrode coated with charge neutral peptide nucleic acid (PNA) capture probes (CPs) is first hybridized to a target miRNA. After a very brief rinsing the hybridized electrode is incubated in pH 3.0 of 0.10 M potassium phosphate buffer-based cocktail containing aniline, H2O2, and a G-qudraplex-hemin DNAzyme. The DNAzyme catalyzes the polymerization of aniline and the hybridized miRNA strands guide the deposition of PAn, thus resulting in the formation of a thin PAn film on the biosensor surface. Electron-transfer impeding power of the PAn film in alkaline medium is utilized to determine the concentration of the target miRNA. Under optimized experimental conditions, 0.50 fM target miRNA is successfully detected. Excellent mismatch discrimination capability of the biosensor was observed largely due to the excellent hybridization selectivity of the PNA CPs. Attempts were made in profiling miRNAs in total RNA samples extracted from cancer cells and blood.

