Issue 14, 2019

A label-free and ultrasensitive DNA impedimetric sensor with enzymatic and electrical dual-amplification

Abstract

In this work, we report a facile, sensitive, selective, and reproducible DNA impedimetric sensor device. We demonstrate that, combined with exonuclease III, the easily prepared electrochemically reduced graphene oxide (rGO) could be a desirable platform to amplify signals in electrochemical impedance spectroscopy for ultrasensitive DNA detection. Guided by enzyme assisted target recycling, efficient interfacial tuning can be obtained, from the situation with high impedance caused by single-stranded DNA probes directly adsorbed onto rGO to the one with low impedance due to the continuous desorption of target–probe DNA hybrids and the consequent digestion of DNA probes. Just a few DNA targets can specifically trigger the enzymatic digestion of a large number of DNA probes. It is the excellent electrical conductivity of rGO that further enlarges the changes of electron transfer resistance after the removal of DNA probes. As a result of synergistically combining both enzymatic and electrical amplification, the enlarged changes of impedimetric signals can be measured to sensitively report DNA targets. The specificity has been guaranteed by the intrinsic recognition of hybrids through both rGO and exonuclease III. A limit of detection as low as 10 aM target DNA in the matrix of cell culture medium, as well as a wide linear range and good discrimination of mismatched sequences even at the one-base level, suggests its great application prospect in biosensing and biomedical analysis. It also has other advantages including easy operation, low cost, and convenient regeneration, with more competitive performance in developing impedimetric biosensors.

Graphical abstract: A label-free and ultrasensitive DNA impedimetric sensor with enzymatic and electrical dual-amplification

Supplementary files

Article information

Article type
Paper
Submitted
16 Apr 2019
Accepted
07 Jun 2019
First published
12 Jun 2019

Analyst, 2019,144, 4175-4179

A label-free and ultrasensitive DNA impedimetric sensor with enzymatic and electrical dual-amplification

S. Cao, L. Li, W. Wei, Y. Feng, W. Jiang, J. Wang, X. Zhang, S. Cai and Z. Chen, Analyst, 2019, 144, 4175 DOI: 10.1039/C9AN00682F

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