Microarrays based on DNA–DNA hybridization are potentially useful for detecting and subtyping viruses but require fluorescence labeling and imaging equipment. We investigated a label-free electrical detection system using electrochemical impedance spectroscopy that is able to detect hybridization of DNA target sequences derived from avian H5N1 influenza virus to gold surface-attached singlestranded DNA oligonucleotide probes. A 23-nt probe is able to detect a 120-nt base fragment of the influenza A hemagglutinin gene sequence. We describe a novel method of data analysis that is compatible with automatic measurement without operator input, contrary to curve fitting used in conventional electrochemical impedance spectroscopy (EIS) data analys...
Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectros...
A novel electrochemical approach for label-free detection of DNA primary sequence has been proposed....
We report the use of Co-porphyrins as electrochemical tags for a highly sensitive and selective geno...
In this work, we report on oligonucleotide probes bearing metallacarborane [3-iron bis(dicarbollide)...
A conducting polymer sensor for direct label-free DNA detection based on a polythiophene bearing an ...
tThe genosensors based on thiolated ssDNA probe deposited on the two types of gold electrodes: scree...
WOS: 000427704400023The differentiation of fully matched and unlabelled Influenza A (Inf A) or B (In...
WOS: 000292979500025In the presented study, a novel method is introduced that demonstrates the elect...
This study reports a simple strategy to detect a deoxyribonucleic acid (DNA) on a membrane-based la...
In the presented study, a novel method is introduced that demonstrates the electrochemical detection...
In the presented study, a novel method is introduced that demonstrates the electrochemical detection...
A nanowell array electrode-based electrochemical quantitative system without amplification was devel...
To improve the current biodetection methods available, a proof of concept design for the biological ...
An electrochemical genosensor based on an epoxyphenanthroline–Fe(III)–NH2-ssDNA layer for the detect...
We report the use of Co-porphyrins as electrochemical tags for a highly sensitive and selective geno...
Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectros...
A novel electrochemical approach for label-free detection of DNA primary sequence has been proposed....
We report the use of Co-porphyrins as electrochemical tags for a highly sensitive and selective geno...
In this work, we report on oligonucleotide probes bearing metallacarborane [3-iron bis(dicarbollide)...
A conducting polymer sensor for direct label-free DNA detection based on a polythiophene bearing an ...
tThe genosensors based on thiolated ssDNA probe deposited on the two types of gold electrodes: scree...
WOS: 000427704400023The differentiation of fully matched and unlabelled Influenza A (Inf A) or B (In...
WOS: 000292979500025In the presented study, a novel method is introduced that demonstrates the elect...
This study reports a simple strategy to detect a deoxyribonucleic acid (DNA) on a membrane-based la...
In the presented study, a novel method is introduced that demonstrates the electrochemical detection...
In the presented study, a novel method is introduced that demonstrates the electrochemical detection...
A nanowell array electrode-based electrochemical quantitative system without amplification was devel...
To improve the current biodetection methods available, a proof of concept design for the biological ...
An electrochemical genosensor based on an epoxyphenanthroline–Fe(III)–NH2-ssDNA layer for the detect...
We report the use of Co-porphyrins as electrochemical tags for a highly sensitive and selective geno...
Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectros...
A novel electrochemical approach for label-free detection of DNA primary sequence has been proposed....
We report the use of Co-porphyrins as electrochemical tags for a highly sensitive and selective geno...