A biosensor based on a cationic polymer and metal@silica core–shell nanoparticles is demonstrated for the rapid identification of the SRY gene from unamplified human genomic DNA. By amplifying the fluorescence signal triggered by the capture of target molecules, this biosensor avoids the added complexity of enzyme-based chemical amplification, makes genotyping assays faster and less costly and could have important applications in various areas of health sciences.Fil: Brouard, Danny. Laval University; CanadáFil: Ratelle, Olivier. Laval University; CanadáFil: Bracamonte, Angel Guillermo. Laval University; Canadá. Consejo Nacional de Investigaciones Científicas y Técnicas; ArgentinaFil: St-Louis, Maryse. Héma-Québec; CanadáFil: Boudreau, Denis...
Solid-state nanopores promise a scalable platform for single-molecule DNA analysis. Direct, real-tim...
Biosensors, comprised of a bioreceptor and a signal transduction system, have become one of the most...
The development of ultrasensitive methods for detecting specific genes and discriminating single nuc...
AbstractThis paper describes an electrochemical hybridization biosensor that investigates DNA hybrid...
A silica nanoparticle-based DNA biosensor capable of detecting Bacillus anthracis bacteria through t...
We report the development of a new ultrasensitive approach for label-free DNA detection using magnet...
DNA nanotechnology has a great potential in biosensor design including nanostructuring of the biosen...
In this paper, we developed a simple, low-cost and sensitive DNA sequences detection biosensor based...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...
Water-dispersible, optical hybrid nanoparticles are preferred materials for DNA biosensing due to th...
We report here an impedimetric genosensor for the quantification of microRNA-21 using [Fe(CN)6]3−/4−...
Nanobiotransducers are biomolecules linked to nanostructures with the ability to generate a physical...
Sensitive detection of a specific deoxyribo nucleic acid (DNA) sequence is important for biomedical ...
In this contribution, we demonstrate that polystyrene (PS) nanospheres can serve as an effective sen...
This study describes the preparation and characterization of a DNA sensing architecture combining th...
Solid-state nanopores promise a scalable platform for single-molecule DNA analysis. Direct, real-tim...
Biosensors, comprised of a bioreceptor and a signal transduction system, have become one of the most...
The development of ultrasensitive methods for detecting specific genes and discriminating single nuc...
AbstractThis paper describes an electrochemical hybridization biosensor that investigates DNA hybrid...
A silica nanoparticle-based DNA biosensor capable of detecting Bacillus anthracis bacteria through t...
We report the development of a new ultrasensitive approach for label-free DNA detection using magnet...
DNA nanotechnology has a great potential in biosensor design including nanostructuring of the biosen...
In this paper, we developed a simple, low-cost and sensitive DNA sequences detection biosensor based...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...
Water-dispersible, optical hybrid nanoparticles are preferred materials for DNA biosensing due to th...
We report here an impedimetric genosensor for the quantification of microRNA-21 using [Fe(CN)6]3−/4−...
Nanobiotransducers are biomolecules linked to nanostructures with the ability to generate a physical...
Sensitive detection of a specific deoxyribo nucleic acid (DNA) sequence is important for biomedical ...
In this contribution, we demonstrate that polystyrene (PS) nanospheres can serve as an effective sen...
This study describes the preparation and characterization of a DNA sensing architecture combining th...
Solid-state nanopores promise a scalable platform for single-molecule DNA analysis. Direct, real-tim...
Biosensors, comprised of a bioreceptor and a signal transduction system, have become one of the most...
The development of ultrasensitive methods for detecting specific genes and discriminating single nuc...