In this paper, we demonstrate the novel use of poly(3,4-ethylene dioxythiophene) (PEDOT) nanoparticle as a very effective fluorescent sensing platform for the detection of nucleic acid sequences. The principle of the assay lies in the fact that the adsorption of the fluorescently labeled single-stranded DNA (ssDNA) probe by PEDOT nanoparticle leads to substantial fluorescence quenching, followed by specific hybridization with the complementary region of the target DNA sequence. This results in desorption of the hybridized complex from PEDOT nanoparticle surface and subsequent recovery of fluorescence. A detection limit as low as 30 pM could be achieved in this sensing system. We also demonstrate its application for multiplexed detection of ...
Abstract Background Nucleic acids detection using microarrays requires labelling of target nucleic a...
A paper-based platform was investigated in which the selective detection of oligonucleotide targets ...
The work described herein explored solution-phase and solid-phase transduction of nucleic acid hybri...
In this contribution, we demonstrate that polystyrene (PS) nanospheres can serve as an effective sen...
In this communication, we report on the use of tetracyanoquinodimethane nanoparticles (TNs) as an ef...
We report on the design and development of a novel label-free DNA sensor based on conducting poly(3,...
We demonstrate a hybridization detection method using multicolor oligonucleotide-functionalized quan...
In this study, we reported Ag nanoparticles (AgNPs) as an effective fluorescent sensing platform for...
In this article, we report on the facile and rapid synthesis of conjugation polymer poly(p-phenylene...
We report the development of a new ultrasensitive approach for label-free DNA detection using magnet...
The need for rapid detection of pathogenic or viral DNA molecules as protective measures in health a...
A new fluorescent sensing approach for detection of single-nucleotide polymorphisms (SNPs) is propos...
Polysaccharide-functionalized silver nanoparticles (Oc-AgNPs) with a mean diameter of 15 nm were uti...
In this communication, we demonstrate for the first time the proof of concept that carbon nanopartic...
The designed synthesis of new nanomaterials with controlled shape, composition, and structure is cri...
Abstract Background Nucleic acids detection using microarrays requires labelling of target nucleic a...
A paper-based platform was investigated in which the selective detection of oligonucleotide targets ...
The work described herein explored solution-phase and solid-phase transduction of nucleic acid hybri...
In this contribution, we demonstrate that polystyrene (PS) nanospheres can serve as an effective sen...
In this communication, we report on the use of tetracyanoquinodimethane nanoparticles (TNs) as an ef...
We report on the design and development of a novel label-free DNA sensor based on conducting poly(3,...
We demonstrate a hybridization detection method using multicolor oligonucleotide-functionalized quan...
In this study, we reported Ag nanoparticles (AgNPs) as an effective fluorescent sensing platform for...
In this article, we report on the facile and rapid synthesis of conjugation polymer poly(p-phenylene...
We report the development of a new ultrasensitive approach for label-free DNA detection using magnet...
The need for rapid detection of pathogenic or viral DNA molecules as protective measures in health a...
A new fluorescent sensing approach for detection of single-nucleotide polymorphisms (SNPs) is propos...
Polysaccharide-functionalized silver nanoparticles (Oc-AgNPs) with a mean diameter of 15 nm were uti...
In this communication, we demonstrate for the first time the proof of concept that carbon nanopartic...
The designed synthesis of new nanomaterials with controlled shape, composition, and structure is cri...
Abstract Background Nucleic acids detection using microarrays requires labelling of target nucleic a...
A paper-based platform was investigated in which the selective detection of oligonucleotide targets ...
The work described herein explored solution-phase and solid-phase transduction of nucleic acid hybri...