We have developed a fluorescence resonance energy transfer (FRET) probe based on the conjugation of a quantum dot (QD) with dye (YOYO-3) intercalated DNA. The FRET-inducing electrostatic coupling of DNA and the QD made structural changes to the QD-DNA conjugates, which significantly prevented an enzymatic reaction between the DNA and a conventional restriction endonuclease (EcoRI)
An optical DNA biosensor based on fluorescence resonance energy transfer (FRET) utilizing synthesize...
We present a design and synthesis of a new sensor intended for the genomic analysis in molecular ca...
The exploration of a quantum dot fluorescence resonance energy transfer (QD-FRET) based bioassay for...
Our work is focused on synthesis of sensor based on Fӧrster resonance energy transfer (FRET), which ...
We describe a new configuration for Fӧrster resonance energy transfer (FRET) between a quantum dot (...
We show that direct coupling of a dye-labelled DNA ( acceptor) to a quantum dot (QD) donor significa...
Nucleic acid-templated reactions are frequently explored tools in nucleic acid diagnosis. To enable ...
The unique spectroscopic properties of quantum dots (QDs) are of interest for application in intrace...
Quantum dots (QD) are fluorescent semiconductor nanostructures that have the ability to emit light t...
In this letter, we report the preparation of a compact, functional quantum dot (QD)-DNA conjugate, w...
Protection of genes against enzymatic degradation and overcoming of cellular barriers are critical f...
Quantum dots (QDs) have been widely used in chemical and biosensing due to their unique photoelectri...
International audienceThe analysis of biomolecular interactions using quantum dots (QDs) as both FRE...
An optical DNA biosensor based on fluorescence resonance energy transfer (FRET) utilizing synthesize...
Förster resonance energy transfers (FRET) are based on the nonradiative transfer of energy between a...
An optical DNA biosensor based on fluorescence resonance energy transfer (FRET) utilizing synthesize...
We present a design and synthesis of a new sensor intended for the genomic analysis in molecular ca...
The exploration of a quantum dot fluorescence resonance energy transfer (QD-FRET) based bioassay for...
Our work is focused on synthesis of sensor based on Fӧrster resonance energy transfer (FRET), which ...
We describe a new configuration for Fӧrster resonance energy transfer (FRET) between a quantum dot (...
We show that direct coupling of a dye-labelled DNA ( acceptor) to a quantum dot (QD) donor significa...
Nucleic acid-templated reactions are frequently explored tools in nucleic acid diagnosis. To enable ...
The unique spectroscopic properties of quantum dots (QDs) are of interest for application in intrace...
Quantum dots (QD) are fluorescent semiconductor nanostructures that have the ability to emit light t...
In this letter, we report the preparation of a compact, functional quantum dot (QD)-DNA conjugate, w...
Protection of genes against enzymatic degradation and overcoming of cellular barriers are critical f...
Quantum dots (QDs) have been widely used in chemical and biosensing due to their unique photoelectri...
International audienceThe analysis of biomolecular interactions using quantum dots (QDs) as both FRE...
An optical DNA biosensor based on fluorescence resonance energy transfer (FRET) utilizing synthesize...
Förster resonance energy transfers (FRET) are based on the nonradiative transfer of energy between a...
An optical DNA biosensor based on fluorescence resonance energy transfer (FRET) utilizing synthesize...
We present a design and synthesis of a new sensor intended for the genomic analysis in molecular ca...
The exploration of a quantum dot fluorescence resonance energy transfer (QD-FRET) based bioassay for...