DNA-nanoparticle conjugates are important tools in nanobiotechnology. Knowing the orientation, function, and length of DNA on nanoparticle surfaces at low nanomolar concentrations under physiological conditions is therefore of great interest. Here, we investigate the conformation of a 31 nucleotides (nt) long DNA attached to a semiconductor quantum dot (QD) via Förster resonance energy transfer (FRET) from Tb-DNA probes hybridized to different positions on the QD-DNA. Precise Tb-to-QD distance determination from 7 to 14 nm along 26 nt of the peptide-appended QD-DNA was realized by time-resolved FRET spectroscopy. The FRET nanoruler measured linear single-stranded (ssDNA) and double-stranded (dsDNA) extensions of ∼0.15 and ∼0.31 nm per base...
Quantum dots (QDs) are excellent donors in Förster resonance energy transfer (FRET) based sensors be...
Protection of genes against enzymatic degradation and overcoming of cellular barriers are critical f...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
WOS:000456749900050International audienceDNA-nanoparticle conjugates are important tools in nanobiot...
Conformational Details of Quantum Dot-DNA Resolved by Förster Resonance Energy Transfer Lifetime Nan...
Time-resolved fluorescence resonance energy transfer has been used to investigate the conformational...
In this letter, we report the preparation of a compact, functional quantum dot (QD)-DNA conjugate, w...
The complete unzipping of DNA double helix by small size gold nanoparticles having weakly positive s...
Nanoscale vectors comprised of cationic polymers that condense DNA to form nanocomplexes are promisi...
We have developed a fluorescence resonance energy transfer (FRET) probe based on the conjugation of ...
The unique spectroscopic properties of quantum dots (QDs) are of interest for application in intrace...
Newly discovered nanoparticle properties have driven the development of novel applications and uses....
We describe a new configuration for Fӧrster resonance energy transfer (FRET) between a quantum dot (...
Luminescent semiconductor quantum dots (QDs) play an important role in optical biosensing and, in pa...
Quantum dots (QD) are fluorescent semiconductor nanostructures that have the ability to emit light t...
Quantum dots (QDs) are excellent donors in Förster resonance energy transfer (FRET) based sensors be...
Protection of genes against enzymatic degradation and overcoming of cellular barriers are critical f...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
WOS:000456749900050International audienceDNA-nanoparticle conjugates are important tools in nanobiot...
Conformational Details of Quantum Dot-DNA Resolved by Förster Resonance Energy Transfer Lifetime Nan...
Time-resolved fluorescence resonance energy transfer has been used to investigate the conformational...
In this letter, we report the preparation of a compact, functional quantum dot (QD)-DNA conjugate, w...
The complete unzipping of DNA double helix by small size gold nanoparticles having weakly positive s...
Nanoscale vectors comprised of cationic polymers that condense DNA to form nanocomplexes are promisi...
We have developed a fluorescence resonance energy transfer (FRET) probe based on the conjugation of ...
The unique spectroscopic properties of quantum dots (QDs) are of interest for application in intrace...
Newly discovered nanoparticle properties have driven the development of novel applications and uses....
We describe a new configuration for Fӧrster resonance energy transfer (FRET) between a quantum dot (...
Luminescent semiconductor quantum dots (QDs) play an important role in optical biosensing and, in pa...
Quantum dots (QD) are fluorescent semiconductor nanostructures that have the ability to emit light t...
Quantum dots (QDs) are excellent donors in Förster resonance energy transfer (FRET) based sensors be...
Protection of genes against enzymatic degradation and overcoming of cellular barriers are critical f...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...