Quantum dots (QDs) are not only advantageous for color-tuning, improved brightness, and high stability, but their nanoparticle surfaces also allow for the attachment of many biomolecules. Because IgG antibodies (AB) are in the same size range of biocompatible QDs and the AB orientation after conjugation to the QD is often random, it is difficult to predict if few or many AB per QD will lead to an efficient AB-QD conjugate. This is particularly true for homogeneous Förster resonance energy transfer (FRET) sandwich immunoassays, for which the AB on the QD must bind a biomarker that needs to bind a second AB-FRET-conjugate. Here, we investigate the performance of Tb-to-QD FRET immunoassays against total prostate specific antigen (TPSA) by cha...
Semiconductor quantum dot nanocrystals (QDs) for optical biosensing applications often contain thick...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
International audienceQuantum dots (QDs) are not only advantageous for color-tuning, improved bright...
The integration of semiconductor quantum dots (QDs) into homogeneous Förster resonance energy transf...
International audienceCompact and functional nanoparticle-antibody conjugates are of paramount impor...
International audienceTime-gated Förster resonance energy transfer (TG-FRET) between Tb complexes an...
A novel two-step approach for quantum dot (QD) functionalization and bioconjugation is presented, wh...
Biosensors based on the combination of semiconductor quantum dots (QDs) and Förster resonance energy...
In clinical diagnostics, homogeneous time-resolved (TR) FRET immunoassays are used for fast and high...
Quantum dots (QDs) are widely used in the immune detection. Yet, the sensitivity and specificity of ...
In clinical diagnostics, homogeneous time-resolved (TR) FRET immunoassays are used for fast and high...
Semiconductor quantum dot nanocrystals (QDs) for optical biosensing applications often contain thick...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
International audienceQuantum dots (QDs) are not only advantageous for color-tuning, improved bright...
The integration of semiconductor quantum dots (QDs) into homogeneous Förster resonance energy transf...
International audienceCompact and functional nanoparticle-antibody conjugates are of paramount impor...
International audienceTime-gated Förster resonance energy transfer (TG-FRET) between Tb complexes an...
A novel two-step approach for quantum dot (QD) functionalization and bioconjugation is presented, wh...
Biosensors based on the combination of semiconductor quantum dots (QDs) and Förster resonance energy...
In clinical diagnostics, homogeneous time-resolved (TR) FRET immunoassays are used for fast and high...
Quantum dots (QDs) are widely used in the immune detection. Yet, the sensitivity and specificity of ...
In clinical diagnostics, homogeneous time-resolved (TR) FRET immunoassays are used for fast and high...
Semiconductor quantum dot nanocrystals (QDs) for optical biosensing applications often contain thick...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...