A homogeneous non-competitive assay principle for measurement of small analytes based on quenching of fluorescence is described. Fluorescence resonance energy transfer (FRET) occurs between the donor, intrinsically fluorescent europium(III)-chelate conjugated to streptavidin, and the acceptor, quencher dye conjugated to biotin derivative when the biotin-quencher is bound to Eu-streptavidin. Fluorescence can be measured only from those streptavidins that are bound to biotin of the sample, while the fluorescence of the streptavidins that are not occupied by biotin are quenched by quencher-biotin conjugates. The quenching efficiencies of the non-fluorescent quencher dyes were over 95% and one dye molecule was able to quench the fluorescence of...
ABSTRACT: Fluorescence resonance energy transfer (FRET) has been widely used as a spectroscopic tech...
AbstractFluorescent probes based on the principle of resonance energy transfer (RET) or the principl...
One of the most popular means to follow interactions between bio(macro)molecules is Forster resonanc...
A homogeneous non-competitive assay principle for measurement of small analytes based on quenching o...
The research presented in this thesis introduces design criteria for development of a new type of se...
We previously presented a homogeneous noncompetitive assay principle based on quenching of the fluor...
A novel homogeneous assay system QTR-FRET (Quencher modulated Time-Resolved Forster Resonance Energy...
We report here a novel, water soluble, non-fluorescent dye that efficiently quenches fluorescence fr...
Following a study on the feasibility of resonance energy transfer (RET) from carboxylated nanosphere...
Fluorescence imaging has emerged as a powerful tool for monitoring biomolecules within the context o...
The determination of low-molecular weight substances (haptens) is demonstrated with a homogeneous ti...
Inter- or intramolecular distances of biomolecules can be studied by Forster resonance energy transf...
A newly developed method for determining molecular distribution functions is applied to a widely res...
A new fluorescence-based biosensor is presented. The biosensing scheme is based on the fact that a f...
A new functional luminescent lanthanide complex (LLC) has been synthesized with terbium as a central...
ABSTRACT: Fluorescence resonance energy transfer (FRET) has been widely used as a spectroscopic tech...
AbstractFluorescent probes based on the principle of resonance energy transfer (RET) or the principl...
One of the most popular means to follow interactions between bio(macro)molecules is Forster resonanc...
A homogeneous non-competitive assay principle for measurement of small analytes based on quenching o...
The research presented in this thesis introduces design criteria for development of a new type of se...
We previously presented a homogeneous noncompetitive assay principle based on quenching of the fluor...
A novel homogeneous assay system QTR-FRET (Quencher modulated Time-Resolved Forster Resonance Energy...
We report here a novel, water soluble, non-fluorescent dye that efficiently quenches fluorescence fr...
Following a study on the feasibility of resonance energy transfer (RET) from carboxylated nanosphere...
Fluorescence imaging has emerged as a powerful tool for monitoring biomolecules within the context o...
The determination of low-molecular weight substances (haptens) is demonstrated with a homogeneous ti...
Inter- or intramolecular distances of biomolecules can be studied by Forster resonance energy transf...
A newly developed method for determining molecular distribution functions is applied to a widely res...
A new fluorescence-based biosensor is presented. The biosensing scheme is based on the fact that a f...
A new functional luminescent lanthanide complex (LLC) has been synthesized with terbium as a central...
ABSTRACT: Fluorescence resonance energy transfer (FRET) has been widely used as a spectroscopic tech...
AbstractFluorescent probes based on the principle of resonance energy transfer (RET) or the principl...
One of the most popular means to follow interactions between bio(macro)molecules is Forster resonanc...