Engineered affinity proteins have raised great interest due to their extremely small size compared to full length antibodies. Such small binding proteins have demonstrated many advantages such as quick biodistribution, good penetration into tumor tissue, and fast elimination from serum and nondiseased tissues. Thus, they are expected to be excellent alternatives to antibodies for clinical applications. This thesis focuses on the development of biosensors based on engineered antibodies and time-resolved Förster resonance energy transfer (FRET) through biological recognition of biomarkers. FRET-based immunoassays are established using terbium complexes (Tb) as FRET donors and semiconductor quantum dots (QDs) as FRET acceptors. The exceptional...
Forster resonance energy transfer (FRET) between lanthanide ion complexes (L) acting as donors and l...
One of the many challenges modern medicine is facing today is the accurate and early diagnosis of di...
International audienceAlthough antibodies remain a primary recognition element in all forms of biose...
Engineered affinity proteins have raised great interest due to their extremely small size compared t...
International audienceEngineered scaffold affinity proteins are used in many biological applications...
Biosensors based on the combination of semiconductor quantum dots (QDs) and Förster resonance energy...
Semiconductor quantum dot nanocrystals (QDs) for optical biosensing applications often contain thick...
Biosensing approaches that combine small, engineered antibodies (nanobodies) with nanoparticles are ...
Combining high sensitivity with simultaneous analysis of numerous biomarkers (multiplexing) is an es...
The integration of semiconductor quantum dots (QDs) into homogeneous Förster resonance energy transf...
Time-gated Förster resonance energy transfer (FRET) using the unique material combination of long-li...
In this present work, amine functionalized CdSSe/ZnS (core/shell) QDs have been conjugated with an a...
Forster resonance energy transfer (FRET) between lanthanide ion complexes (L) acting as donors and l...
One of the many challenges modern medicine is facing today is the accurate and early diagnosis of di...
International audienceAlthough antibodies remain a primary recognition element in all forms of biose...
Engineered affinity proteins have raised great interest due to their extremely small size compared t...
International audienceEngineered scaffold affinity proteins are used in many biological applications...
Biosensors based on the combination of semiconductor quantum dots (QDs) and Förster resonance energy...
Semiconductor quantum dot nanocrystals (QDs) for optical biosensing applications often contain thick...
Biosensing approaches that combine small, engineered antibodies (nanobodies) with nanoparticles are ...
Combining high sensitivity with simultaneous analysis of numerous biomarkers (multiplexing) is an es...
The integration of semiconductor quantum dots (QDs) into homogeneous Förster resonance energy transf...
Time-gated Förster resonance energy transfer (FRET) using the unique material combination of long-li...
In this present work, amine functionalized CdSSe/ZnS (core/shell) QDs have been conjugated with an a...
Forster resonance energy transfer (FRET) between lanthanide ion complexes (L) acting as donors and l...
One of the many challenges modern medicine is facing today is the accurate and early diagnosis of di...
International audienceAlthough antibodies remain a primary recognition element in all forms of biose...