Resonant Energy Transfer

Development of a novel FRET immunosensor technique

Analytical Chemistry / Biomedical Engineering / Fluorescence / Nanotechnology / Fluorescence Resonance Energy Transfer / Biosensor / Technique / FRET / Resonant Energy Transfer / Protein Complex Detection / Antibody / Reproducibility of Results / Energy Transfer / Sensitivity and Specificity / Equipment Design / Equipment Failure Analysis / P/BV Ratio / Conformational Change / Antigens / Biosensing Techniques / immunoglobulin G / Biosensor / Technique / FRET / Resonant Energy Transfer / Protein Complex Detection / Antibody / Reproducibility of Results / Energy Transfer / Sensitivity and Specificity / Equipment Design / Equipment Failure Analysis / P/BV Ratio / Conformational Change / Antigens / Biosensing Techniques / immunoglobulin G

Novel selective thiazoleacetic acids as CRTH2 antagonists developed from in silico derived hits. Part 1

Organic Chemistry / Modeling / Prediction / Pharmacokinetics / Molecular modeling / Cercopithecus aethiops / Cell line / In Vitro / Humans / Animals / Resonant Energy Transfer / Bioluminescence / In Vivo / Rats / Molecular Model / Water Solubility / Acetic Acid / ADME / Bioorganic and medicinal Chemistry / Thiazoles / In Silico / Structure activity Relationship / Protein Binding / Chemical Synthesis / Selectivity / Binding affinity / Cercopithecus aethiops / Cell line / In Vitro / Humans / Animals / Resonant Energy Transfer / Bioluminescence / In Vivo / Rats / Molecular Model / Water Solubility / Acetic Acid / ADME / Bioorganic and medicinal Chemistry / Thiazoles / In Silico / Structure activity Relationship / Protein Binding / Chemical Synthesis / Selectivity / Binding affinity
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