We demonstrate a new drug screening method for determining the binding affinity of small drug molecules to a target protein by forming fluorescent gold nanoclusters (Au NCs) within the drug-loaded protein, based on the differential fluorescence signal emitted by the Au NCs. Albumin proteins such as human serum albumin (HSA) and bovine serum albumin (BSA) are selected as the model proteins. Four small molecular drugs (e.g., ibuprofen, warfarin, phenytoin, and sulfanilamide) of different binding affinities to the albumin proteins are tested. It was found that the formation rate of fluorescent Au NCs inside the drug loaded albumin protein under denaturing conditions (i.e., 60 °C or in the presence of urea) is slower than that formed in the pri...
Human serum albumin (HSA) was explored for use as a stationary phase and ligand in affinity microcol...
Elucidating how molecules bind to HSA is fundamental for predicting drug incompatibilities. Through ...
Elucidating how molecules bind to HSA is fundamental for predicting drug incompatibilities. Through ...
High throughput screening of small molecular weight (LMW) ligands for protein and sensitive determin...
The search for new fluorescent molecules is vital to the advancement of molecular imaging and sensin...
Sensing and imaging at the nanoscale using fluorescence based techniques has advanced the fields of ...
Human serum albumin is a highly water soluble globular monomeric plasma protein with a relative mole...
Stern-Volmer fluorescence quenching, fluorescence lifetime measurements and fluorescence detected ci...
Discovering small-molecule chemical probes of protein function has great potential to elucidate biol...
<div><p>Two major plasma proteins in humans are primarily responsible for drug binding, the α<sub>1<...
Human serum albumin (HSA) was explored for use as a stationary phase and ligand in affinity microcol...
Many small molecules and drugs bind strongly to the plasma proteins and in particular to human serum...
According to many current reports, the pharmaceutical business will hit a wall over the next few yea...
Rapid identification of small molecules that interact with protein targets using a generic screening...
Characterizing the specific binding between protein targets and small molecules is critically import...
Human serum albumin (HSA) was explored for use as a stationary phase and ligand in affinity microcol...
Elucidating how molecules bind to HSA is fundamental for predicting drug incompatibilities. Through ...
Elucidating how molecules bind to HSA is fundamental for predicting drug incompatibilities. Through ...
High throughput screening of small molecular weight (LMW) ligands for protein and sensitive determin...
The search for new fluorescent molecules is vital to the advancement of molecular imaging and sensin...
Sensing and imaging at the nanoscale using fluorescence based techniques has advanced the fields of ...
Human serum albumin is a highly water soluble globular monomeric plasma protein with a relative mole...
Stern-Volmer fluorescence quenching, fluorescence lifetime measurements and fluorescence detected ci...
Discovering small-molecule chemical probes of protein function has great potential to elucidate biol...
<div><p>Two major plasma proteins in humans are primarily responsible for drug binding, the α<sub>1<...
Human serum albumin (HSA) was explored for use as a stationary phase and ligand in affinity microcol...
Many small molecules and drugs bind strongly to the plasma proteins and in particular to human serum...
According to many current reports, the pharmaceutical business will hit a wall over the next few yea...
Rapid identification of small molecules that interact with protein targets using a generic screening...
Characterizing the specific binding between protein targets and small molecules is critically import...
Human serum albumin (HSA) was explored for use as a stationary phase and ligand in affinity microcol...
Elucidating how molecules bind to HSA is fundamental for predicting drug incompatibilities. Through ...
Elucidating how molecules bind to HSA is fundamental for predicting drug incompatibilities. Through ...