Ligand-based fluorine NMR screening has gained popularity in drug discovery projects during the past decade and has become a powerful methodology to produce high quality hits. Its high sensitivity to protein binding makes it particularly suitable for fragment screening, allowing detection and binding strength measurement of very weak affinity ligands. The screening can be performed in direct or competition format, and its versatility allows application to complex biological and chemical systems. As the potential of the methodology has now been recognized and successfully demonstrated in several relevant medicinal chemistry projects, it is now an appropriate time to report the learned lessons and point the way to the future. In this Perspect...
19F-NMR has proved to be a valuable tool in fragment-based drug discovery. Its applications include ...
Fluorine NMR spectroscopy is widely used for detection of protein–ligand interactions in drug discov...
A variety of nuclear magnetic resonance (NMR) applications have been developed for structure-based d...
Ligand-based fluorine NMR screening has gained popularity in drug discovery projects during the past...
A novel strategy for the design of a fluorinated fragment library that takes into account the local ...
Fragment screening performed with 19F NMR spectroscopy is becoming increasingly popular in drug dis...
Fluorine is widely used in the lead optimization phase of drug discovery projects. More recently, fl...
The substrate- or cofactor-based fluorine NMR screening, also known as n-FABS (n fluorine atoms for ...
19F-NMR has proved to be a valuable tool in fragment-based drug discovery. Its applications include...
Nuclear magnetic resonance (NMR) spectroscopy is one of the leading biophysical methods used in the ...
Currently, G protein-coupled receptors are the targets with the highest number of drugs in many ther...
Fluorine NMR spectroscopy is widely used for detection of protein-ligand interactions in drug discov...
Fragment-based drug discovery (FBDD) using NMR has become a central approach over the last twenty ye...
SummaryFragment-based ligand design (FBLD) approaches have become more widely used in drug discovery...
The possibility of measuring the action of inhibitors of specific enzymatic reactions in intact cell...
19F-NMR has proved to be a valuable tool in fragment-based drug discovery. Its applications include ...
Fluorine NMR spectroscopy is widely used for detection of protein–ligand interactions in drug discov...
A variety of nuclear magnetic resonance (NMR) applications have been developed for structure-based d...
Ligand-based fluorine NMR screening has gained popularity in drug discovery projects during the past...
A novel strategy for the design of a fluorinated fragment library that takes into account the local ...
Fragment screening performed with 19F NMR spectroscopy is becoming increasingly popular in drug dis...
Fluorine is widely used in the lead optimization phase of drug discovery projects. More recently, fl...
The substrate- or cofactor-based fluorine NMR screening, also known as n-FABS (n fluorine atoms for ...
19F-NMR has proved to be a valuable tool in fragment-based drug discovery. Its applications include...
Nuclear magnetic resonance (NMR) spectroscopy is one of the leading biophysical methods used in the ...
Currently, G protein-coupled receptors are the targets with the highest number of drugs in many ther...
Fluorine NMR spectroscopy is widely used for detection of protein-ligand interactions in drug discov...
Fragment-based drug discovery (FBDD) using NMR has become a central approach over the last twenty ye...
SummaryFragment-based ligand design (FBLD) approaches have become more widely used in drug discovery...
The possibility of measuring the action of inhibitors of specific enzymatic reactions in intact cell...
19F-NMR has proved to be a valuable tool in fragment-based drug discovery. Its applications include ...
Fluorine NMR spectroscopy is widely used for detection of protein–ligand interactions in drug discov...
A variety of nuclear magnetic resonance (NMR) applications have been developed for structure-based d...