Structure-based design (SBD) can be used for the design and/or optimization of new inhibitors for a biological target. Whereas de novo SBD is rarely used, most reports on SBD are dealing with the optimization of an initial hit. Dynamic combinatorial chemistry (DCC) has emerged as a powerful strategy to identify bioactive ligands given that it enables the target to direct the synthesis of its strongest binder. We have designed a library of potential inhibitors (acylhydrazones) generated from five aldehydes and five hydrazides and used DCC to identify the best binder(s). After addition of the aspartic protease endothiapepsin, we characterized the protein-bound library member(s) by saturation-transfer difference NMR spectroscopy. Cocrystalliza...
Target-directed dynamic combinatorial chemistry (tdDCC) enables identification, as well as optimizat...
There is an urgent need for the development of efficient methodologies that accelerate drug discover...
Dynamic combinatorial chemistry (DCC) has emerged as a powerful strategy to identify ligands for bio...
Structure-based design (SBD) can be used for the design and/or optimization of new inhibitors for a ...
Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are n...
Fragment-based drug design (FBDD) has emerged as an efficient hit-identification and/or-optimization...
Aspartic proteases are a class of enzymes that play a causative role in numerous diseases such as ma...
Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are n...
Acylhydrazone-based dynamic combinatorial chemistry (DCC) is a powerful strategy for the rapid ident...
Acylhydrazone-based dynamic combinatorial chemistry (DCC) is a powerful strategy for the rapid ident...
We have highlighted throughout this thesis that fragment-based drug design (FBDD) and structure-base...
AbstractBackground: The identification of potent small molecule ligands to receptors and enzymes is ...
Abstract: Aspartic proteases are a class of enzymes that play a causative role in numerous diseases ...
Target-directed dynamic combinatorial chemistry (tdDCC) enables identification, as well as optimizat...
There is an urgent need for the development of efficient methodologies that accelerate drug discover...
Dynamic combinatorial chemistry (DCC) has emerged as a powerful strategy to identify ligands for bio...
Structure-based design (SBD) can be used for the design and/or optimization of new inhibitors for a ...
Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are n...
Fragment-based drug design (FBDD) has emerged as an efficient hit-identification and/or-optimization...
Aspartic proteases are a class of enzymes that play a causative role in numerous diseases such as ma...
Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are n...
Acylhydrazone-based dynamic combinatorial chemistry (DCC) is a powerful strategy for the rapid ident...
Acylhydrazone-based dynamic combinatorial chemistry (DCC) is a powerful strategy for the rapid ident...
We have highlighted throughout this thesis that fragment-based drug design (FBDD) and structure-base...
AbstractBackground: The identification of potent small molecule ligands to receptors and enzymes is ...
Abstract: Aspartic proteases are a class of enzymes that play a causative role in numerous diseases ...
Target-directed dynamic combinatorial chemistry (tdDCC) enables identification, as well as optimizat...
There is an urgent need for the development of efficient methodologies that accelerate drug discover...
Dynamic combinatorial chemistry (DCC) has emerged as a powerful strategy to identify ligands for bio...