While macrocyclic peptides are extensively researched for therapeutically relevant protein targets, DNA-encoded chemical libraries (DELs) are developed at a quick pace to discover novel small molecule binders. The combination of both fields has been explored since 2004 and the number of macrocyclic peptide DELs is steadily increasing. Macrocycles with high affinity and potency were identified for diverse classes of proteins, revealing DEL's huge potential. By giving a historical perspective, we would like to review the methods which permitted the rise of macrocyclic peptide DELs, describe the different DELs which were created and discuss the achievements and challenges of this emerging field.ISSN:2633-067
The discovery of small organic molecules capable of binding to specific biological targets represent...
Bioactive naturally occurring macrocyclic peptides often exhibit a strong bias for hydrophobic resid...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2015.Owing to their potent and di...
The synthesis and characterization of a novel DNA-encoded library of macrocyclic peptide derivatives...
The discovery of small organic ligands or biologics capable of modulating biological processes remai...
DNA-encoded chemical libraries (DELs) represent a versatile and powerful technology platform for the...
Abstract Here we show a seven-step chemical synthesis of a DNA-encoded macrocycle library (DEML) on ...
DNA-encoded chemical libraries (DECLs) represent a promising tool in drug discovery. DECL technology...
Macrocycles are an attractive class of molecules due to their good binding properties and yet rather...
We report the design and synthesis of a DNA-encoded one-bead one-compound library of cyclic peptoids...
Over the past decade, several methods have been developed for the construction of DNA-encoded peptid...
DNA-Encoded Chemical Libraries (DELs) have gained momentum over the recent years for the discovery o...
DNA-encoded chemical library (DEL) has emerged as a powerful and versatile tool for ligand discovery...
DNA-encoded chemical library (DEL) has emerged as a powerful and versatile tool for ligand discovery...
The application of macrocycles to previously undruggable targets has aroused a great deal of interes...
The discovery of small organic molecules capable of binding to specific biological targets represent...
Bioactive naturally occurring macrocyclic peptides often exhibit a strong bias for hydrophobic resid...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2015.Owing to their potent and di...
The synthesis and characterization of a novel DNA-encoded library of macrocyclic peptide derivatives...
The discovery of small organic ligands or biologics capable of modulating biological processes remai...
DNA-encoded chemical libraries (DELs) represent a versatile and powerful technology platform for the...
Abstract Here we show a seven-step chemical synthesis of a DNA-encoded macrocycle library (DEML) on ...
DNA-encoded chemical libraries (DECLs) represent a promising tool in drug discovery. DECL technology...
Macrocycles are an attractive class of molecules due to their good binding properties and yet rather...
We report the design and synthesis of a DNA-encoded one-bead one-compound library of cyclic peptoids...
Over the past decade, several methods have been developed for the construction of DNA-encoded peptid...
DNA-Encoded Chemical Libraries (DELs) have gained momentum over the recent years for the discovery o...
DNA-encoded chemical library (DEL) has emerged as a powerful and versatile tool for ligand discovery...
DNA-encoded chemical library (DEL) has emerged as a powerful and versatile tool for ligand discovery...
The application of macrocycles to previously undruggable targets has aroused a great deal of interes...
The discovery of small organic molecules capable of binding to specific biological targets represent...
Bioactive naturally occurring macrocyclic peptides often exhibit a strong bias for hydrophobic resid...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2015.Owing to their potent and di...