DNA-encoded chemical libraries (DELs) are a cost-effective technology for the discovery of novel chemical probes and drug candidates. A major limiting factor in assembling productive DELs is the availability of DNA-compatible chemical reactions in aqueous media. In an effort to increase the chemical accessibility and structural diversity of small molecules displayed by DELs, we developed a robust Suzuki-Miyaura reaction protocol that is compatible with the DNA structures. By employing a water-soluble Pd-precatalyst, we developed conditions that allow efficient coupling of DNA-linked aryl halides with a wide variety of boronic acids/esters including heteroaryl boronates
DNA-encoded library technology (ELT) has emerged in the pharmaceutical industry as a powerful tool f...
The limited scope of DNA-compatible chemistry restricts the types of chemical features that can be i...
DNA-encoded libraries are a very efficient means of identifying ligands for protein targets in high ...
The Suzuki–Miyaura cross-coupling is one of the most widely employed reactions in medicinal chemistr...
Progress in DNA-encoded chemical library synthesis and screening crucially relies on the availabilit...
Quick and clean: A method for Pd-catalyzed Suzuki-Miyaura cross-coupling to iododeoxyuridine (IdU) i...
A DNA-compatible reaction has been developed for the cyanomethylation of (hetero)aryl halides or tri...
DNA-encoded chemical libraries have emerged as a cost-effective alternative to high-throughput scree...
Pd/DNA catalysts were prepared in a mixed H2O/EtOH solvent using palladium precursors, Pd(OAc)2 and ...
DNA-encoded libraries (DELs) are an increasingly popular approach to finding small molecule ligands ...
PhD ThesisThe discovery of potential lead like molecules is a crucial phase for any drug discovery ...
DNA-encoded libraries have emerged as a powerful hit generation technology. Combining the power of c...
DNA-encoded library technology (ELT) is a powerful tool for the discovery of new small-molecule liga...
A phosphine-free palladium catalyst for aqueous Suzuki-Miyaura cross-coupling is presented. The cata...
International audienceOver the last decades, boron and nucleic acids chemistries have gained a lot o...
DNA-encoded library technology (ELT) has emerged in the pharmaceutical industry as a powerful tool f...
The limited scope of DNA-compatible chemistry restricts the types of chemical features that can be i...
DNA-encoded libraries are a very efficient means of identifying ligands for protein targets in high ...
The Suzuki–Miyaura cross-coupling is one of the most widely employed reactions in medicinal chemistr...
Progress in DNA-encoded chemical library synthesis and screening crucially relies on the availabilit...
Quick and clean: A method for Pd-catalyzed Suzuki-Miyaura cross-coupling to iododeoxyuridine (IdU) i...
A DNA-compatible reaction has been developed for the cyanomethylation of (hetero)aryl halides or tri...
DNA-encoded chemical libraries have emerged as a cost-effective alternative to high-throughput scree...
Pd/DNA catalysts were prepared in a mixed H2O/EtOH solvent using palladium precursors, Pd(OAc)2 and ...
DNA-encoded libraries (DELs) are an increasingly popular approach to finding small molecule ligands ...
PhD ThesisThe discovery of potential lead like molecules is a crucial phase for any drug discovery ...
DNA-encoded libraries have emerged as a powerful hit generation technology. Combining the power of c...
DNA-encoded library technology (ELT) is a powerful tool for the discovery of new small-molecule liga...
A phosphine-free palladium catalyst for aqueous Suzuki-Miyaura cross-coupling is presented. The cata...
International audienceOver the last decades, boron and nucleic acids chemistries have gained a lot o...
DNA-encoded library technology (ELT) has emerged in the pharmaceutical industry as a powerful tool f...
The limited scope of DNA-compatible chemistry restricts the types of chemical features that can be i...
DNA-encoded libraries are a very efficient means of identifying ligands for protein targets in high ...