Abstract Azide‐modified nucleosides are important building blocks for RNA and DNA functionalization by click chemistry based on azide‐alkyne cycloaddition. This has put demand on synthetic chemistry to develop approaches for the preparation of azide‐modified nucleoside derivatives. We review here the available methods for the synthesis of various nucleosides decorated with azido groups at the sugar residue or nucleobase, their incorporation into oligonucleotides and cellular RNAs, and their application in azide‐alkyne cycloadditions for labelling and functionalization
Real-time tracking of RNA expression can provide insight into the mechanisms used to generate cellul...
Functionalised nucleotides have found widespread adoption in applications ranging from genome labell...
Real-time tracking of RNA expression can provide insight into the mechanisms used to generate cellul...
Metabolic incorporation of azido nucleoside analogues into living cells can enable sensitive detecti...
The click azide = alkyne 1,3-dipolar cycloaddition (click chemistry) has become the approach of choi...
Azido nucleosides have been utilized for click reactions, metabolic incorporation into cellular DNA,...
Azido nucleosides have been utilized for click reactions, metabolic incorporation into cellular DNA,...
Azido nucleosides have been utilized for click reactions, metabolic incorporation into cellular DNA,...
A stepwise chemoselective click reaction was performed on nucleosides and oligonucleotides containin...
Since the year 2001 new ideology of clean and simple synthesis in organic chemistry has been establi...
Click chemistry is an immensely powerful technique for the fast and efficient covalent conjugation o...
The strain promoted azide alkyne cycloaddition (SPAAC) of azido nucleobase modified nucleosides and ...
Chemical modification can significantly enrich the structural and functional repertoire of ribonucle...
ABSTRACT: Labeled RNA becomes increasingly important for molecular diagnostics and biophysical studi...
ABSTRACT: Chemical modification can significantly enrich the structural and functional repertoire of...
Real-time tracking of RNA expression can provide insight into the mechanisms used to generate cellul...
Functionalised nucleotides have found widespread adoption in applications ranging from genome labell...
Real-time tracking of RNA expression can provide insight into the mechanisms used to generate cellul...
Metabolic incorporation of azido nucleoside analogues into living cells can enable sensitive detecti...
The click azide = alkyne 1,3-dipolar cycloaddition (click chemistry) has become the approach of choi...
Azido nucleosides have been utilized for click reactions, metabolic incorporation into cellular DNA,...
Azido nucleosides have been utilized for click reactions, metabolic incorporation into cellular DNA,...
Azido nucleosides have been utilized for click reactions, metabolic incorporation into cellular DNA,...
A stepwise chemoselective click reaction was performed on nucleosides and oligonucleotides containin...
Since the year 2001 new ideology of clean and simple synthesis in organic chemistry has been establi...
Click chemistry is an immensely powerful technique for the fast and efficient covalent conjugation o...
The strain promoted azide alkyne cycloaddition (SPAAC) of azido nucleobase modified nucleosides and ...
Chemical modification can significantly enrich the structural and functional repertoire of ribonucle...
ABSTRACT: Labeled RNA becomes increasingly important for molecular diagnostics and biophysical studi...
ABSTRACT: Chemical modification can significantly enrich the structural and functional repertoire of...
Real-time tracking of RNA expression can provide insight into the mechanisms used to generate cellul...
Functionalised nucleotides have found widespread adoption in applications ranging from genome labell...
Real-time tracking of RNA expression can provide insight into the mechanisms used to generate cellul...