We introduce the bioconjugation of polymers synthesized by RAFT polymerization, bearing no specific functional end group, by means of hetero‐Diels–Alder cycloaddition through their inherent terminal thiocarbonylthio moiety with a diene‐modified model protein. Quantitative conjugation occurs over the course of a few hours, at ambient temperature and neutral pH, and in the absence of any catalyst. Our technology platform affords thermoresponsive bioconjugates, whose aggregation is solely controlled by the polymer chains
The conceptualization, development and application of the herein named RAFT-HDA Chemistry is reporte...
Direct synthesis of well-defined heterotelechelic polymers having functional groups allowing the che...
Site-specific protein conjugates with RAFT polymers were synthesized using expressed protein ligatio...
We introduce the bioconjugation of polymers synthesized by RAFT polymerization, bearing no specific ...
Wir stellen die Biokonjugation von Polymeren vor, die durch RAFT‐Polymerisation mittels Hetero‐Diels...
This review aims to highlight the use of RAFT polymerization in the synthesis of polymer bioconjugat...
YesWe report a simple temperature-responsive bioconjugate system comprising superfolder green fluore...
We report a simple temperature-responsive bioconjugate system comprising superfolder green fluoresce...
BSA and lysozyme have been transformed into macroinitiators for living radical polymerisation and us...
A novel method for the introduction of a single protected amine-functional monomer at the chain end ...
Biotechnology, biomedicine, and nanotechnology applications would benefit from methods generating we...
Biotechnology, biomedicine, and nanotechnology applications would benefit from methods generating we...
Biotechnology, biomedicine, and nanotechnology applications would benefit from methods generating we...
BSA and lysozyme have been transformed into macroinitiators for living radical polymerisation and us...
BSA and lysozyme have been transformed into macroinitiators for living radical polymerisation and us...
The conceptualization, development and application of the herein named RAFT-HDA Chemistry is reporte...
Direct synthesis of well-defined heterotelechelic polymers having functional groups allowing the che...
Site-specific protein conjugates with RAFT polymers were synthesized using expressed protein ligatio...
We introduce the bioconjugation of polymers synthesized by RAFT polymerization, bearing no specific ...
Wir stellen die Biokonjugation von Polymeren vor, die durch RAFT‐Polymerisation mittels Hetero‐Diels...
This review aims to highlight the use of RAFT polymerization in the synthesis of polymer bioconjugat...
YesWe report a simple temperature-responsive bioconjugate system comprising superfolder green fluore...
We report a simple temperature-responsive bioconjugate system comprising superfolder green fluoresce...
BSA and lysozyme have been transformed into macroinitiators for living radical polymerisation and us...
A novel method for the introduction of a single protected amine-functional monomer at the chain end ...
Biotechnology, biomedicine, and nanotechnology applications would benefit from methods generating we...
Biotechnology, biomedicine, and nanotechnology applications would benefit from methods generating we...
Biotechnology, biomedicine, and nanotechnology applications would benefit from methods generating we...
BSA and lysozyme have been transformed into macroinitiators for living radical polymerisation and us...
BSA and lysozyme have been transformed into macroinitiators for living radical polymerisation and us...
The conceptualization, development and application of the herein named RAFT-HDA Chemistry is reporte...
Direct synthesis of well-defined heterotelechelic polymers having functional groups allowing the che...
Site-specific protein conjugates with RAFT polymers were synthesized using expressed protein ligatio...