We present polymeric hydrogel biomaterials that are biomimetic both in their synthesis and degradation. The design of oligopeptide building blocks with dual enzymatic responsiveness allows us to create polymer networks that are formed and functionalized via enzymatic reactions and are degradable via other enzymatic reactions, both occurring under physiological conditions. The activated transglutaminase enzyme factor XIIIa was utilized for site-specific coupling of prototypical cell adhesion ligands and for simultaneous cross-linking of hydrogel networks from factor XIIIa substrate-modified multiarm poly(ethylene glycol) macromers. Ligand incorporation is nearly quantitative and thus controllable, and does not alter the network's macroscopic...
In this study, we report thermosensitive hydrogels based on poly(ethylene glycol)-block-poly(gamma-p...
Bioactive hydrogels formed by Michael-type addition reactions of end-functionalized poly(ethylene gl...
Bioactive hydrogels formed by Michael-type addition reactions of end-functionalized poly(ethylene gl...
We present polymeric hydrogel biomaterials that are biomimetic both in their synthesis and degradati...
matrices (ECM) represent interesting alternatives for biopolymers as they can be specifically design...
The molecular engineering of cell-instructive artificial extracellular matrices is a powerful means ...
A new class of biodegradable polymeric biomaterials is described which exhibits degradation by speci...
Toward the development of synthetic bioactive materials to support tissue repair, we present here th...
This project has addressed the development of a versatile hydrogel for in vivo or in vitro medical a...
In recent years, polymeric hydrogels have appeared promising matrices for enzyme immobilization to d...
Advances in synthetic routes to chemically modify natural macromolecules such as polysaccharides and...
In this study, we report thermosensitive hydrogels based on poly(ethylene glycol)-<i>block</i>-poly...
Tremendous progress has been made in the development of biomaterials as biomimetic extracellular mat...
Biohybrid materials combining synthetic polymers with biological components are highly suited for ti...
Tissue-engineering scaffolds were designed to mimic several features of the extracellular matrix usi...
In this study, we report thermosensitive hydrogels based on poly(ethylene glycol)-block-poly(gamma-p...
Bioactive hydrogels formed by Michael-type addition reactions of end-functionalized poly(ethylene gl...
Bioactive hydrogels formed by Michael-type addition reactions of end-functionalized poly(ethylene gl...
We present polymeric hydrogel biomaterials that are biomimetic both in their synthesis and degradati...
matrices (ECM) represent interesting alternatives for biopolymers as they can be specifically design...
The molecular engineering of cell-instructive artificial extracellular matrices is a powerful means ...
A new class of biodegradable polymeric biomaterials is described which exhibits degradation by speci...
Toward the development of synthetic bioactive materials to support tissue repair, we present here th...
This project has addressed the development of a versatile hydrogel for in vivo or in vitro medical a...
In recent years, polymeric hydrogels have appeared promising matrices for enzyme immobilization to d...
Advances in synthetic routes to chemically modify natural macromolecules such as polysaccharides and...
In this study, we report thermosensitive hydrogels based on poly(ethylene glycol)-<i>block</i>-poly...
Tremendous progress has been made in the development of biomaterials as biomimetic extracellular mat...
Biohybrid materials combining synthetic polymers with biological components are highly suited for ti...
Tissue-engineering scaffolds were designed to mimic several features of the extracellular matrix usi...
In this study, we report thermosensitive hydrogels based on poly(ethylene glycol)-block-poly(gamma-p...
Bioactive hydrogels formed by Michael-type addition reactions of end-functionalized poly(ethylene gl...
Bioactive hydrogels formed by Michael-type addition reactions of end-functionalized poly(ethylene gl...