The fabrication of three dimensional "bead-string" microstructured hydrogels is rationally achieved by controlling the relative timing of chemical crosslinking and physical self-assembly processes of an engineered protein. To demonstrate this strategy, an elastin-like protein (ELP) amino acid sequence was selected to enable site-specific chemical crosslinking and thermoresponsive physical self-assembly. This method allows the tuning of material microstructures without altering the ELP amino acid sequence but simply through controlling the chemical crosslinking extent before the thermally induced, physical coacervation of ELP. A loosely crosslinked network enables ELP to have greater chain mobility, resulting in phase segregation into larger...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
Complex recombinant biomaterials that merge the self-assembling properties of different (poly)pepti...
Recombinant protein polymers, which can combine different bioinspired self-assembly motifs in a well...
The fabrication of three dimensional “bead-string” microstructured hydrogels is rationally achieved ...
The biofabrication of structural proteins with controllable properties via amino acid sequence desig...
The ability to synthesis hydrogels and program a reversable temporary shape through three-dimensiona...
Recombinant DNA methods have been exploited to enable the creation of protein-based block copolymers...
Processes involving self-assembly of monomeric units into organized polymeric arrays are currently t...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
International audienceControlling how, when and where a self-assembly process occurs is essential fo...
*S Supporting Information ABSTRACT: Elastin-like polypeptides (ELPs) are a class of biopolymers cons...
Biomaterial hydrogels are made by cross-linking either natural materials, which exhibit inherent bio...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
Complex recombinant biomaterials that merge the self-assembling properties of different (poly)pepti...
Recombinant protein polymers, which can combine different bioinspired self-assembly motifs in a well...
The fabrication of three dimensional “bead-string” microstructured hydrogels is rationally achieved ...
The biofabrication of structural proteins with controllable properties via amino acid sequence desig...
The ability to synthesis hydrogels and program a reversable temporary shape through three-dimensiona...
Recombinant DNA methods have been exploited to enable the creation of protein-based block copolymers...
Processes involving self-assembly of monomeric units into organized polymeric arrays are currently t...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
International audienceControlling how, when and where a self-assembly process occurs is essential fo...
*S Supporting Information ABSTRACT: Elastin-like polypeptides (ELPs) are a class of biopolymers cons...
Biomaterial hydrogels are made by cross-linking either natural materials, which exhibit inherent bio...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
We present a detailed study of self-assembled hydrogels of bundled and cross-linked networks consist...
Complex recombinant biomaterials that merge the self-assembling properties of different (poly)pepti...
Recombinant protein polymers, which can combine different bioinspired self-assembly motifs in a well...