Fabrication of simultaneously robust and superabsorbent gelatin-based hydrogels for biomedical applications still remains a challenge due to lack of locally dissipative points in the presence of large water content. Here, we apply a synthesis strategy through which water absorbency and energy dissipative points are separated, and toughening mechanism is active closely at the crack tip. For this, gelatin-based microgels (GeMs) were synthesized in a way that concentrated supramolecular interactions were present to increase the energy necessary to propagate a macroscopic crack. The microgels were interlocked to each other via both temporary hydrophobic associations and permanent covalent crosslinks, in which the sacrificial binds sustained the...
Gelatin based adhesives have been used in the last decades in different biomedical applications due ...
Gelatin hydrogels have great potential in regenerative medicine but their weak mechanical properties...
Self-assembling bio-instructive materials that can provide a biomimetic tissue microenvironment with...
Fabrication of simultaneously robust and superabsorbent gelatin-based hydrogels for biomedical appli...
This thesis presents the development of entropy-elastic gelatin based networks in the form of films ...
BiocompatibLe methacryLamide-modified geLatin (GELMA) hydrogeLs with tuned characteristics, obtained...
Hydrogels are promising materials for biomedical applications due to highly hydrated, porous, permea...
As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high to...
Introduction: Biomaterials play pivotal roles in modern strategies of tissue engineering as designab...
Despite the development of hydrogels with a wide range of mechanical properties, insufficient adhesi...
Gelatin based adhesives have been used in the last decades in different biomedical applications due ...
Development of natural protein-based fibrous scaffolds with tunable physical properties and biocompa...
We establish a versatilehydrogel platform based on modularbuildingblocks that allows the design of h...
In the present work, novel bicomponent polymeric hydrogels based on methacrylamide-modified gelatin ...
The relatively weak mechanical properties of hydrogels remain a major drawback for their application...
Gelatin based adhesives have been used in the last decades in different biomedical applications due ...
Gelatin hydrogels have great potential in regenerative medicine but their weak mechanical properties...
Self-assembling bio-instructive materials that can provide a biomimetic tissue microenvironment with...
Fabrication of simultaneously robust and superabsorbent gelatin-based hydrogels for biomedical appli...
This thesis presents the development of entropy-elastic gelatin based networks in the form of films ...
BiocompatibLe methacryLamide-modified geLatin (GELMA) hydrogeLs with tuned characteristics, obtained...
Hydrogels are promising materials for biomedical applications due to highly hydrated, porous, permea...
As swollen polymer networks in water, hydrogels are usually brittle. However, hydrogels with high to...
Introduction: Biomaterials play pivotal roles in modern strategies of tissue engineering as designab...
Despite the development of hydrogels with a wide range of mechanical properties, insufficient adhesi...
Gelatin based adhesives have been used in the last decades in different biomedical applications due ...
Development of natural protein-based fibrous scaffolds with tunable physical properties and biocompa...
We establish a versatilehydrogel platform based on modularbuildingblocks that allows the design of h...
In the present work, novel bicomponent polymeric hydrogels based on methacrylamide-modified gelatin ...
The relatively weak mechanical properties of hydrogels remain a major drawback for their application...
Gelatin based adhesives have been used in the last decades in different biomedical applications due ...
Gelatin hydrogels have great potential in regenerative medicine but their weak mechanical properties...
Self-assembling bio-instructive materials that can provide a biomimetic tissue microenvironment with...