Poly(ethylene glycol) (PEG) hydrogels are popular for cell culture and tissue-engineering applications because they are nontoxic and exhibit favorable hydration and nutrient transport properties. However, cells cannot adhere to, remodel, proliferate within, or degrade PEG hydrogels. Methacrylated gelatin (GelMA), derived from denatured collagen, yields an enzymatically degradable, photocrosslinkable hydrogel that cells can degrade, adhere to and spread within. To combine the desirable features of each of these materials we synthesized PEG-GelMA composite hydrogels, hypothesizing that copolymerization would enable adjustable cell binding, me-chanical, and degradation properties. The addition of GelMA to PEG resulted in a composite hydrogel t...
Although various cell encapsulation materials are available commercially for a wide range of potenti...
A series of studies described in her thesis were directed towards the development of different types...
Gelatin hydrogel has great potential in regenerative medicine. The degradation of gelatin hydrogel i...
Poly(ethylene glycol) (PEG) hydrogels are popular for cell culture and tissue-engineering applicatio...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
The combined use of natural ECM components and synthetic materials offers an attractive alternative ...
Introduction: Biomaterials play pivotal roles in modern strategies of tissue engineering as designab...
The behavior of cells cultured in two-dimensions (2D) greatly differs from that in three-dimensions ...
Although various cell encapsulation materials are available commercially for a wide range of potenti...
A series of studies described in her thesis were directed towards the development of different types...
Gelatin hydrogel has great potential in regenerative medicine. The degradation of gelatin hydrogel i...
Poly(ethylene glycol) (PEG) hydrogels are popular for cell culture and tissue-engineering applicatio...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
Although synthetic polymers may have suitable physicochemical properties for biomedical applications...
The combined use of natural ECM components and synthetic materials offers an attractive alternative ...
Introduction: Biomaterials play pivotal roles in modern strategies of tissue engineering as designab...
The behavior of cells cultured in two-dimensions (2D) greatly differs from that in three-dimensions ...
Although various cell encapsulation materials are available commercially for a wide range of potenti...
A series of studies described in her thesis were directed towards the development of different types...
Gelatin hydrogel has great potential in regenerative medicine. The degradation of gelatin hydrogel i...