Surface coating is the simplest surface modification. However, bioactive molecules can not spread well on the commonly used polylactone-type skeletons; thus, the surface coatings of biomolecules are typically unstable due to the weak interaction between the polymer and the bioactive molecules. In this study, a special type of poly(lactide-co-glycolide) (PLGA)-based scaffold with a loosened skeleton was fabricated by phase separation, which allowed gelatin molecules to more readily diffuse throughout the structure. In this application, gelatin modified both the internal substrate and external surface. After cross-linking with glutaraldehyde, the surface layer gelatin was tightly bound to the diffused gelatin, thereby preventing the surface ...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
In tissue engineering, incorporation of bone morphogenetic protein-2 (BMP-2) into biomaterial scaffo...
Background Surface properties of biocompatible scaffolds can be easily modified using bioactive mole...
Recently, the application of nanostructured materials in the field of tissue engineering has garnere...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
Biomimetic biomaterials are widely being explored as scaffold for bone regeneration. In this study, ...
Surface properties of scaffolds play an important role in cell adhesion and growth. Biodegradable po...
Porous scaffolds that can prolong the release of bioactive factors are urgently required in bone tis...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
In tissue engineering, incorporation of bone morphogenetic protein-2 (BMP-2) into biomaterial scaffo...
Background Surface properties of biocompatible scaffolds can be easily modified using bioactive mole...
Recently, the application of nanostructured materials in the field of tissue engineering has garnere...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
Biomimetic biomaterials are widely being explored as scaffold for bone regeneration. In this study, ...
Surface properties of scaffolds play an important role in cell adhesion and growth. Biodegradable po...
Porous scaffolds that can prolong the release of bioactive factors are urgently required in bone tis...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
International audienceIncreasing the bioactivity of polymeric materials used for bone repair is a co...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...