Discover how graphene, a revolutionary carbon-based material, is transforming bone tissue engineering and regeneration through its exceptional properties.
Exploring how alginate dialdehyde crosslinking transforms porcine acellular dermal matrix into a superior biomaterial for tissue regeneration
Discover how scientists are using 3D weaving technology to create revolutionary biomimetic scaffolds for cartilage regeneration and functional tissue engineering.
Discover how multi-layered silk film coculture systems are revolutionizing corneal tissue engineering and offering hope to millions with corneal blindness.
Discover how scientists are using biochemical and biophysical cues to guide stem cells into becoming functional bone tissue for regenerative medicine.
Exploring the groundbreaking research presented at the 2010 International Conference on Biofabrication and its impact on tissue engineering and regenerative medicine.
Discover how scientists use lasers and bacterial cellulose to create revolutionary bone scaffolds for faster, safer healing of severe bone injuries.
Discover how micropatterning decellularized ECM creates biological roadmaps that guide cell behavior with unprecedented precision for tissue engineering applications.
Discover how innovative 3D printing technology with dual-phase composite forming is creating radial gradient bone scaffolds that mimic natural bone structure for improved bone repair.
Discover how gamma radiation is being used to modify biological scaffolds that dramatically improve human skin cell growth and regeneration.