Explore how graphene-based biomaterials are transforming tissue engineering and regeneration, from bone repair to neural and cardiac tissue regeneration.
A breakthrough in tissue engineering brings us closer to the dream of regenerating human bone using bone marrow stromal cells and advanced scaffolds.
Discover how antibacterial collagen scaffolds derived from ovine tendon are revolutionizing wound healing through advanced tissue engineering and plasma polymerisation technology.
Discover how scientists are transforming the Indian meal moth from a pantry pest into a sustainable silk producer by manipulating environmental conditions.
Explore how biodegradable conducting polymers are revolutionizing medicine by merging electronics with biodegradable materials for smart implants and regenerative medicine.
Explore how natural macromolecules and biomaterials are transforming tissue engineering through innovative technologies like AI-enhanced bioprinting.
Explore how stereolithography 3D printing is revolutionizing tissue engineering by creating vascular networks in hydrogels for artificial organs and drug testing.
Explore how nanotechnology is revolutionizing artificial organ development and solving the global organ shortage crisis.
Discover how 3D-printed hydrogels with silk fibroin and oxidized cellulose are transforming lung tissue regeneration and offering hope for respiratory disease patients.
Explore how mechanical cues guide cellular behavior in tissue engineering, from stiffness sensing to clinical applications.