Discover how divalent metal ions influence short heterochiral peptide gelation to create smart biomaterials with applications in medicine and tissue engineering.
Revolutionary gel combining silk fibroin microparticles and carboxymethyl cellulose for accelerated wound healing and tissue regeneration.
Discover how synthetic self-assembling peptide hydrogels are enabling scientists to grow functional mini-livers for medical research and drug testing.
Discover how visible light inducible chitosan hydrogels with collagen and chondroitin sulfate are revolutionizing cartilage tissue engineering and repair.
Exploring the breakthrough combination of adipose-derived mesenchymal stem cell exosomes and carboxymethyl chitosan hydrogel for advanced bone tissue regeneration and repair.
Explore the revolutionary medical approach of injectable cartilage tissue engineering that could transform how we heal our joints through minimally invasive hydrogel technology.
Discover how N-Cadherin-functionalized nanofiber hydrogel is revolutionizing spinal cord injury repair by creating a favorable environment for neural stem cells.
Explore how scientists are revolutionizing biomedical applications through hyaluronic acid hydrogel crosslinking methods for drug delivery, tissue engineering, and wound healing.
Explore how alginate hydrogel from brown seaweed is revolutionizing 3D bioprinting and regenerative medicine with its unique biocompatibility and tunable properties.
Discover how interpenetrating polymer network hydrogels reinforced by 3D woven scaffolds are creating revolutionary materials for tissue repair and regeneration.