Discover how laser surface treatment creates smart biomaterials that guide stem cells to form new bone, cartilage, or muscle for advanced regenerative medicine.
Discover how micropatterning decellularized ECM creates bioactive surfaces that guide cell alignment, proliferation, and migration for regenerative medicine.
Exploring the challenges and breakthroughs in biological materials science, from tissue engineering to bioinformed design approaches.
Discover how artificial secretory granules are transforming growth factor delivery in medicine through bioinspired protein engineering.
Discover how chitosan-silica hybrid hydrogels are revolutionizing regenerative medicine through advanced cell encapsulation and drug delivery technologies.
Discover how dental pulp stem cells are revolutionizing regenerative medicine through their rapid proliferation and unique genetic properties.
Discover how negatively-charged alginate and chondroitin sulfate microsphere hydrogels enhance endothelial cell proliferation and angiogenesis for advanced wound healing.
Discover how dynamic bioreactors are revolutionizing bone tissue engineering by enabling the creation of large-scale living bone grafts for critical-sized defects.
Discover how protein-nanoparticle hydrogels self-assemble using peptide-based molecular recognition to revolutionize regenerative medicine.
Explore how atelocollagen, a modified collagen with reduced immunogenicity, is revolutionizing drug delivery and regenerative medicine.