Exploring how ancient silk fibers are revolutionizing modern medicine through tissue engineering and regenerative solutions.
Discover how salmon fish bones are transformed into nano-hydroxyapatite, a revolutionary biomaterial for bone regeneration and medical applications.
Discover how RGD peptides are revolutionizing tissue engineering by enabling cell adhesion and regeneration in cardiac, bone, liver, and neural tissues.
Exploring how hydroxyproline and cysteine in fish skin collagen create superior biomaterials with remarkable thermal and mechanical properties.
Exploring how metallic glasses interact with neuronal, osteoblast, endothelial, and fibroblast cells to revolutionize biomedical applications.
Exploring how artificial amino acid polymers are bridging biology and technology in medicine and materials science.
Exploring the groundbreaking potential of PU-PEG hydrogels in biomedicine, from nonfouling surfaces to tunable mechanical properties and smart drug delivery systems.
Discover how double-modified true bone ceramics (TBC) derived from bovine bone are transforming bone regeneration through innovative biomaterials.
Exploring how keratin biomaterials are transforming wound care through advanced cellular guidance, immunomodulation, and angiogenesis.
Explore the revolutionary breakthroughs in molecular, cellular, and tissue engineering that are transforming medicine and regeneration.