Discover how metal ions are transforming hydrogels into intelligent biomedical systems capable of healing, sensing, and protecting human tissues.
Exploring the revolutionary potential of marine collagen and alginate biomaterials in medical applications including wound healing and tissue engineering.
Explore how genetically engineered silk-elastin-like protein polymers (SELPs) are revolutionizing medicine through tunable self-assembly for drug delivery and tissue regeneration.
Explore how smart biomaterials are revolutionizing bone tissue engineering by guiding stem cells to repair and regenerate our skeleton through physical and biological cues.
Explore advances in engineering local drug delivery systems for cancer immunotherapy, including biomaterial platforms, targeting strategies, and future directions.
Explore how protein engineering and AI are revolutionizing biomaterials development for medical and industrial applications.
Explore how electrospinning technology is revolutionizing soft tissue engineering through nanoscale scaffolds that mimic the body's natural extracellular matrix.
Explore how advanced materials engineering and AI are transforming dental implant selection through data-driven processes and innovative biomaterials.
Explore how nonthermal plasma technology is revolutionizing nanostructured biomaterials and tissue engineering scaffolds through precise surface modification.
Exploring how endothelial cell adhesion and proliferation research is advancing blood-compatible medical devices through comparative studies of HUVEC and endothelial cell lines.