Explore how cellular and biomaterial engineering is transforming orthopedic regenerative medicine with stem cells, smart scaffolds, and groundbreaking research.
Discover how covalent immobilization of MSC-affinity peptides on PLCL copolymer enhances stem cell adhesion and retention for tissue engineering applications.
Explore the cutting-edge engineering strategies for creating functional skeletal muscle tissues, from biomaterials to external stimulation techniques.
Discover how an alginate-based hydrogel with high angiogenic capacity and osteogenic potential could transform bone regeneration medicine.
Discover how scientists are using a hot dog-inspired approach to 3D print complex living tissues with hierarchical architecture for medical applications.
Exploring laser inkless eco-printing technology that alters paper's microstructure through controlled carbonization, creating sustainable printing solutions.
Breakthrough in 3D printed biodegradable polyurethane-urea elastomers for skeletal muscle regeneration showing functional restoration in animal models.
Breakthrough research on IL-4@ZIF-8-loaded hyaluronan-collagen hydrogel with nano-aligned architecture for spinal cord injury repair
Explore how finite element modeling is revolutionizing lower limb bone science through virtual simulations and digital twins.
Discover how advanced biomaterials and precision drug delivery are revolutionizing bone regeneration through guided tissue engineering.