Exploring the process-structure-quality relationships in 3D-printed PCL-HAp scaffolds for advanced bone tissue engineering applications.
Explore the science of angiogenesis in tissue engineering: how researchers grow functional blood vessels in the lab to create viable transplant tissues.
Discover how scientists use electrospinning of thermo-responsive polymers with peptide conjugates to create intelligent scaffolds for tissue regeneration and cell therapy.
Discover how Raman imaging technology enables precise quantification of biodegradable polymers in biological tissues, revolutionizing medical implant development and tissue engineering.
Discover how electrospun PDO/PEUU composite nanofibers are revolutionizing heart valve tissue engineering and cardiovascular medicine.
Discover how emulsion templating technology is revolutionizing tissue engineering by creating advanced scaffolds for bone regeneration and tissue repair.
Discover how mesenchymal stem cells combined with innovative scaffolds containing chitosan, calcium polyphosphate and pigeonite are advancing bone tissue engineering.
Discover how scientists are using a hot dog-inspired approach to 3D print complex living tissues with hierarchical architecture for medical applications.
Discover how advanced biomaterials and precision drug delivery are revolutionizing bone regeneration through guided tissue engineering.
Exploring chitin's potential as a biomaterial for tissue engineering and stem cell technologies, from crab shells to medical breakthroughs.