Explore the groundbreaking development of synthetic lymphatic organs created from engineered cells, promising a future of custom biological replacements.
Explore how tissue engineering reveals why muscle transforms to fat during aging and disease, with implications for metabolic health and muscle regeneration.
Explore how novel bioreactor technology enhances the viability and function of cultured cells and tissues, revolutionizing medicine and biotechnology.
Discover how surface grafting of chitosan shell and polycaprolactone core fiber meshes creates bioactive medical scaffolds for tissue regeneration.
Exploring how polyhydroxyalkanoates (PHAs) surface characteristics influence human Schwann cell-like cells for nerve regeneration
Explore the revolutionary field of bone tissue engineering, where scaffolds, stem cells, and signaling factors combine to regenerate living bone tissue.
Discover how scientists use electrical, mechanical, and flow stimulation to engineer functional striated muscles for regenerative medicine and beyond.
Exploring tyrosine-derived polycarbonate terpolymers as advanced biomaterials for bone regeneration scaffolds and tissue engineering applications.
Explore how bioactive electrospun meshes with incorporated biomolecules are revolutionizing tissue engineering and regenerative medicine.
Discover how ammonia plasma-functionalized scaffolds are revolutionizing liver tissue engineering and improving hepatocyte function for medical research.