Explore the groundbreaking development of modular molecular scaffolds in tissue engineering and their potential to revolutionize regenerative medicine.
Explore the revolutionary field of tissue engineering, from traditional tissue banking to cutting-edge 3D bioprinting and space experiments.
Explore the latest breakthroughs in cartilage repair, including mRNA-LNP technology, biomaterial scaffolds, and growth factor delivery methods for joint regeneration.
How scientists are using a clever biological glue and recycled bone to engineer new cartilage in the lab.
Discover why amniotic fluid stem cells from fetuses with neural tube defects cannot produce collagen, hindering their regenerative potential for spina bifida treatment.
Explore how smart biomaterials, as featured in Journal of Materials Chemistry B, are creating a new frontier in medicine with self-healing materials and targeted drug delivery.
Discover how silk-gelatin hybrid hydrogels with affinity-based systems revolutionize growth factor delivery for tissue regeneration.
Research on genetically modifying adipose-derived stem cells with pleiotrophin gene to enhance their regenerative potential for tissue repair.
Discover how serum albumin is revolutionizing tissue engineering with its unique regenerative properties and versatile applications in medicine.
Discover how protein-engineered adipose-derived stem cell sheets are transforming wound healing for chronic conditions, with 30% faster recovery rates.