Exploring the design and synthesis of stem cell-laden keratin/glycol chitosan methacrylate bioinks for 3D bioprinting applications in tissue engineering.
Explore how Wnt inhibitors affect cartilage development from human mesenchymal stem cells and their potential for regenerative medicine applications.
Exploring how Mesenchymal Stem Cells (MSCs) can potentially reverse tubulointerstitial injury, the common pathway to chronic kidney disease.
Discover how the combination of hydrostatic pressure and TGF-β3 protein enhances cartilage regeneration from mesenchymal stem cells, offering new hope for joint repair.
Discover how microRNAs act as master regulators in bone formation from mesenchymal stem cells, with potential applications in regenerative medicine.
A revolutionary biomaterial that mimics our body's own cellular environment can instruct stem cells to transform into bone-building cells, opening new frontiers in regenerative medicine.
Discover how functionalized electrospun scaffolds and human muscle-derived stem cells are revolutionizing cartilage regeneration and orthopedic medicine.
Discover how EDTA-soluble components and dental pulp stem cell conditioned medium create an inductive microenvironment that revolutionizes dental regeneration.
Discover how BMP12 transforms adipose-derived stem cells into tendon-building powerhouses, revolutionizing tendon repair surgery.
Discover how genetic engineering enhances mesenchymal stem cells with TGM2_v2 for superior cartilage repair and regeneration.