The rise and fall of STAP cells - how a revolutionary stem cell discovery became biology's cautionary tale about scientific integrity and replication.
Breakthroughs in generating blood cells from murine embryonic stem cells, including CRISPR gene activation screens and 3D culture systems.
Discover how static magnetic fields protect bone marrow stem cells from radiation-induced apoptosis, with potential applications in cancer therapy and regenerative medicine.
Groundbreaking research reveals how adipose-derived stem cells can transform alopecia treatment by harnessing the body's regenerative potential.
Exploring how induced pluripotent stem cells (iPSCs) and CRISPR technologies are transforming regenerative medicine and disease treatment.
Discover how graphene hydrogel films are revolutionizing bone regeneration by transforming fat stem cells into new bone tissue without chemical additives.
Exploring the groundbreaking combination of fibrin glue and mesenchymal stem cells for nerve regeneration and repair.
Exploring how placenta-derived mesenchymal stem cells (PL-MSCs) function differently in COVID-19 patients versus healthy individuals, offering new therapeutic potential.
Discover how systems biology is transforming cardiac regeneration through stem cell research and omics technologies.
Exploring how PAMAM dendrimers interact with mesenchymal stem cells, their effects on viability and differentiation, and potential applications in regenerative medicine.