Exploring the cutting-edge science of isolating, expanding, and characterizing mesenchymal stem cells at the single-cell level for precision regenerative medicine.
Exploring how simulated microgravity affects mesenchymal stem cells and its implications for regenerative medicine.
Exploring ethical alternatives to embryonic stem cells and their impact on regenerative medicine, based on the Bioethics Council's white paper.
Explore the groundbreaking 2007 discovery of induced pluripotent stem cells (iPSCs) by Junying Yu and James Thomson that revolutionized regenerative medicine.
Exploring the functional assays that validate the pluripotency of human embryonic stem cells and their crucial role in regenerative medicine.
Exploring how PAMAM dendrimers interact with mesenchymal stem cells, their effects on viability and differentiation, and potential applications in regenerative medicine.
Discover how lipocartilage, a forgotten 19th-century discovery, is transforming regenerative medicine with its unique fat-filled cells and remarkable healing properties.
Discover how shrink-film wrinkles align human stem cells for cardiac repair, revolutionizing regenerative medicine for heart disease treatment.
Exploring the breakthrough science of engineered biomaterial scaffolds that are transforming regenerative medicine by tailoring the interface between synthetic materials and living tissue.
Exploring how growth signaling derangement in stem cells impacts regenerative medicine and cancer development