Explore how mechanical forces guide mesenchymal stem cell differentiation through mechanotransduction, cytoskeletal signaling, and physical cues in regenerative medicine.
Discover how deer antlers, growing up to 2 cm per day, hold profound clues that could revolutionize human medicine and regenerative therapies through transcriptomic analysis.
Explore how stem cells are transforming medicine as living drugs that repair and regenerate damaged tissues, offering potential cures for previously untreatable diseases.
Explore how physical energy like electricity, magnetic fields, and sound waves are revolutionizing tissue healing and regenerative medicine.
Discover how physical topography guides stem cell behavior and fate in regenerative medicine. Explore the structure-function relationship in pluripotent stem cells.
Explore how hypoxic and pseudohypoxic preconditioning enhances mesenchymal stromal cell therapy through RNA sequencing analysis.
Explore the cutting-edge science of engineering cellular scaffolding—a field where biology meets materials science to create the future of medicine.