Explore how the tissue microenvironment orchestrates stem cell fate through 3D models, bioprinting, and microenvironment engineering for regenerative medicine.
Discover how induced pluripotent stem cells (iPSCs) are revolutionizing medicine by reprogramming adult cells back to their embryonic state.
Discover how extracellular vesicles (EVs) are transforming chronic wound treatment through natural biological communication and advanced hydrogel delivery systems.
Explore how California's CIRM is bridging the gap between academic research and industry to accelerate stem cell and gene therapy development through strategic partnerships.
Discover how synthetic polymers are revolutionizing regenerative medicine and biotechnology by guiding biological processes at the cellular level.
Explore how shrink-film configurable wrinkles align human embryonic stem cells, advancing tissue engineering and regenerative medicine.
Explore how bottom-up tissue engineering is revolutionizing regenerative medicine by letting cells self-assemble into functional 3D tissues.
Explore how scientists are engineering stem cell niches to control regeneration and advance regenerative medicine.
Explore how gold nanoparticles are transforming tissue engineering, from bone regeneration to muscle repair, with cutting-edge research and applications.
Explore the revolutionary field of recombinant biomaterials - engineered biological polymers that promise to transform regenerative medicine, drug delivery, and tissue engineering.