Explore how the tissue microenvironment orchestrates stem cell fate through 3D models, bioprinting, and microenvironment engineering for regenerative medicine.
Discover how threonine metabolism controls embryonic stem cell self-renewal through epigenetic regulation and nutrient signaling pathways.
Explore how phosphodiesterase inhibitors trigger neural development in mesenchymal stem cells and their potential for treating neurological conditions.
Explore how biomaterials and stem cells are revolutionizing tissue engineering to create living biological replacements for damaged organs and tissues.
Discover the fascinating phenomenon of embryonic diapause - nature's survival strategy that allows embryos to pause development and restart when conditions are optimal.
Explore how RNA modifications control stem cell fate and identity through the fascinating world of epitranscriptomics
Explore how 2018 marked a pivotal year in stem cell research with the rise of VSELs as promising alternatives to iPSCs and ESCs in regenerative medicine.