Discover how hyperosmotic stress reprograms embryonic stem cells into totipotent 2-cell-like cells through ROS and ATR signaling pathways.
Discover how lineage-specific enhancers activate self-renewal genes in macrophages and embryonic stem cells, revealing a shared mechanism for cellular immortality.
Explore the fascinating science behind hematopoietic stem cell aging, its health implications, and potential rejuvenation strategies.
Explore UCSF's groundbreaking Stem Cell and Tissue Biology Institute and its revolutionary approach to regenerative medicine, stem cell research, and ethical medical advancement.
Explore how human embryonic stem cells are revolutionizing brain cancer research, enabling accurate tumor modeling and personalized treatment development.
Explore how pluripotent stem cells are transforming congenital heart disease research through disease-in-a-dish models, cardiac organoids, and personalized medicine approaches.
Discover how stem cell therapy is transforming corneal repair, offering new hope for vision restoration through groundbreaking research and clinical trials.
Discover the groundbreaking research on stem cell identity preservation through epigenetic regulation, niche signaling, and transcriptional networks.
Exploring the scientific breakthroughs and ethical considerations in stem cell research, including revolutionary iPSC technology and embryo models.