Discover how cells control bivalent genes like NR2F1 through a delicate balance of activation and silencing mechanisms during development.
New research suggests cancer originates from tissue-resident OCT-4 positive VSELs through excessive self-renewal and blocked differentiation pathways.
Explore how m6A mRNA methylation regulates stem cell pluripotency and differentiation through writer-reader-eraser machinery
Discover how Periodontal Ligament Stem Cells (PDLSCs) are revolutionizing periodontitis treatment through regeneration, immunomodulation, and antibacterial properties.
Explore the fascinating world of totipotent stem cells, their unique capabilities, groundbreaking science, and future medical applications.
Explore the fascinating world of bone marrow - the dynamic organ responsible for blood production and metabolic regulation.
Explore how microgravity affects embryonic development and stem cell differentiation, with implications for space colonization and regenerative medicine.
Explore how the epigenetic landscape metaphor evolved from a simple visualization to a quantitative tool revolutionizing developmental biology.
Explore how scientists are creating synthetic embryo models and revolutionizing our understanding of life's beginnings through experimental embryology.
Discover how Cxxc5 regulates hematopoietic stem cell differentiation, cell cycle progression, and its implications for treating blood disorders and cancers.