Exploring how epigenetic mechanisms influence preterm infant development in the NICU and how developmental care strategies can optimize long-term outcomes.
Discover how epigenetics acts as the hidden conductor of our genetic orchestra, influencing health outcomes through environmental interactions and lifestyle choices.
Explore how epigenetic mechanisms serve as the molecular basis for memory formation, storage, and retrieval in the human brain.
Discover how positive childhood experiences create molecular vestiges in our biology through epigenetic mechanisms like DNA methylation.
Explore how genetic mutations and epigenetic changes work together to drive the development of leukemia, featuring key research and experimental data.
Exploring how students understand epigenetic visual representations across different biological organization levels, from molecules to organisms.
Discover how hemimethylation at CTCF/cohesin sites reveals a new layer of epigenetic inheritance that shapes cellular identity and genome architecture.
Discover how JARID2 and AEBP2 regulate PRC2 in response to H2AK119ub1 and other histone modifications in this detailed exploration of epigenetic mechanisms.
Exploring whether epigenetics can become a biosocial science that integrates social contexts into biological research, responding to Chiapperino and Paneni.
Discover how Trichostatin A treatment improves epigenetic reprogramming in bovine somatic cell nuclear transfer embryos, enhancing cloning efficiency.