Exploring the role of long non-coding RNAs in Multiple Sclerosis pathology, diagnostics, and potential therapies.
Explore how organ-on-a-chip technology is transforming medicine by simulating collective cell migration, drug diffusion, and multi-organ interactions.
Explore how Dr. Randy Jirtle's groundbreaking work in epigenetics is transforming our understanding of genetic expression and disease prevention.
Exploring epigenetic therapies that reprogram cancer cells by targeting DNA methylation, histone modifications, and other regulatory mechanisms.
Exploring the connections between primordial chemistry and modern regenerative biology through groundbreaking scientific discoveries.
Discover how the H19 gene challenges Mendelian genetics through genomic imprinting and its role in embryonic development.
How the 2011 Fritz Bender Symposium revolutionized cancer treatment through personalized medicine approaches and genomic breakthroughs
Discover how nutrition influences epigenetic mechanisms to prevent cancer through DNA methylation, histone modifications, and non-coding RNA regulation.
Exploring how telomere length predicts survival in chronic lymphocytic leukemia (CLL) better than conventional tools, with insights into epigenetic programming and clinical applications.
Exploring how oocyte cryopreservation techniques impact early embryo development through the 'carryover effect'