Exploring how neurobiological and epigenetic research is transforming our understanding of motherhood and maternal identity.
Exploring how DNA methylation patterns influence colorectal cancer development, progression, and potential treatment approaches through epigenetic mechanisms.
Exploring how genetically identical twins experience different HIV outcomes through viral evolution and epigenetic factors.
Discover how KAT6B, a histone acetyltransferase, functions as a tumor suppressor in small cell lung cancer and the implications for future cancer treatments.
Exploring how genetics and epigenetics contribute to the pathogenesis of Behçet's syndrome, a complex inflammatory disorder with genetic and environmental factors.
Discover how interferon-α creates therapeutic resistance in early rheumatoid arthritis through epigenetic reprogramming and what this means for personalized medicine.
Explore how DNA methylation, a crucial epigenetic mechanism, regulates gene expression in reproductive science, influences fertility, and impacts transgenerational inheritance.
Exploring how early nutritional experiences reprogram our bodies at the most fundamental level, creating lifelong vulnerabilities to disease.
Explore how histone acylation serves as a dynamic metabolic sensor that translates nutrient availability into gene expression changes.
A comprehensive guide to systematic optimization of chromatin preparation and ChIP workflow for reliable epigenetics research.