Discover how subgraph matching revolutionizes biomedical text mining by extracting complex biological events from scientific literature using dependency graphs.
Explore the fascinating world of RNA - from its role as the foundation of early life to its modern medical applications and regulatory functions in our cells.
Discover how Alzheimer's disease targets the brain's wake-promoting circuits, causing sleep disturbances years before memory problems appear.
Explore the fascinating evolution of how science understands the connection between our bodies and environment, from ancient humoral theory to modern epigenetics.
Explore how epigenetics controls gene expression without changing DNA, its role in diseases, and the cutting-edge tools scientists use to study this hidden layer of biological regulation.
Exploring how epigenetics and neuroscience reveal the biological embedding of social experiences and their implications for health and policy.
Explore how epigenetic mechanisms allow life experiences to influence gene expression through the cytocrin pathway, altering cellular function without changing DNA sequence.
Exploring how PIM kinases rewrite the epigenetic script of lymphoma cells and the therapeutic implications for DLBCL treatment.
Discover how gene silencing in severe systemic inflammation represents a sophisticated biological mechanism that could revolutionize treatment for sepsis, arthritis, and chronic inflammatory diseases.
Explore groundbreaking research on biological aging, epigenetic clocks, nutrition science, and strategies for extending healthspan.