Discover how proteomic analysis reveals the molecular secrets behind enhanced royal jelly production in selectively bred honeybee strains compared to native Italian bees.
Discover how lamin-A, a nuclear structural protein, plays a crucial role in T-cell activation and immune defense mechanisms.
Explore the groundbreaking microsurgical technique that converts non-viable multipronuclear zygotes into potentially viable embryos through precise enucleation.
Discover how VASP and Abi1 proteins interact in human platelets to regulate blood clotting through computational predictions and experimental validation.
Groundbreaking research challenges traditional views on cell locomotion, revealing the primary role of the actin cytoskeleton over membrane flow in cellular movement.
Explore how scientists are mechanically enhancing planar lipid bilayers with minimal actin cortex to understand cellular mechanics and create artificial cells.
Discover how adenosine A1 receptors strengthen the vasa vasorum endothelial cell barrier and their potential for treating cardiovascular diseases.
Discover how scientists use proteomics to understand how chromium exposure leads to cancer development through protein analysis.
Exploring global migration patterns through revolutionary data mapping techniques and understanding human mobility in the 21st century
Explore the fascinating world of connexin and pannexin signaling pathways in the central nervous system and their role in brain function and disease.