Discover how Rituximab triggers intracellular reorganization in B cells, creating a killing zone that enhances cancer cell destruction.
Exploring the evolution of anesthetic neurotoxicity research from early alarming discoveries to current nuanced understanding of effects on developing brains.
Discover how nanoscale DHA@ZIF-8 frameworks enhance antigiardial activity through advanced drug delivery systems and mechanism analysis.
Explore the fascinating world of integrins - the cellular architects that connect cells to their environment and translate mechanical cues into cellular behavior.
Discover how Interleukin-17 (IL-17) drives pathological angiogenesis in ocular diseases and the promising new treatments targeting this inflammatory cytokine.
Discover how AI is revolutionizing protein subcellular localization prediction by fusing multiple classifiers to understand cellular function and disease.
Explore how SPH-DEM computer models simulate cellular mechanics to understand diseases, develop treatments, and process biomaterials.
Discover how the cytoskeleton actively regulates smooth muscle contraction through dynamic actin polymerization and cytoskeletal remodeling.
Discover the fascinating process of plant cell expansion - how plants grow not by creating more cells, but by making them bigger through turgor pressure and cell wall remodeling.
Discover how cytoskeletal proteins modify mutant Huntingtin toxicity and offer new therapeutic approaches for Huntington's disease.