Explore the fascinating world of cellular mechanotransduction and how physical forces influence cellular behavior, disease progression, and emerging therapies.
Exploring how cellular mechanical properties serve as diagnostic tools in nanomedicine through nanoparticle interactions and morphomechanical analysis.
Explore how scientists are studying tunable co-polymerized cytoskeleton networks to understand cellular mechanics and develop advanced biomimetic materials.
Discover how atomic force microscopy is revealing the mechanical differences between healthy and cancerous cells through viscoelastic measurements.
Explore the fascinating world of cytoskeletal dynamics and how smooth muscle cells transform their structure to adapt to physical demands.
Explore the fascinating role of Nesprin proteins in cellular mechanics and their connection to muscular dysfunction and disease.
Explore the biomechanical journey of breast cancer cells to the brain, highlighting the dynamic interplay between physical forces and molecular signals.