Discover how the extracellular matrix (ECM) serves as a sophisticated biological scaffold for nerve regeneration and the latest breakthroughs in ECM-based therapies.
Discover how Tethered-TGF-β causes vascular stiffening by forcing smooth muscle cells to overproduce extracellular matrix, leading to cardiovascular diseases.
Exploring how extracellular matrix materials are transforming adipose tissue engineering and regenerative medicine approaches.
Explore how fibronectin microenvironments guide cell migration through adhesion, mechanosensing, and remodeling in health and disease.
Discover how extracellular matrix-inspired growth factor delivery systems are revolutionizing chronic wound treatment through nature's blueprint.
Exploring the compositional and structural differences between cell-derived and enzyme-based decellularized extracellular matrix for tissue engineering applications.
Discover how fibrous nonlinear elasticity creates a mechanical feedback loop between cells and the extracellular matrix, guiding tissue development and regeneration.
Explore how laminin bioactive peptides and elastin-like polypeptides are revolutionizing regenerative medicine by creating smart materials that guide the body's repair systems.
Discover how magnetic nanoparticle self-assembly is revolutionizing tissue engineering by creating precise 3D extracellular matrix environments that guide cellular behavior.
Exploring how biomimetic extracellular matrix scaffolds are transforming bone regeneration through stem cell guidance and tissue engineering.