Several factors present in the extracellular environment regulate epithelial cell adhesion and dynamics. Among them, growth factors such as EGF, upon binding to their receptors at the cell surface, get internalized and directly activate the acto-myosin machinery. In this study we present the effects of EGF on the contractility of epithelial cancer cell colonies in confined geometry of different sizes. We show that the extent to which EGF triggers contractility scales with the cluster size and thus the number of cells. Moreover, the collective contractility results in a radial distribution of traction forces, which are dependent on integrin β1 peripheral adhesions and transmitted to neighboring cells through adherens junctions. Taken togethe...
Collections of epithelial cells form macroscopic materials which show collective behavior including ...
Purpose: The importance of mechanical forces and microenvironment in guiding cellular behavior has b...
The propagation of force in epithelial tissues requires that the contractile cytoskeletal machinery ...
Several factors present in the extracellular environment regulate epithelial cell adhesion and dynam...
The effect that growth factors such as epidermal growth factor (EGF) have on cell-cell adhesion is o...
AbstractThe effect that growth factors such as epidermal growth factor (EGF) have on cell-cell adhes...
Dynamics of epithelial tissues determine key processes in development, tissue healing and cancer inv...
Anchorage to a compliant extracellular matrix (ECM) and contact with neighboring cells impose import...
<p>Cellular contractility regulates tissue cohesion and morphogenesis. In epithelia, E-cadherin adhe...
Dynamics of epithelial tissues determine key processes in development, tissue healing and cancer inv...
Mechanical linkage between cell-cell and cell-extracellular matrix (ECM) adhesions regulates cell sh...
Physical characteristics of the microenvironment, such as geometry and stiffness, influence cell adh...
Contact-inhibition of proliferation constrains epithelial tissue growth, and the loss of contact-inh...
EPH/EPHRIN signaling is essential to many aspects of tissue self-organization and morphogenesis, but...
Traction forces exerted by adherent cells on their surroundings play an important role in diverse ph...
Collections of epithelial cells form macroscopic materials which show collective behavior including ...
Purpose: The importance of mechanical forces and microenvironment in guiding cellular behavior has b...
The propagation of force in epithelial tissues requires that the contractile cytoskeletal machinery ...
Several factors present in the extracellular environment regulate epithelial cell adhesion and dynam...
The effect that growth factors such as epidermal growth factor (EGF) have on cell-cell adhesion is o...
AbstractThe effect that growth factors such as epidermal growth factor (EGF) have on cell-cell adhes...
Dynamics of epithelial tissues determine key processes in development, tissue healing and cancer inv...
Anchorage to a compliant extracellular matrix (ECM) and contact with neighboring cells impose import...
<p>Cellular contractility regulates tissue cohesion and morphogenesis. In epithelia, E-cadherin adhe...
Dynamics of epithelial tissues determine key processes in development, tissue healing and cancer inv...
Mechanical linkage between cell-cell and cell-extracellular matrix (ECM) adhesions regulates cell sh...
Physical characteristics of the microenvironment, such as geometry and stiffness, influence cell adh...
Contact-inhibition of proliferation constrains epithelial tissue growth, and the loss of contact-inh...
EPH/EPHRIN signaling is essential to many aspects of tissue self-organization and morphogenesis, but...
Traction forces exerted by adherent cells on their surroundings play an important role in diverse ph...
Collections of epithelial cells form macroscopic materials which show collective behavior including ...
Purpose: The importance of mechanical forces and microenvironment in guiding cellular behavior has b...
The propagation of force in epithelial tissues requires that the contractile cytoskeletal machinery ...