AbstractFocal adhesions are micrometer-sized protein aggregates that connect actin stress fibers to the extracellular matrix, a network of macromolecules surrounding tissue cells. The actin fibers are under tension due to actin-myosin contractility. Recent measurements have shown that as the actin force is increased, these adhesions grow in size and in the direction of the force. This is in contrast to the growth of condensed domains of surface-adsorbed molecules in which the dynamics are isotropic. We predict these force-sensitive, anisotropic dynamics of focal adhesions from a model for the adsorption of proteins from the cytoplasm to the adhesion site. Our theory couples the mechanical forces and elasticity to the adsorption dynamics via...
In living cells, adhesion structures have the astonishing ability to grow and strengthen under force...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Unlike slip bonds, catch bonds experience reinforcement under tension. Cell adheres to the surface, ...
AbstractFocal adhesions are micrometer-sized protein aggregates that connect actin stress fibers to ...
AbstractCell focal adhesions are micrometer-sized aggregates of proteins that anchor the cell to the...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
AbstractCell/matrix adhesions are modulated by cytoskeletal or external stresses and adapt to the me...
AbstractIn this work, a chemomechanical model describing the growth dynamics of cell-matrix adhesion...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
Mechanosensing is a vital prerequisite for dynamic remodeling of focal adhesions and cytoskeletal st...
Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of ind...
AbstractForces transmitted by integrins regulate many important cellular functions. Previously, we d...
Physical environment guides tissue regeneration and morphology in both health and disease. In the pa...
In living cells, adhesion structures have the astonishing ability to grow and strengthen under force...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Unlike slip bonds, catch bonds experience reinforcement under tension. Cell adheres to the surface, ...
AbstractFocal adhesions are micrometer-sized protein aggregates that connect actin stress fibers to ...
AbstractCell focal adhesions are micrometer-sized aggregates of proteins that anchor the cell to the...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
AbstractCell/matrix adhesions are modulated by cytoskeletal or external stresses and adapt to the me...
AbstractIn this work, a chemomechanical model describing the growth dynamics of cell-matrix adhesion...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
Mechanosensing is a vital prerequisite for dynamic remodeling of focal adhesions and cytoskeletal st...
Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of ind...
AbstractForces transmitted by integrins regulate many important cellular functions. Previously, we d...
Physical environment guides tissue regeneration and morphology in both health and disease. In the pa...
In living cells, adhesion structures have the astonishing ability to grow and strengthen under force...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Unlike slip bonds, catch bonds experience reinforcement under tension. Cell adheres to the surface, ...