AbstractThis work is motivated by experimental observations that cells on stretched substrate exhibit different responses to static and dynamic loads. A model of focal adhesion that can consider the mechanics of stress fiber, adhesion bonds, and substrate was developed at the molecular level by treating the focal adhesion as an adhesion cluster. The stability of the cluster under dynamic load was studied by applying cyclic external strain on the substrate. We show that a threshold value of external strain amplitude exists beyond which the adhesion cluster disrupts quickly. In addition, our results show that the adhesion cluster is prone to losing stability under high-frequency loading, because the receptors and ligands cannot get enough con...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Contractile cells play a prominent role in the adaptive nature of biological tissues. Contractility ...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
AbstractThis work is motivated by experimental observations that cells on stretched substrate exhibi...
ABSTRACT This work is motivated by experimental observations that cells on stretched substrate exhib...
We report a theoretical study on the cyclic stretch-induced reorientation of spindle-shaped cells. S...
Focal adhesions are clusters of specific receptor-ligand bonds that link an animal cell to an extrac...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
<div><p>A minimal model of cellular mechanosensing system that consists of a single stress fiber adh...
AbstractIt is well known that substrate stretching reorganizes the actin cytoskeleton of an adherent...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
AbstractIn this work, a chemomechanical model describing the growth dynamics of cell-matrix adhesion...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Contractile cells play a prominent role in the adaptive nature of biological tissues. Contractility ...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
AbstractThis work is motivated by experimental observations that cells on stretched substrate exhibi...
ABSTRACT This work is motivated by experimental observations that cells on stretched substrate exhib...
We report a theoretical study on the cyclic stretch-induced reorientation of spindle-shaped cells. S...
Focal adhesions are clusters of specific receptor-ligand bonds that link an animal cell to an extrac...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
<div><p>A minimal model of cellular mechanosensing system that consists of a single stress fiber adh...
AbstractIt is well known that substrate stretching reorganizes the actin cytoskeleton of an adherent...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
AbstractIn this work, a chemomechanical model describing the growth dynamics of cell-matrix adhesion...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Contractile cells play a prominent role in the adaptive nature of biological tissues. Contractility ...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...