Numerous experimental studies have established that cells can sense the stiffness of underlying substrates and have quantified the effect of substrate stiffness on stress fibre formation, focal adhesion area, cell traction, and cell shape. In order to capture such behaviour, the current study couples a mixed mode thermodynamic and mechanical framework that predicts focal adhesion formation and growth with a material model that predicts stress fibre formation, contractility, and dissociation in a fully 3D implementation. Simulations reveal that SF contractility plays a critical role in the substrate-dependent response of cells. Compliant substrates do not provide sufficient tension for stress fibre persistence, causing dissociation of stress...
AbstractCells generate mechanical stresses via the action of myosin motors on the actin cytoskeleton...
The remodeling of the cytoskeleton and focal adhesion distributions for cells on substrates with mic...
In this paper, we propose a computational model to investigate the coupling between cell’s adhesions...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
The remodelling of the cytoskeleton and focal adhesion (FA) distributions for cells on substrates wi...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
International audienceThere is compelling evidence that substrate stiffness affects cell adhesion as...
Mechanosensing is a vital prerequisite for dynamic remodeling of focal adhesions and cytoskeletal st...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
A bio-chemo-mechanical model is described that targets contractility, adhesion, signaling, and cytos...
AbstractCells generate mechanical stresses via the action of myosin motors on the actin cytoskeleton...
The remodeling of the cytoskeleton and focal adhesion distributions for cells on substrates with mic...
In this paper, we propose a computational model to investigate the coupling between cell’s adhesions...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
The remodelling of the cytoskeleton and focal adhesion (FA) distributions for cells on substrates wi...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
International audienceThere is compelling evidence that substrate stiffness affects cell adhesion as...
Mechanosensing is a vital prerequisite for dynamic remodeling of focal adhesions and cytoskeletal st...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
A bio-chemo-mechanical model is described that targets contractility, adhesion, signaling, and cytos...
AbstractCells generate mechanical stresses via the action of myosin motors on the actin cytoskeleton...
The remodeling of the cytoskeleton and focal adhesion distributions for cells on substrates with mic...
In this paper, we propose a computational model to investigate the coupling between cell’s adhesions...