AbstractCells generate mechanical stresses via the action of myosin motors on the actin cytoskeleton. Although the molecular origin of force generation is well understood, we currently lack an understanding of the regulation of force transmission at cellular length scales. Here, using 3T3 fibroblasts, we experimentally decouple the effects of substrate stiffness, focal adhesion density, and cell morphology to show that the total amount of work a cell does against the substrate to which it is adhered is regulated by the cell spread area alone. Surprisingly, the number of focal adhesions and the substrate stiffness have little effect on regulating the work done on the substrate by the cell. For a given spread area, the local curvature along t...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
Each cell of an animal has the same genome. Nevertheless, those cells can express many different phe...
AbstractCells generate mechanical stresses via the action of myosin motors on the actin cytoskeleton...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
International audienceThe regulation of cellular force production relies on the complex interplay be...
International audienceThe regulation of cellular force production relies on the complex interplay be...
Here we describe a method for quantifying traction in cells that are physically constrained within m...
International audienceThe regulation of cellular force production relies on the complex interplay be...
International audienceThe regulation of cellular force production relies on the complex interplay be...
International audienceThe regulation of cellular force production relies on the complex interplay be...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
Each cell of an animal has the same genome. Nevertheless, those cells can express many different phe...
AbstractCells generate mechanical stresses via the action of myosin motors on the actin cytoskeleton...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
AbstractRecent work has indicated that the shape and size of a cell can influence how a cell spreads...
International audienceThe regulation of cellular force production relies on the complex interplay be...
International audienceThe regulation of cellular force production relies on the complex interplay be...
Here we describe a method for quantifying traction in cells that are physically constrained within m...
International audienceThe regulation of cellular force production relies on the complex interplay be...
International audienceThe regulation of cellular force production relies on the complex interplay be...
International audienceThe regulation of cellular force production relies on the complex interplay be...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
Each cell of an animal has the same genome. Nevertheless, those cells can express many different phe...