Cells both actively generate and sensitively react to forces through their mechanical framework, the cytoskeleton, which is a nonequilibrium composite material including polymers and motor proteins. We measured the dynamics and mechanical properties of a simple three-component model system consisting of myosin II, actin filaments, and cross-linkers. In this system, stresses arising from motor activity controlled the cytoskeletal network mechanics, increasing stiffness by a factor of nearly 100 and qualitatively changing the viscoelastic response of the network in an adenosine triphosphate-dependent manner. We present a quantitative theoretical model connecting the large-scale properties of this active gel to molecular force generation
In this communication, we propose a model to study the non-equilibrium process by which actin stress...
The actin cytoskeleton—a complex, nonequilibrium network consisting of filaments, actin-crosslinking...
In this communication, we propose a model to study the non-equilibrium process by which actin stress...
Recent experiments on molecular motor driven in vitro F-Actin networks have found anomalously large ...
The mechanical integrity of eukaryotic cells along with their capability of dynamic remodeling depen...
Living systems provide a paradigmatic example of active soft matter. Cells and tissues comprise visc...
Diverse mechanics of the F-actin cytoskeleton mediate essential behaviors of cells, including cell d...
AbstractCells actively produce contractile forces for a variety of processes including cytokinesis a...
We study a model of an active gel of cross-linked semiflexible filaments with additional active link...
Presented on April 16, 2012 from 3:00 pm to 4:00 pm in Room 1116 of the Marcus Nanotechnology buildi...
We study a model of an active gel of cross-linked semiflexible filaments with additional active link...
We study a model of an active gel of cross-linked semiflexible filaments with additional active link...
Restricted Access.The mechanical properties of cells are dominated by the cytoskeleton, a crosslinke...
Abstract. Motivated by the cytoskeleton of eukaryotic cells, we develop a general framework for desc...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
In this communication, we propose a model to study the non-equilibrium process by which actin stress...
The actin cytoskeleton—a complex, nonequilibrium network consisting of filaments, actin-crosslinking...
In this communication, we propose a model to study the non-equilibrium process by which actin stress...
Recent experiments on molecular motor driven in vitro F-Actin networks have found anomalously large ...
The mechanical integrity of eukaryotic cells along with their capability of dynamic remodeling depen...
Living systems provide a paradigmatic example of active soft matter. Cells and tissues comprise visc...
Diverse mechanics of the F-actin cytoskeleton mediate essential behaviors of cells, including cell d...
AbstractCells actively produce contractile forces for a variety of processes including cytokinesis a...
We study a model of an active gel of cross-linked semiflexible filaments with additional active link...
Presented on April 16, 2012 from 3:00 pm to 4:00 pm in Room 1116 of the Marcus Nanotechnology buildi...
We study a model of an active gel of cross-linked semiflexible filaments with additional active link...
We study a model of an active gel of cross-linked semiflexible filaments with additional active link...
Restricted Access.The mechanical properties of cells are dominated by the cytoskeleton, a crosslinke...
Abstract. Motivated by the cytoskeleton of eukaryotic cells, we develop a general framework for desc...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
In this communication, we propose a model to study the non-equilibrium process by which actin stress...
The actin cytoskeleton—a complex, nonequilibrium network consisting of filaments, actin-crosslinking...
In this communication, we propose a model to study the non-equilibrium process by which actin stress...