Eukaryotic cells assemble viscoelastic networks of crosslinked actin filaments to control their shape, mechanical properties, and motility. One important class of actin network is nucleated by the Arp2/3 complex and drives both membrane protrusion at the leading edge of motile cells and intracellular motility of pathogens such as Listeria monocytogenes. These networks can be reconstituted in vitro from purified components to drive the motility of spherical micron-sized beads. An Elastic Gel model has been successful in explaining how these networks break symmetry, but how they produce directed motile force has been less clear. We have combined numerical simulations with in vitro experiments to reconstitute the behavior of these motile actin...
The actin cytoskeleton is a network of proteins that provides infrastructure for a cell to maintain ...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
AbstractActin polymerization provides a major driving force for eukaryotic cell motility. Successive...
SummaryCells use actin assembly to generate forces for membrane protrusions during movement [1] or, ...
International audienceCells use actin assembly to generate forces for membrane protrusions during mo...
Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymer...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
International audienceCells use their dynamic actin network to control their mechanics and motility....
16 pages, 14 figures, chapter in book "Cell mechanics: from single scale-based models to multiscale ...
International audienceThe directed polymerization of a branched actin network against a functionaliz...
We present a simple and generic theoretical description of actin-based motility, where polymerizatio...
F-actin networks are involved in cell mechanical processes ranging from motility to endocytosis. The...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
The motility of acto-myosin is crucial to cell motility, muscular contraction, cell division etc.; a...
AbstractThe mechanical and dynamical properties of the actin network are essential for many cellular...
The actin cytoskeleton is a network of proteins that provides infrastructure for a cell to maintain ...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
AbstractActin polymerization provides a major driving force for eukaryotic cell motility. Successive...
SummaryCells use actin assembly to generate forces for membrane protrusions during movement [1] or, ...
International audienceCells use actin assembly to generate forces for membrane protrusions during mo...
Two theoretical models dominate current understanding of actin-based propulsion: microscopic polymer...
<div><p>Two theoretical models dominate current understanding of actin-based propulsion: microscopic...
International audienceCells use their dynamic actin network to control their mechanics and motility....
16 pages, 14 figures, chapter in book "Cell mechanics: from single scale-based models to multiscale ...
International audienceThe directed polymerization of a branched actin network against a functionaliz...
We present a simple and generic theoretical description of actin-based motility, where polymerizatio...
F-actin networks are involved in cell mechanical processes ranging from motility to endocytosis. The...
Mechanical forces play a crucial role in cell functions. Cells can generate force, change their shap...
The motility of acto-myosin is crucial to cell motility, muscular contraction, cell division etc.; a...
AbstractThe mechanical and dynamical properties of the actin network are essential for many cellular...
The actin cytoskeleton is a network of proteins that provides infrastructure for a cell to maintain ...
We propose a mathematical model of the actin-based propulsion of spatially extended obstacles. It st...
AbstractActin polymerization provides a major driving force for eukaryotic cell motility. Successive...