AbstractMost eukaryotic cells can crawl over surfaces. In general, this motility requires three distinct actions: polymerization at the leading edge, adhesion to the substrate, and retraction at the rear. Recent experiments with mouse embryonic fibroblasts showed that during spreading and crawling the lamellipodium undergoes periodic contractions that are substrate-dependent. Here I show that a simple model incorporating stick-slip adhesion and a simplified mechanism for the generation of contractile forces is sufficient to explain periodic lamellipodial contractions. This model also explains why treatment of cells with latrunculin modifies the period of these contractions. In addition, by coupling a diffusing chemical species that can bind...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
Animal cells that spread onto a surface often rely on actin-rich cell extensions called lamellipodia...
The spreading area of cells has been shown to play a central role in the determination of cell fate ...
AbstractMost eukaryotic cells can crawl over surfaces. In general, this motility requires three dist...
AbstractCellular lamellipodia bind to the matrix and probe its rigidity through forces generated by ...
Crawling of animal cells over surfaces is based on three coupled mechanisms: protrusion of the leadi...
SummaryCell motility proceeds by cycles of edge protrusion, adhesion, and retraction. Whether these ...
We extend a model for the morphology and dynamics of a crawling eukaryotic cell to describe cells on...
Membrane waves propagating along the cell circumference in a top down view have been observed with s...
Cell migration is dependent on adhesion dynamics and actin cytoskeleton remodeling at the leading ed...
We review recent mathematical models describing the diffusive transport, reaction, and turnover of a...
<div><p>Computational modeling of eukaryotic cells moving on substrates is an extraordinarily comple...
We present a phenomenological description of cell locomotion on a solid substrate. The material prop...
Computational modeling of eukaryotic cells moving on substrates is an extraordinarily complex task: ...
Cell motility driven by actin polymerization is pivotal to the development and survival of organisms...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
Animal cells that spread onto a surface often rely on actin-rich cell extensions called lamellipodia...
The spreading area of cells has been shown to play a central role in the determination of cell fate ...
AbstractMost eukaryotic cells can crawl over surfaces. In general, this motility requires three dist...
AbstractCellular lamellipodia bind to the matrix and probe its rigidity through forces generated by ...
Crawling of animal cells over surfaces is based on three coupled mechanisms: protrusion of the leadi...
SummaryCell motility proceeds by cycles of edge protrusion, adhesion, and retraction. Whether these ...
We extend a model for the morphology and dynamics of a crawling eukaryotic cell to describe cells on...
Membrane waves propagating along the cell circumference in a top down view have been observed with s...
Cell migration is dependent on adhesion dynamics and actin cytoskeleton remodeling at the leading ed...
We review recent mathematical models describing the diffusive transport, reaction, and turnover of a...
<div><p>Computational modeling of eukaryotic cells moving on substrates is an extraordinarily comple...
We present a phenomenological description of cell locomotion on a solid substrate. The material prop...
Computational modeling of eukaryotic cells moving on substrates is an extraordinarily complex task: ...
Cell motility driven by actin polymerization is pivotal to the development and survival of organisms...
AbstractThe crawling motion of Dictyostelium discoideum on substrata involves a number of coordinate...
Animal cells that spread onto a surface often rely on actin-rich cell extensions called lamellipodia...
The spreading area of cells has been shown to play a central role in the determination of cell fate ...