We have investigated the shape, size, and motility of a minimal model of an adherent biological cell using the Monte Carlo method. The cell is modeled as a two dimensional ring polymer on the square lattice enclosing continuously polymerizing and depolymerizing actin networks. Our lattice model is an approximate representation of a real cell at a resolution of one actin molecule, 5 nm. The polymerization kinetics for the actin network are controlled by appropriate reaction probabilities which correspond to the correct experimental reaction rates. Using the simulation data we establish various scaling laws relating the size of the model cell to the concentration of polymerized and unpolymerized actin molecules and the length of the enclosing...
We present a model for the actin contractile ring of adherent animal cells. The model suggests that ...
Abstract: Eukaryotic cell motility involves complex interactions of signalling molecules, cytoskelet...
Cell motility is important for many physiological processes and the underlying
biochemical ...
Understanding the connection between mechanics and cell structure requires the exploration of the ke...
The polymerization-induced propulsion of a model cell consisting of a cell membrane enclosing mobile...
In crawling cells, the polymerisation of actin into a filamentaus network generates lamellar protru...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
AbstractWe develop a mathematical model that describes key details of actin dynamics in protrusion a...
Eukaryotic cell motility involves complex interactions of signalling molecules, cytoskeleton, cell m...
The aim of this work is to model cell motility under conditions of mechanical confinement. This cell...
International audienceDuring cell spreading onto a substrate, the kinetics of the contact area is an...
Animal cells that spread onto a surface often rely on actin‐rich lamellipodial extensions to execute...
Branching actin networks are made up of polymerous actin filaments and play a principle role in cell...
The ability of cells to move through their environment and spread on surfaces is fundamental to a ho...
Cell migration is an important biological process that has generated increasing interest during the ...
We present a model for the actin contractile ring of adherent animal cells. The model suggests that ...
Abstract: Eukaryotic cell motility involves complex interactions of signalling molecules, cytoskelet...
Cell motility is important for many physiological processes and the underlying
biochemical ...
Understanding the connection between mechanics and cell structure requires the exploration of the ke...
The polymerization-induced propulsion of a model cell consisting of a cell membrane enclosing mobile...
In crawling cells, the polymerisation of actin into a filamentaus network generates lamellar protru...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
AbstractWe develop a mathematical model that describes key details of actin dynamics in protrusion a...
Eukaryotic cell motility involves complex interactions of signalling molecules, cytoskeleton, cell m...
The aim of this work is to model cell motility under conditions of mechanical confinement. This cell...
International audienceDuring cell spreading onto a substrate, the kinetics of the contact area is an...
Animal cells that spread onto a surface often rely on actin‐rich lamellipodial extensions to execute...
Branching actin networks are made up of polymerous actin filaments and play a principle role in cell...
The ability of cells to move through their environment and spread on surfaces is fundamental to a ho...
Cell migration is an important biological process that has generated increasing interest during the ...
We present a model for the actin contractile ring of adherent animal cells. The model suggests that ...
Abstract: Eukaryotic cell motility involves complex interactions of signalling molecules, cytoskelet...
Cell motility is important for many physiological processes and the underlying
biochemical ...