AbstractWe present a model of cell motility generated by actomyosin contraction of the cell cortex. We identify, analytically, dynamical instabilities of the cortex and show that they yield steady-state cortical flows, which, in turn, can induce cell migration in three-dimensional environments. This mechanism relies on the regulation of contractility by myosin, whose transport is explicitly taken into account in the model. Theoretical predictions are compared to experimental data of tumor cells migrating in three-dimensional matrigel and suggest that this mechanism could be a general mode of cell migration in three-dimensional environments
Actin protrusion dynamics plays an important role in the regulation of three-dimensional (3D) cell m...
Cell motility is an important process in Biology. It is mainly studied on 2D planar surfaces, wherea...
Fast amoeboid migration requires cells to apply mechanical forces on their surroundings via transien...
ABSTRACT We present a model of cell motility generated by actomyosin contraction of the cell cortex....
AbstractWe present a model of cell motility generated by actomyosin contraction of the cell cortex. ...
Almost all animal cells maintain a thin layer of actin filaments and associated proteins underneath ...
International audienceLatest experiments have shown that adherent cells can migrate according to cel...
AbstractFast amoeboid migration requires cells to apply mechanical forces on their surroundings via ...
A two-dimensional mathematical model for cells migrating without adhesion capabilities is presented ...
Cell migration is astoundingly diverse. Molecular signatures, cell-cell interactions, and environmen...
International audienceA two-dimensional mathematical model for cells migrating without adhesion capa...
Cell migration is a highly integrated process where actin turnover, actomyosin contractility, and ad...
International audienceCell migration is a highly integrated process where actin turnover, actomyosin...
Cell migration is essential for a variety of biological processes, such as embryogenesis, wound heal...
Collective cell migration is ubiquitous in biology, from development to cancer; it is influenced by ...
Actin protrusion dynamics plays an important role in the regulation of three-dimensional (3D) cell m...
Cell motility is an important process in Biology. It is mainly studied on 2D planar surfaces, wherea...
Fast amoeboid migration requires cells to apply mechanical forces on their surroundings via transien...
ABSTRACT We present a model of cell motility generated by actomyosin contraction of the cell cortex....
AbstractWe present a model of cell motility generated by actomyosin contraction of the cell cortex. ...
Almost all animal cells maintain a thin layer of actin filaments and associated proteins underneath ...
International audienceLatest experiments have shown that adherent cells can migrate according to cel...
AbstractFast amoeboid migration requires cells to apply mechanical forces on their surroundings via ...
A two-dimensional mathematical model for cells migrating without adhesion capabilities is presented ...
Cell migration is astoundingly diverse. Molecular signatures, cell-cell interactions, and environmen...
International audienceA two-dimensional mathematical model for cells migrating without adhesion capa...
Cell migration is a highly integrated process where actin turnover, actomyosin contractility, and ad...
International audienceCell migration is a highly integrated process where actin turnover, actomyosin...
Cell migration is essential for a variety of biological processes, such as embryogenesis, wound heal...
Collective cell migration is ubiquitous in biology, from development to cancer; it is influenced by ...
Actin protrusion dynamics plays an important role in the regulation of three-dimensional (3D) cell m...
Cell motility is an important process in Biology. It is mainly studied on 2D planar surfaces, wherea...
Fast amoeboid migration requires cells to apply mechanical forces on their surroundings via transien...