AbstractCell migration is a crucial event during development and in disease. Mechanical constraints and chemical gradients can contribute to the establishment of cell direction, but their respective roles remain poorly understood. Using a microfabricated topographical ratchet, we show that the nucleus dictates the direction of cell movement through mechanical guidance by its environment. We demonstrate that this direction can be tuned by combining the topographical ratchet with a biochemical gradient of fibronectin adhesion. We report competition and cooperation between the two external cues. We also quantitatively compare the measurements associated with the trajectory of a model that treats cells as fluctuating particles trapped in a peri...
Paru sous le titre publié :Collective Dynamics of Focal Adhesions Regulate Direction of Cell MotionI...
Cell migration is a complex phenomenon that plays an important role in many biological processes. Ou...
Paru sous le titre publié :Collective Dynamics of Focal Adhesions Regulate Direction of Cell MotionI...
Cell migration is a crucial event during development and in disease. Mechanical constraints and chem...
AbstractCell migration is a crucial event during development and in disease. Mechanical constraints ...
Cell migration is a crucial event during development and in disease. Mechanical constraints and chem...
Cell motility is a process deriving from the synchronized dynamics of the cytoskeleton. In several i...
In the absence of environmental cues, a migrating cell performs an isotropic random motion. Recently...
In the absence of environmental cues, a migrating cell performs an isotropic random motion. Recently...
In the absence of environmental cues, a migrating cell performs an isotropic random motion. Recently...
The concepts and frameworks of soft matter physics and the laws of thermodynamics can be used to des...
AbstractMany physiological phenomena involve directional cell migration. It is usually attributed to...
<div><p>Many physiological and pathological processes involve directed cell motion. In general, migr...
International audienceLatest experiments have shown that adherent cells can migrate according to cel...
Directional cell migration normally relies on a variety of external signals, such as chemical, mecha...
Paru sous le titre publié :Collective Dynamics of Focal Adhesions Regulate Direction of Cell MotionI...
Cell migration is a complex phenomenon that plays an important role in many biological processes. Ou...
Paru sous le titre publié :Collective Dynamics of Focal Adhesions Regulate Direction of Cell MotionI...
Cell migration is a crucial event during development and in disease. Mechanical constraints and chem...
AbstractCell migration is a crucial event during development and in disease. Mechanical constraints ...
Cell migration is a crucial event during development and in disease. Mechanical constraints and chem...
Cell motility is a process deriving from the synchronized dynamics of the cytoskeleton. In several i...
In the absence of environmental cues, a migrating cell performs an isotropic random motion. Recently...
In the absence of environmental cues, a migrating cell performs an isotropic random motion. Recently...
In the absence of environmental cues, a migrating cell performs an isotropic random motion. Recently...
The concepts and frameworks of soft matter physics and the laws of thermodynamics can be used to des...
AbstractMany physiological phenomena involve directional cell migration. It is usually attributed to...
<div><p>Many physiological and pathological processes involve directed cell motion. In general, migr...
International audienceLatest experiments have shown that adherent cells can migrate according to cel...
Directional cell migration normally relies on a variety of external signals, such as chemical, mecha...
Paru sous le titre publié :Collective Dynamics of Focal Adhesions Regulate Direction of Cell MotionI...
Cell migration is a complex phenomenon that plays an important role in many biological processes. Ou...
Paru sous le titre publié :Collective Dynamics of Focal Adhesions Regulate Direction of Cell MotionI...