Motile cells — fan-like keratocytes, hand-shaped nerve growth cones, polygonal fibroblasts, to name but a few — come in different shapes and sizes. We discuss the origins of this diversity as well as what shape tells us about the physics and biochemistry underlying cell movement. We start with geometric rules describing cell-edge kinetics that govern cell shape, followed by a discussion of the underlying biophysics; we consider actin treadmilling, actin–myosin contraction, cell-membrane deformations, adhesion, and the complex interactions between these modules, as well as their regulation by microtubules and Rho GTPases. Focusing on several different cell types, including keratocytes and fibroblasts, we discuss how dynamic cell morphology e...
Pattern formation through reaction-diffusion of proteins is core to establishing functionally distin...
We have developed a top-down, rule-based mathematical model to explore the basic principles that coo...
Eukaryotic cell motility involves complex interactions of signalling molecules, cytoskeleton, cell m...
Motile cells — fan-like keratocytes, hand-shaped nerve growth cones, polygonal fibroblasts, to name ...
AbstractCrawling of eukaryotic cells on flat surfaces is underlain by the protrusion of the actin ne...
AbstractIt is plain enough that a horse is made for running, but similar statements about motile cel...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
Actin-based motility is central to cellular processes such as migration, bacterial engulfment, and c...
Motile cells have developed a variety of migration modes relying on diverse traction-force-generatio...
Actin-based cell motility and force generation are central to immune response, tissue development, a...
Actin-based cell motility and force generation are central to immune response, tissue development, a...
Cell movement is a complex phenomenon that is fundamental to many physiological and disease processe...
AbstractMany complex cellular processes from mitosis to cell motility depend on the ability of the c...
AbstractWe develop a mathematical model that describes key details of actin dynamics in protrusion a...
Cell migration is astoundingly diverse. Molecular signatures, cell-cell interactions, and environmen...
Pattern formation through reaction-diffusion of proteins is core to establishing functionally distin...
We have developed a top-down, rule-based mathematical model to explore the basic principles that coo...
Eukaryotic cell motility involves complex interactions of signalling molecules, cytoskeleton, cell m...
Motile cells — fan-like keratocytes, hand-shaped nerve growth cones, polygonal fibroblasts, to name ...
AbstractCrawling of eukaryotic cells on flat surfaces is underlain by the protrusion of the actin ne...
AbstractIt is plain enough that a horse is made for running, but similar statements about motile cel...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
Actin-based motility is central to cellular processes such as migration, bacterial engulfment, and c...
Motile cells have developed a variety of migration modes relying on diverse traction-force-generatio...
Actin-based cell motility and force generation are central to immune response, tissue development, a...
Actin-based cell motility and force generation are central to immune response, tissue development, a...
Cell movement is a complex phenomenon that is fundamental to many physiological and disease processe...
AbstractMany complex cellular processes from mitosis to cell motility depend on the ability of the c...
AbstractWe develop a mathematical model that describes key details of actin dynamics in protrusion a...
Cell migration is astoundingly diverse. Molecular signatures, cell-cell interactions, and environmen...
Pattern formation through reaction-diffusion of proteins is core to establishing functionally distin...
We have developed a top-down, rule-based mathematical model to explore the basic principles that coo...
Eukaryotic cell motility involves complex interactions of signalling molecules, cytoskeleton, cell m...