Chemoattractant gradients are usually considered in terms of sources and sinks that are independent of the chemotactic cell. However, recent interest has focused on "self-generated" gradients, in which cell populations create their own local gradients as they move. Here we consider the interplay between chemoattractants and single cells. To achieve this we extend a recently developed computational model to incorporate breakdown of extracellular attractants by membrane-bound enzymes. Model equations are parameterised using published estimates from Dictyostelium cells chemotaxing towards cyclic AMP. We find that individual cells can substantially modulate their local attractant field under physiologically appropriate conditions of attractant ...
The chemotactic response of a cell population to a single chemical species has been characterized ex...
Eukaryotic chemotaxis involves distinct cell shapes, with movement in shallow gradients dominated by...
The crawling of biological cell is a complex phenomenon involving various biochemical and mechanical...
Chemoattractant gradients are usually considered in terms of sources and sinks that are independent ...
Chemoattractant gradients are usually considered in terms of sources and sinks that are independent ...
Chemotaxis is fundamentally important, but the sources of gradients in vivo are rarely well understo...
Cell chemotaxis is crucial to many biological functions including development, wound healing, and ca...
Cell chemotaxis is crucial to many biological functions including development, wound healing, and ca...
The study of the dynamics of interacting self-propelled entities is a growing area of physics resear...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Mathematical modeling of bacterial chemotaxis systems has been influential and insightful in helping...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
We develop a mathematical model of cell-to-cell-signaling in Dictyostelium discoideum that predicts ...
The phenomenon of chemotaxis — the motion of a cell in response to gradi-ents in external chemical c...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
The chemotactic response of a cell population to a single chemical species has been characterized ex...
Eukaryotic chemotaxis involves distinct cell shapes, with movement in shallow gradients dominated by...
The crawling of biological cell is a complex phenomenon involving various biochemical and mechanical...
Chemoattractant gradients are usually considered in terms of sources and sinks that are independent ...
Chemoattractant gradients are usually considered in terms of sources and sinks that are independent ...
Chemotaxis is fundamentally important, but the sources of gradients in vivo are rarely well understo...
Cell chemotaxis is crucial to many biological functions including development, wound healing, and ca...
Cell chemotaxis is crucial to many biological functions including development, wound healing, and ca...
The study of the dynamics of interacting self-propelled entities is a growing area of physics resear...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Mathematical modeling of bacterial chemotaxis systems has been influential and insightful in helping...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
We develop a mathematical model of cell-to-cell-signaling in Dictyostelium discoideum that predicts ...
The phenomenon of chemotaxis — the motion of a cell in response to gradi-ents in external chemical c...
Chemotaxis, the directed motion of a cell toward a chemical source, plays a key role in many essenti...
The chemotactic response of a cell population to a single chemical species has been characterized ex...
Eukaryotic chemotaxis involves distinct cell shapes, with movement in shallow gradients dominated by...
The crawling of biological cell is a complex phenomenon involving various biochemical and mechanical...