A eukaryotic cell attaches and spreads on substrates, whether it is the extracellular matrix naturally produced by the cell itself, or artificial materials, such as tissue-engineered scaffolds. Attachment and spreading require the cell to apply forces in the nN range to the substrate via adhesion sites, and these forces are balanced by the elastic response of the substrate. This mechanical interaction is one determinant of cell morphology and, ultimately, cell phenotype. In this paper we use a finite element model of a cell, with a tensegrity structure to model the cytoskeleton of actin filaments and microtubules, to explore the way cells sense the stiffness of the substrate and thereby adapt to it. To support the computational results, an ...
Many different cell types respond to substrate elasticity as sensitively as more well studied solubl...
Forces and the mechanical properties surrounding eukaryotic cells have been increasingly shown to pl...
The ability of cells to sense and respond to the mechanical properties of their environments is fund...
A eukaryotic cell attaches and spreads on substrates, whether it is the extracellular matrix natural...
AbstractTo function efficiently in the body, the biological cells must have the ability to sense the...
AbstractMany cell types alter their morphology and gene expression profile when grown on chemically ...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
It is becoming increasingly clear that the mechanical properties of their environment play a crucial...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
International audienceThere is compelling evidence that substrate stiffness affects cell adhesion as...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
Many different cell types respond to substrate elasticity as sensitively as more well studied solubl...
Forces and the mechanical properties surrounding eukaryotic cells have been increasingly shown to pl...
The ability of cells to sense and respond to the mechanical properties of their environments is fund...
A eukaryotic cell attaches and spreads on substrates, whether it is the extracellular matrix natural...
AbstractTo function efficiently in the body, the biological cells must have the ability to sense the...
AbstractMany cell types alter their morphology and gene expression profile when grown on chemically ...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
It is becoming increasingly clear that the mechanical properties of their environment play a crucial...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
International audienceThere is compelling evidence that substrate stiffness affects cell adhesion as...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
Many different cell types respond to substrate elasticity as sensitively as more well studied solubl...
Forces and the mechanical properties surrounding eukaryotic cells have been increasingly shown to pl...
The ability of cells to sense and respond to the mechanical properties of their environments is fund...