A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on a substrate via two focal adhesions made of catch bonds is adopted to investigate the phenomena of cell reorientation on substrates induced by an applied uniaxial cyclic stretch. The model indicates that the catch bonds in the focal adhesions experience a periodically oscillating internal force with amplitude and frequency controlled by two intrinsic clocks of the stress fiber, one associated with localized activation and the other with homogeneous activation of sarcomere units along the stress fiber. It is shown that this oscillating force due to cyclic stretch tends to destabilize focal adhesions by reducing the lifetime of catch bonds. Th...
Recognition of external mechanical signals is vital for mammalian cells. Cyclic stretch, e.g. around...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
We studied stress fiber orientation under a wide range of uniaxial cyclic deformations. We devised a...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
<div><p>A minimal model of cellular mechanosensing system that consists of a single stress fiber adh...
We report a theoretical study on the cyclic stretch-induced reorientation of spindle-shaped cells. S...
AbstractThis work is motivated by experimental observations that cells on stretched substrate exhibi...
AbstractThis work is motivated by experimental observations that cells on stretched substrate exhibi...
ABSTRACT This work is motivated by experimental observations that cells on stretched substrate exhib...
The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key element fo...
<div><p>The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key el...
Recognition of external mechanical signals is vital for mammalian cells. Cyclic stretch, e.g. around...
The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key element fo...
Recognition of external mechanical signals is vital for mammalian cells. Cyclic stretch, e.g. around...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
We studied stress fiber orientation under a wide range of uniaxial cyclic deformations. We devised a...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
A minimal model of cellular mechanosensing system that consists of a single stress fiber adhering on...
<div><p>A minimal model of cellular mechanosensing system that consists of a single stress fiber adh...
We report a theoretical study on the cyclic stretch-induced reorientation of spindle-shaped cells. S...
AbstractThis work is motivated by experimental observations that cells on stretched substrate exhibi...
AbstractThis work is motivated by experimental observations that cells on stretched substrate exhibi...
ABSTRACT This work is motivated by experimental observations that cells on stretched substrate exhib...
The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key element fo...
<div><p>The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key el...
Recognition of external mechanical signals is vital for mammalian cells. Cyclic stretch, e.g. around...
The actin cytoskeleton plays a crucial role for the spreading of cells, but is also a key element fo...
Recognition of external mechanical signals is vital for mammalian cells. Cyclic stretch, e.g. around...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
We studied stress fiber orientation under a wide range of uniaxial cyclic deformations. We devised a...