Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular matrix, their size depending on the locally applied force. To quantitatively study the mechanosensitivity of FAs, we induce their growth and disassembly by varying the distribution of intracellular stress. We present a novel method for micromanipulation of living cells to explore the dynamics of focal adhesion (FA) assembly under force. Fibroblasts are sheared laterally to their adhesion surface with single PDMS micropillars in order to apply laterally stretch or compression to focal adhesions. This allows for measuring the shear force exerted by the micropillar and correlates it with FA length and growth velocity. Furthermore, we analyze the r...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
AbstractIn this work, a chemomechanical model describing the growth dynamics of cell-matrix adhesion...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
AbstractFocal adhesions are micrometer-sized protein aggregates that connect actin stress fibers to ...
AbstractCell focal adhesions are micrometer-sized aggregates of proteins that anchor the cell to the...
The adhesion of cells to the extracellular matrix is a hierarchical, force-dependent, multistage pro...
ABSTRACT We investigate both theoretically and experimentally how stress is propagated through the a...
Cell mechanical recognition of extracellular matrix determines the cell activities and functions. Fo...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
Mechanosensing is a vital prerequisite for dynamic remodeling of focal adhesions and cytoskeletal st...
AbstractCell/matrix adhesions are modulated by cytoskeletal or external stresses and adapt to the me...
The fields of regenerative medicine and cellular engineering hold tremendous promise in the treatmen...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
AbstractIn this work, a chemomechanical model describing the growth dynamics of cell-matrix adhesion...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
Focal adhesions (FAs) are important adhesion sites between eukaryotic cells and the extracellular ma...
AbstractFocal adhesions are micrometer-sized protein aggregates that connect actin stress fibers to ...
AbstractCell focal adhesions are micrometer-sized aggregates of proteins that anchor the cell to the...
The adhesion of cells to the extracellular matrix is a hierarchical, force-dependent, multistage pro...
ABSTRACT We investigate both theoretically and experimentally how stress is propagated through the a...
Cell mechanical recognition of extracellular matrix determines the cell activities and functions. Fo...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
Mechanosensing is a vital prerequisite for dynamic remodeling of focal adhesions and cytoskeletal st...
AbstractCell/matrix adhesions are modulated by cytoskeletal or external stresses and adapt to the me...
The fields of regenerative medicine and cellular engineering hold tremendous promise in the treatmen...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
AbstractIn this work, a chemomechanical model describing the growth dynamics of cell-matrix adhesion...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...