Keratin intermediate filaments are the principal structural element of epithelial cells. Their importance in providing bulk cellular stiffness is well recognized, but their role in the mechanics of cell cortex is less understood. In this study, we therefore compared the cortical stiffness of three keratinocyte lines: primary wild type cells (NHEK2), immortalized wild type cells (NEB1) and immortalized mutant cells (KEB7). The cortical stiffness was measured by lateral indentation of cells with AOD-steered optical tweezers without employing any moving mechanical elements. The method was validated on fixed cells and Cytochalasin-D treated cells to ensure that the observed variations in stiffness within a single cell line were not a consequenc...
International audienceThe cell cortex is a contractile actin meshwork, which determines cell shape a...
Astrocytes are among the most functionally diverse population of cells in the central nervous system...
Background The mechanical properties of single living cells have proven to be a powerful marker of ...
Cells are known to continuously remodel their local extracellular matrix (ECM) and in a reciprocal w...
Different models for animal cell cytokinesis posit that the stiffness of the equatorial cortex is ei...
We report on the modification of mechanical properties of breast cancer cells when they get in conta...
<div><p>Different models for animal cell cytokinesis posit that the stiffness of the equatorial cort...
In simple epithelia, such as living epithelial pancreatic cancer cells (Panc-1), unusual amounts of ...
Corneal tissue engineering is an alternative way to solve the problem of lack of corneal donor tissu...
Mechanical characterization of living cells undergoing substantial external strain promises insights...
The bulk measurement of extracellular matrix (ECM) stiffness is commonly used in mechanobiology. How...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
Cell shape changes are key to cell physiology and underlie fundamental processes such as cell migrat...
The prevailing model of the mechanical function of intermediate filaments in cells assumes that thes...
Tissue healing and regeneration is strongly influenced by the mechanical properties of the extracell...
International audienceThe cell cortex is a contractile actin meshwork, which determines cell shape a...
Astrocytes are among the most functionally diverse population of cells in the central nervous system...
Background The mechanical properties of single living cells have proven to be a powerful marker of ...
Cells are known to continuously remodel their local extracellular matrix (ECM) and in a reciprocal w...
Different models for animal cell cytokinesis posit that the stiffness of the equatorial cortex is ei...
We report on the modification of mechanical properties of breast cancer cells when they get in conta...
<div><p>Different models for animal cell cytokinesis posit that the stiffness of the equatorial cort...
In simple epithelia, such as living epithelial pancreatic cancer cells (Panc-1), unusual amounts of ...
Corneal tissue engineering is an alternative way to solve the problem of lack of corneal donor tissu...
Mechanical characterization of living cells undergoing substantial external strain promises insights...
The bulk measurement of extracellular matrix (ECM) stiffness is commonly used in mechanobiology. How...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
Cell shape changes are key to cell physiology and underlie fundamental processes such as cell migrat...
The prevailing model of the mechanical function of intermediate filaments in cells assumes that thes...
Tissue healing and regeneration is strongly influenced by the mechanical properties of the extracell...
International audienceThe cell cortex is a contractile actin meshwork, which determines cell shape a...
Astrocytes are among the most functionally diverse population of cells in the central nervous system...
Background The mechanical properties of single living cells have proven to be a powerful marker of ...