PURPOSE. The stiffness of the extracellular matrix has been shown to regulate cell adhesion, migration, and transdifferentiation in fibrotic processes. Retinal Muller cells have been shown to be mechanosensitive; they are involved in fibrotic vitreoretinal diseases. Since fibrosis increases the rigidity of the extracellular matrix, our aim was to develop an in vitro model for studying Muller cell morphology and differentiation state in relation to matrix stiffness.METHODS. A spontaneously immortalized human Muller cell line (MIO-M1) was cultured on type I collagen-coated polyacrylamide gels with Young's moduli ranging from 2 to 92 kPa. Cell surface area, focal adhesion, and the expression and morphology of alpha-smooth muscle actin induced ...
AbstractTo function efficiently in the body, the biological cells must have the ability to sense the...
International audienceAnchorage of muscle cells to the extracellular matrix is crucial for a range o...
Cells embedded within tissues respond to mechanical, chemical and biological signals. However, the d...
PURPOSE. The stiffness of the extracellular matrix has been shown to regulate cell adhesion, migrati...
PURPOSE. The purpose of this study was to investigate the presence of type VI collagen and glial cel...
PURPOSE. To investigate the migratory and contractile behavior of isolated human corneal fibroblasts...
Physical characteristics of the microenvironment, such as geometry and stiffness, influence cell adh...
AbstractMany cell types alter their morphology and gene expression profile when grown on chemically ...
Fibroblasts in connective tissues often interact with a fibrillar extra-cellular matrix (ECM) that r...
A major breakthrough in the development of engineering hydrogels for regenerative medicine occurred ...
Transforming growth factor beta (TGFbeta), the most established promoter of myofibroblast differenti...
Tissue fibrosis is a leading cause of mortality and is characterized by excessive protein deposition...
AbstractWe investigated the cellular mechanisms underlying force generation and matrix contraction, ...
Human mesenchymal stem cells (hMSCs) continue to attract prominence in tissue engineering due to th...
AbstractInteractions between cells and the surrounding matrix are critical to the development and en...
AbstractTo function efficiently in the body, the biological cells must have the ability to sense the...
International audienceAnchorage of muscle cells to the extracellular matrix is crucial for a range o...
Cells embedded within tissues respond to mechanical, chemical and biological signals. However, the d...
PURPOSE. The stiffness of the extracellular matrix has been shown to regulate cell adhesion, migrati...
PURPOSE. The purpose of this study was to investigate the presence of type VI collagen and glial cel...
PURPOSE. To investigate the migratory and contractile behavior of isolated human corneal fibroblasts...
Physical characteristics of the microenvironment, such as geometry and stiffness, influence cell adh...
AbstractMany cell types alter their morphology and gene expression profile when grown on chemically ...
Fibroblasts in connective tissues often interact with a fibrillar extra-cellular matrix (ECM) that r...
A major breakthrough in the development of engineering hydrogels for regenerative medicine occurred ...
Transforming growth factor beta (TGFbeta), the most established promoter of myofibroblast differenti...
Tissue fibrosis is a leading cause of mortality and is characterized by excessive protein deposition...
AbstractWe investigated the cellular mechanisms underlying force generation and matrix contraction, ...
Human mesenchymal stem cells (hMSCs) continue to attract prominence in tissue engineering due to th...
AbstractInteractions between cells and the surrounding matrix are critical to the development and en...
AbstractTo function efficiently in the body, the biological cells must have the ability to sense the...
International audienceAnchorage of muscle cells to the extracellular matrix is crucial for a range o...
Cells embedded within tissues respond to mechanical, chemical and biological signals. However, the d...