International audienceThe physical and mechanical properties of cells modulate their behavior such proliferation rate, migration and extracellular matrix remodeling. In order to study cell behavior in a tissue-like environment in vitro, it is of utmost importance to develop biologically and physically relevant 3D cell models. Here, we characterized the physical properties of a single cell type growing in configurations of increasing complexity. From one human skin biopsy, primary dermal fibroblasts were isolated and seeded to give monolayer (2D model), spheroid (3D model poor in extracellular matrix) and tissue-engineered cell sheet (3D model rich in endogenous extracellular matrix). Living native human dermis tissue was used as a gold stan...
Fibrillar collagen is the most abundant extracellular matrix (ECM) constituent which maintains the s...
Cellular contraction force plays a crucial role in the normal function of a biological cell. Such im...
We present the use of atomic force microscopy (AFM) to visualize and quantify the dynamics of epithe...
International audienceThe physical and mechanical properties of cells modulate their behavior such p...
Recreating the structure of human tissues in the laboratory is valuable for fundamental research, te...
International audienceMechanical interaction between cells and their surrounding extracellular matri...
The fabrication of functional tissue units is one of the major challenges in tissue engineering due ...
AbstractTissue models reconstituted from cells and extracellular matrix (ECM) simulate natural tissu...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
International audienceDifferent models of reconstructed skin are available, either to provide skin w...
The human skin comprises a complex multi-scale layered structure with hierarchical organization of d...
Changes in the mechanical properties of dermis occur during skin aging or tissue remodeling and affe...
Changes in the mechanical properties of dermis occur during skin aging or tissue remodeling and affe...
International audienceBACKGROUND/AIMS: Different models of reconstructed skin are available, either ...
A recent goal of tissue engineering has been to develop tissue-equivalent constructs to aid in wound...
Fibrillar collagen is the most abundant extracellular matrix (ECM) constituent which maintains the s...
Cellular contraction force plays a crucial role in the normal function of a biological cell. Such im...
We present the use of atomic force microscopy (AFM) to visualize and quantify the dynamics of epithe...
International audienceThe physical and mechanical properties of cells modulate their behavior such p...
Recreating the structure of human tissues in the laboratory is valuable for fundamental research, te...
International audienceMechanical interaction between cells and their surrounding extracellular matri...
The fabrication of functional tissue units is one of the major challenges in tissue engineering due ...
AbstractTissue models reconstituted from cells and extracellular matrix (ECM) simulate natural tissu...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
International audienceDifferent models of reconstructed skin are available, either to provide skin w...
The human skin comprises a complex multi-scale layered structure with hierarchical organization of d...
Changes in the mechanical properties of dermis occur during skin aging or tissue remodeling and affe...
Changes in the mechanical properties of dermis occur during skin aging or tissue remodeling and affe...
International audienceBACKGROUND/AIMS: Different models of reconstructed skin are available, either ...
A recent goal of tissue engineering has been to develop tissue-equivalent constructs to aid in wound...
Fibrillar collagen is the most abundant extracellular matrix (ECM) constituent which maintains the s...
Cellular contraction force plays a crucial role in the normal function of a biological cell. Such im...
We present the use of atomic force microscopy (AFM) to visualize and quantify the dynamics of epithe...