AbstractThe extracellular matrix (ECM) microenvironment plays a central role in cell migration by providing physiochemical information that influences overall cell behavior. Much of this external information is accessed by direct interaction of the cell with ECM ligands and structures via integrin-based adhesions that are hypothesized to act as mechanosensors for testing the surrounding microenvironment. Our current understanding of these mechanical complexes is derived primarily from studies of cellular adhesions formed on two-dimensional (2D) substrates in vitro. Yet the rules of cell/ECM engagement and mechanosensing in three-dimensional (3D) microenvironments are invariably more complex under both in vitro and in vivo conditions. Here w...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Cells are mechanically coupled to their extracellular environments, which play critical roles in bot...
Cells are mechanically coupled to their extracellular environments, which play critical roles in bot...
International audienceChemical and physical properties of the environment control cell proliferation...
International audienceChemical and physical properties of the environment control cell proliferation...
Integrin-mediated adhesions between cells and the extracellular matrix are fundamental for cell func...
Cells receive mechanical cues from the surrounding extracellular matrix (ECM). This has a strong imp...
The cell microenvironment acts as an adhesive and signaling platform for cells, where both chemical ...
Cellular adhesions onto extracellular matrix(ECM)have been attracting more and more interest as they...
The ability of cells to adhere and sense their mechano-chemical environment is key to many developme...
Cells contain several mechanosensing components that transduce mechanical signals into biochemical c...
Integrins play crucial roles in cell adhesion, migration, and signaling by providing transmembrane l...
Cell migration is essential for tissue development in different physiological and pathological condi...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Cells are mechanically coupled to their extracellular environments, which play critical roles in bot...
Cells are mechanically coupled to their extracellular environments, which play critical roles in bot...
International audienceChemical and physical properties of the environment control cell proliferation...
International audienceChemical and physical properties of the environment control cell proliferation...
Integrin-mediated adhesions between cells and the extracellular matrix are fundamental for cell func...
Cells receive mechanical cues from the surrounding extracellular matrix (ECM). This has a strong imp...
The cell microenvironment acts as an adhesive and signaling platform for cells, where both chemical ...
Cellular adhesions onto extracellular matrix(ECM)have been attracting more and more interest as they...
The ability of cells to adhere and sense their mechano-chemical environment is key to many developme...
Cells contain several mechanosensing components that transduce mechanical signals into biochemical c...
Integrins play crucial roles in cell adhesion, migration, and signaling by providing transmembrane l...
Cell migration is essential for tissue development in different physiological and pathological condi...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...