Cells can detect and react to the biophysical properties of the extracellular environment through integrin-based adhesion sites and adapt to the extracellular milieu in a process called mechanotransduction. At these adhesion sites, integrins connect the extracellular matrix (ECM) with the F-actin cytoskeleton and transduce mechanical forces generated by the actin retrograde flow and myosin II to the ECM through mechanosensitive focal adhesion proteins that are collectively termed the "molecular clutch." The transmission of forces across integrin-based adhesions establishes a mechanical reciprocity between the visco-elasticity of the ECM and the cellular tension. During mechanotransduction, force allosterically alters the functions of mechan...
Cells receive mechanical cues from the surrounding extracellular matrix (ECM). This has a strong imp...
Cells sense and respond to their microenvironment by integrating physical and biochemical cues to re...
The goal of this project was to characterize the molecular mechanism by which cells recognize and re...
International audienceCells sense and respond to the biochemical and physical properties of the extr...
Integrins bind extracellular matrix fibrils and associate with intracellular actin filaments through...
Integrins bind extracellular matrix fibrils and associate with intracellular actin filaments through...
During life and development, tissues and individual cells within an organism are under several types...
The molecular mechanisms by which physical forces control tissue development are beginning to be elu...
Forces acting on cells govern many important regulatory events during development, normal physiology...
Integrin-mediated adhesions between cells and the extracellular matrix are fundamental for cell func...
Tissue mechanics provide an important context for tissue growth, maintenance and function. On the le...
AbstractTissue mechanics provide an important context for tissue growth, maintenance and function. O...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
In this thesis, we focus on novel proteins/mechanisms that regulate integrin-adhesion mediated mecha...
Cells have evolved into complex sensory machines that communicate with their microenvironment via me...
Cells receive mechanical cues from the surrounding extracellular matrix (ECM). This has a strong imp...
Cells sense and respond to their microenvironment by integrating physical and biochemical cues to re...
The goal of this project was to characterize the molecular mechanism by which cells recognize and re...
International audienceCells sense and respond to the biochemical and physical properties of the extr...
Integrins bind extracellular matrix fibrils and associate with intracellular actin filaments through...
Integrins bind extracellular matrix fibrils and associate with intracellular actin filaments through...
During life and development, tissues and individual cells within an organism are under several types...
The molecular mechanisms by which physical forces control tissue development are beginning to be elu...
Forces acting on cells govern many important regulatory events during development, normal physiology...
Integrin-mediated adhesions between cells and the extracellular matrix are fundamental for cell func...
Tissue mechanics provide an important context for tissue growth, maintenance and function. On the le...
AbstractTissue mechanics provide an important context for tissue growth, maintenance and function. O...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
In this thesis, we focus on novel proteins/mechanisms that regulate integrin-adhesion mediated mecha...
Cells have evolved into complex sensory machines that communicate with their microenvironment via me...
Cells receive mechanical cues from the surrounding extracellular matrix (ECM). This has a strong imp...
Cells sense and respond to their microenvironment by integrating physical and biochemical cues to re...
The goal of this project was to characterize the molecular mechanism by which cells recognize and re...