Forces acting on cells govern many important regulatory events during development, normal physiology, and disease processes. Integrin-mediated adhesions, which transmit forces between the extracellular matrix and the actin cytoskeleton, play a central role in transducing effects of forces to regulate cell functions. Recent work has led to major insights into the molecular mechanisms by which these adhesions respond to forces to control cellular signaling pathways. We briefly summarize effects of forces on organs, tissues, and cells; and then discuss recent advances toward understanding molecular mechanisms.info:eu-repo/semantics/publishe
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
The molecular mechanisms by which physical forces control tissue development are beginning to be elu...
International audienceCells sense and respond to the biochemical and physical properties of the extr...
Cells can detect and react to the biophysical properties of the extracellular environment through in...
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...
Integrin-mediated adhesions between cells and the extracellular matrix are fundamental for cell func...
In this thesis, we focus on novel proteins/mechanisms that regulate integrin-adhesion mediated mecha...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
Tissue mechanics provide an important context for tissue growth, maintenance and function. On the le...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
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...
The molecular mechanisms by which physical forces control tissue development are beginning to be elu...
International audienceCells sense and respond to the biochemical and physical properties of the extr...
Cells can detect and react to the biophysical properties of the extracellular environment through in...
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...
Integrin-mediated adhesions between cells and the extracellular matrix are fundamental for cell func...
In this thesis, we focus on novel proteins/mechanisms that regulate integrin-adhesion mediated mecha...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
Tissue mechanics provide an important context for tissue growth, maintenance and function. On the le...
International audienceCells exert actomyosin contractility and cytoskeleton-dependent force in respo...
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...
The molecular mechanisms by which physical forces control tissue development are beginning to be elu...
International audienceCells sense and respond to the biochemical and physical properties of the extr...