Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of individual integrin proteins and larger, integrin-containing adhesion complexes within the cell membrane. This spatial sensing drives cellular activity in a variety of normal and pathological contexts(1,2). Previous studies of cells on rigid glass surfaces have shown that spatial sensing of ECM ligands takes place at the nanometre scale, with integrin clustering and subsequent formation of focal adhesions impaired when single integrin-ligand bonds are separated by more than a few tens of nanometres(3-6). It has thus been suggested that a crosslinking 'adaptor' protein of this size might connect integrins to the actin cytoskeleton, acting as a mo...
International audienceIntegrins are transmembrane receptors involved in crucial cellular biological ...
Physical environment guides tissue regeneration and morphology in both health and disease. In the pa...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of ind...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
Cell-extracellular matrix sensing plays a crucial role in cellular behavior and leads to the formati...
Nanostructured and chemically functionalized materials which mimic architectural and mechanical feat...
Integrins have emerged as key sensory molecules that translate chemical and physical cues from the e...
Experimental findings indicate that cell function and behavior such as cell growth, division, migrat...
AbstractForces transmitted by integrins regulate many important cellular functions. Previously, we d...
International audienceIntegrins are transmembrane receptors involved in crucial cellular biological ...
AbstractIntegrins are transmembrane receptors involved in crucial cellular biological functions such...
Cell adhesion to extracellular matrix (ECM) is critical to various cellular processes like cell spre...
International audienceIntegrins are transmembrane receptors involved in crucial cellular biological ...
Physical environment guides tissue regeneration and morphology in both health and disease. In the pa...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...
Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of ind...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
Cell-extracellular matrix sensing plays a crucial role in cellular behavior and leads to the formati...
Nanostructured and chemically functionalized materials which mimic architectural and mechanical feat...
Integrins have emerged as key sensory molecules that translate chemical and physical cues from the e...
Experimental findings indicate that cell function and behavior such as cell growth, division, migrat...
AbstractForces transmitted by integrins regulate many important cellular functions. Previously, we d...
International audienceIntegrins are transmembrane receptors involved in crucial cellular biological ...
AbstractIntegrins are transmembrane receptors involved in crucial cellular biological functions such...
Cell adhesion to extracellular matrix (ECM) is critical to various cellular processes like cell spre...
International audienceIntegrins are transmembrane receptors involved in crucial cellular biological ...
Physical environment guides tissue regeneration and morphology in both health and disease. In the pa...
Cells activate signalling through ligand-receptor bonds by sensing the mechanical properties of the ...