Cell size and shape affect cellular processes such as cell survival, growth and differentiation1,2,3,4, thus establishing cell geometry as a fundamental regulator of cell physiology. The contributions of the cytoskeleton, specifically actomyosin tension, to these effects have been described, but the exact biophysical mechanisms that translate changes in cell geometry to changes in cell behaviour remain mostly unresolved. Using a variety of innovative materials techniques, we demonstrate that the nanostructure and lipid assembly within the cell plasma membrane are regulated by cell geometry in a ligand-independent manner. These biophysical changes trigger signalling events involving the serine/threonine kinase Akt/protein kinase B (PKB) that...
International audienceMembrane rafts are thought to be sphingolipid- and cholesterol-dependent later...
Morphological transformations of living cells, such as shape adaptation to external stimuli, blebbin...
As the plasma membrane of cells is inelastic and does not bend spontaneously, membrane curvature is ...
Cell fate transitions are frequently accompanied by changes in cell shape and mechanics. Yet how cel...
The surface of living cells provides an interface that not only separates the outer and inner enviro...
SummaryShape is an indicator of cell health. But how is the information in shape decoded? We hypothe...
The shape of the cell is connected to its function; however, we do not fully understand underlying m...
Plasma membrane (PM) curvature defines cell shape and intracellular organelle morphologies and is a ...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Surface topography profoundly influences cell adhesion, differentiation, and stem cell fate control....
Biological membranes are composed of isotropic and anisotropic curved nanodomains. Anisotropic membr...
Cell differentiation typically occurs with concomitant shape transitions to enable specialized funct...
Many cell phenomena that involve shape changes are affected by the intrinsic deformability of the pl...
During tissue morphogenesis, stem cells and progenitor cells migrate, proliferate, and differentiate...
International audienceThe ability of mammalian cells to deform their membrane relies on the action o...
International audienceMembrane rafts are thought to be sphingolipid- and cholesterol-dependent later...
Morphological transformations of living cells, such as shape adaptation to external stimuli, blebbin...
As the plasma membrane of cells is inelastic and does not bend spontaneously, membrane curvature is ...
Cell fate transitions are frequently accompanied by changes in cell shape and mechanics. Yet how cel...
The surface of living cells provides an interface that not only separates the outer and inner enviro...
SummaryShape is an indicator of cell health. But how is the information in shape decoded? We hypothe...
The shape of the cell is connected to its function; however, we do not fully understand underlying m...
Plasma membrane (PM) curvature defines cell shape and intracellular organelle morphologies and is a ...
The differentiation of stem cells can be modulated by physical factors such as the micro- and nano-t...
Surface topography profoundly influences cell adhesion, differentiation, and stem cell fate control....
Biological membranes are composed of isotropic and anisotropic curved nanodomains. Anisotropic membr...
Cell differentiation typically occurs with concomitant shape transitions to enable specialized funct...
Many cell phenomena that involve shape changes are affected by the intrinsic deformability of the pl...
During tissue morphogenesis, stem cells and progenitor cells migrate, proliferate, and differentiate...
International audienceThe ability of mammalian cells to deform their membrane relies on the action o...
International audienceMembrane rafts are thought to be sphingolipid- and cholesterol-dependent later...
Morphological transformations of living cells, such as shape adaptation to external stimuli, blebbin...
As the plasma membrane of cells is inelastic and does not bend spontaneously, membrane curvature is ...