Fluctuation spectrum of fluid membranes coupled to an elastic meshwork: jump of the effective surface tension at the mesh size
arXiv:cond-mat/0306736 · doi:10.1103/PhysRevLett.92.018102
Abstract
We identify a class of composite membranes: fluid bilayers coupled to an elastic meshwork, that are such that the meshwork's energy is a function \textit{not} of the real microscopic membrane area , but of a \textit{smoothed} membrane's area , which corresponds to the area of the membrane coarse-grained at the mesh size . We show that the meshwork modifies the membrane tension both below and above the scale , inducing a tension-jump . The predictions of our model account for the fluctuation spectrum of red blood cells membranes coupled to their cytoskeleton. Our results indicate that the cytoskeleton might be under extensional stress, which would provide a means to regulate available membrane area. We also predict an observable tension jump for membranes decorated with polymer "brushes".
Cited by in corpus (18)
- Adhesion of membranes via receptor-ligand complexes: Domain formation, binding cooperativity, and active processes
- Active Contact Forces Drive Non-Equilibrium Fluctuations in Membrane Vesicles
- Force balance and membrane shedding at the Red Blood Cell surface
- The network of concepts in written texts
- Balance of microtubule stiffness and cortical tension determines the size of blood cells with marginal band across species
- Model for probing membrane-cortex adhesion by micropipette aspiration and fluctuation spectroscopy
- Brownian motion near a liquid-like membrane
- Segregation of receptor-ligand complexes in cell adhesion zones: Phase diagrams and role of thermal membrane roughness
- Membrane fluctuations near a plane rigid surface
- A Gaussian model for the membrane of red blood cells with cytoskeletal defects
- Non-monotonic fluctuation spectra of membranes pinned or tethered discretely to a substrate
- Cytoskeleton mediated effective elastic properties of model red blood cell membranes
- Statistical mechanics of an elastically pinned membrane: Static profile and correlations
- Fluctuation spectra of free and supported membrane pairs
- Fluctuations of red blood cell membranes: The role of cytoskeleton
- Dynamics of a Bilayer Membrane Coupled to a Two-dimensional Cytoskeleton: Scale Transfers of Membrane Deformations
- Dependence of the surface tension on the shape of surface boundary
- Surface tension of membranes depending on the boundary shape