Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics · 2003 · 70 citations · 39 references
Membrane StructurePattern FormationMembrane FormationMembrane BiophysicsEngineeringPhysicsLine Tension LambdaApplied PhysicsFluid MembranesFluid Membrane VesiclesCrystalline DomainMembrane SystemMembrane PermeationSoft MatterMedicineBiophysics
Crystalline domains embedded in fluid membrane vesicles are studied by Monte Carlo simulations of dynamically triangulated surfaces and by scaling arguments. A budding transition from a caplike state to a budded shape is observed for increasing spontaneous curvature C0 of the crystalline domain as well as increasing line tension lambda. The location of the budding transition is determined as a function of C0, lambda, and the radius R(A) of the crystalline domain. In contrast to previous theoretical predictions, it is found that budding occurs at a value of the spontaneous curvature C0, that is always a decreasing function of the domain size R(A). Several characteristic scaling regimes are predicted. The distribution of five- and sevenfold disclinations as the budding transition is approached is determined, and the dynamics of the generation of defects is studied.
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Lipid Rafts Reconstituted in Model Membranes
Christian Dietrich, Luís A. Bagatolli, Zoya Volovyk et al. · Biophysical Journal · 2001 · 1.4K citations · Full text
Membrane Structure, Proteinlipid Interaction, Membrane Biophysics +7