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Confined multilamellae prefer cylindrical morphology

机译:密闭的多层更喜欢圆柱形态

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By evaporating a drop of lipid dispersion we generate the myelin morphology often seen in dissolving surfactant powders. We explain these puzzling nonequilibrium structures using a geometric argument: the bilayer repeat spacing increases and thus the repulsion between bilayers decreases when a multilamellar disk is converted into a myelin without gain or loss of material and with number of bilayers unchanged. Sufficient reduction in bilayer repulsion can compensate for the cost in curvature energy, leading to a net stability of the myelin structure. A numerical estimate predicts the degree of dehydration required to favor myelin structures over flat lamellae.
机译:通过蒸发一滴脂质分散体,我们产生了溶解表面活性剂粉末时经常出现的髓磷脂形态。我们用一个几何学说来解释这些令人费解的非平衡结构:双层盘的重复间距增加,因此当将多层盘转换成髓磷脂而不增加或损失材料且双层数不变时,双层之间的排斥力减小。双层排斥的充分减少可以补偿曲率能量的成本,从而导致髓磷脂结构的净稳定性。数值估计可以预测比平片更有利于髓磷脂结构的脱水程度。

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