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Switchable positioning of plate-like inclusions in lipid membranes: Elastically mediated interactions of planar colloids in 2D fluids

机译:脂膜中板状夹杂物的可切换定位:弹性介导的平面胶体在2D流体中的相互作用

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We demonstrate how manipulating curvature in an elastic fluid lamella enables the reversible relative positioning of flat, rigid, plate-like micrometer-scale inclusions, with spacings from about a micrometer to tens of micrometers. In an experimental model comprising giant unilamellar vesicles containing solid domain pairs coexisting in a fluid membrane, we adjusted vesicle inflation to manipulate membrane curvature and mapped the interdomain separation. A two-dimensional model of the pair potential predicts the salient experimental observations and reveals both attractions and repulsions, producing a potential minimum entirely a result of the solid domain rigidity and bending energy in the fluid membrane. The impact of vesicle inflation on domain separation in vesicles containing two solid domains was qualitatively consistent with observations in vesicles containing many domains. The behavior differs qualitatively from the pure repulsions between fluid membrane domains or interactions between nanoscopic inclusions whose repulsive or attractive character is not switchable.
机译:我们证明了弹性流体薄片中的操纵曲率如何使平坦,刚性,板状微米夹持物的可逆相对定位,其间距为约千分尺寸的微米。在一种实验模型中,该实验模型包括含有固体结构域对在流体膜中共同的巨大型囊泡,我们调节囊泡膨胀以操纵膜曲率并映射互补分离。该对势的二维模型预测了突出的实验观察,并揭示了吸引力和排斥,完全产生了潜在的最小型在流体膜中的固体结构域刚度和弯曲能量的结果。囊泡膨胀对含有两个固体结构域的囊泡中的结构域分离的影响与含有许多结构域的囊泡中的观察结果定性一致地一致。这种行为与流体膜结构域或纳米镜夹杂物之间的相互作用之间的纯重排排斥而不同,其排斥或吸引性的性质不可切换。

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