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Frequency-dependent electrodeformation of giant phospholipid vesicles in AC electric field

机译:交流电场中巨磷脂囊泡的频率依赖性电形成

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摘要

A model of vesicle electrodeformation is described which obtains a parametrized vesicle shape by minimizing the sum of the membrane bending energy and the energy due to the electric field. Both the vesicle membrane and the aqueous media inside and outside the vesicle are treated as leaky dielectrics, and the vesicle itself is modeled as a nearly spherical shape enclosed within a thin membrane. It is demonstrated (a) that the model achieves a good quantitative agreement with the experimentally determined prolate-to-oblate transition frequencies in the kilohertz range and (b) that the model can explain a phase diagram of shapes of giant phospholipid vesicles with respect to two parameters: the frequency of the applied alternating current electric field and the ratio of the electrical conductivities of the aqueous media inside and outside the vesicle, explored in a recent paper (S. Aranda et al., Biophys J 95:L19–L21, ). A possible use of the frequency-dependent shape transitions of phospholipid vesicles in conductometry of microliter samples is discussed.
机译:描述了一种囊泡电形成模型,该模型通过最小化膜弯曲能量和电场引起的能量之和来获得参数化的囊泡形状。囊泡膜和囊泡内外的水介质均被视为泄漏电介质,囊泡本身被建模为封闭在薄膜内的近似球形。证明(a)该模型与实验确定的千赫兹到扁圆的过渡频率在千赫兹范围内达到了良好的定量一致性,并且(b)该模型可以解释相对于脂质体的大磷脂囊泡形状的相图最近的一篇论文探讨了两个参数:施加的交流电场的频率和囊泡内外的水介质的电导率之比(S. Aranda等人,Biophys J 95:L19-L21, )。讨论了在微升样品的电导测定中磷脂囊泡的频率依赖性形状转变的可能用途。

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