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首页> 外文期刊>The Journal of Chemical Physics >Dynamic structure factor of a lipid bilayer in the presence of a high electric field
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Dynamic structure factor of a lipid bilayer in the presence of a high electric field

机译:高电场存在下脂双层的动态结构因子

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The influence of a high average electric field (similar to 1 V/nm) in the hydrophobic interior of a bilayer lipid membrane on short-wavelength in-plane phononic motions of lipid chains is considered. The average electric field is assumed to be nearly constant on a picosecond time scale and a nanometer length scale. This field may be induced, for instance, by externally applied subnanosecond electric pulses or the membrane dipole potential. Using a generalized hydrodynamic approach, we derive a corresponding electrohydrodynamic model generalized to high wave numbers. In the considered approximation, all electric field effects are reduced only to a constant contribution to the generalized isothermal compressibility modulus. The corresponding dynamic structure factor for a lipid bilayer is derived. We show that due to polarization effects, the high field can critically impact the dynamics of longitudinal acousticlike modes at wave numbers near the major peak of the static structure factor. We estimate quantitatively that for typical lipid bilayers, transverse high electric fields can cause strong phonon energy softening, enhancement of phonon population, and formation of a gap in the dispersion of excitation frequency. The results obtained agree with simulations of the initiation of lipid bilayer electropores, suggesting that the proposed model reproduces the essential features of the field's impact on atomic density fluctuations. The proposed mechanism may have significant implications for the understanding of electroporation, passive molecular transport, and spontaneous pore formation in lipid bilayers. Published under license by AIP Publishing.
机译:考虑了在双层脂质膜的疏水内部对脂链的短波长波长面内滤音测动机的疏水内部的高平均电场(类似于1V / NM)的影响。假设平均电场在Pic秒时尺度和纳米长度尺度上几乎恒定。例如,可以通过外部施加的亚基癸晶电脉冲或膜偶极电位来诱导该字段。使用广义流体动力学方法,我们推导了相应的电流动力学模型,广义到高波数。在所考虑的近似下,所有电场效应仅降低到对广义等温可压缩模量的恒定贡献。衍生脂质双层的相应动态结构因子。我们表明,由于极化效应,高场可以对静态结构因子的主要峰值附近的波数来统治纵向声学模式的动态。我们定量地估计,对于典型的脂质双层,横向高电场可以引起强子能量软化,源于激发频率分散中的间隙。得到的结果与脂质双层电孔的开始的模拟同意,表明所提出的模型再现了该领域对原子密度波动的影响的基本特征。该提出的机制可能对脂双层的电穿孔,被动分子输送和自发孔形成的理解具有显着影响。通过AIP发布在许可证下发布。

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