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Effect of dipolar moments in domain sizes of lipid bilayers and monolayers

机译:偶极矩对脂质双层和单层结构域大小的影响

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Lipid domains are found in systems such as multicomponent bilayer membranes and single component monolayers at the air-water interface. It was shown by Keller [J. Phys. Chem. 91, 6417 (1987)] that in monolayers, the size of the domains results from balancing the line tension, which favors the formation of a large single circular domain, against the electrostatic cost of assembling the dipolar moments of the lipids. In this paper, we present an exact analytical expression for the electric potential, ion distribution, and electrostatic free energy for different problems consisting of three different slabs with different dielectric constants and Debye lengths, with a circular homogeneous dipolar density in the middle slab. From these solutions, we extend the calculation of domain sizes for monolayers to include the effects of finite ionic strength, dielectric discontinuities (or image charges), and the polarizability of the dipoles and further generalize the calculations to account for domains in lipid bilayers. In monolayers, the size of the domains is dependent on the different dielectric constants but independent of ionic strength. In asymmetric bilayers, where the inner and outer leaflets have different dipolar densities, domains show a strong size dependence with ionic strength, with molecular-sized domains that grow to macroscopic phase separation with increasing ionic strength. We discuss the implications of the results for experiments and briefly consider their relation to other two dimensional systems such as Wigner crystals or heteroepitaxial growth. (c) 2006 American Institute of Physics.
机译:在诸如空气-水界面处的多组分双层膜和单组分单层的系统中发现脂质结构域。它由凯勒[J.物理化学91,6417(1987)]指出,在单分子层中,域的大小是由平衡线张力而产生的,该线张力有利于形成一个大的单个圆形域,而与组装脂质的偶极矩的静电成本相反。在本文中,我们给出了针对不同问题的电势,离子分布和静电自由能的精确解析表达式,该问题由具有不同介电常数和德拜长度的三个不同平板组成,中间平板具有圆形均匀的偶极密度。从这些解决方案中,我们扩展了单层结构域尺寸的计算,以包括有限离子强度,介电不连续性(或图像电荷)和偶极子的极化率的影响,并进一步泛化了计算以解释脂质双层中的结构域。在单层中,畴的大小取决于不同的介电常数,但与离子强度无关。在内部和外部小叶具有不同偶极密度的不对称双层中,结构域显示出对离子强度的强烈大小依赖性,分子大小的结构域随着离子强度的增加逐渐发展为宏观相分离。我们讨论了结果对实验的意义,并简要考虑了它们与其他二维系统(如维格纳晶体或异质外延生长)的关系。 (c)2006年美国物理研究所。

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