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Simulation studies of pore and domain formation in a phospholipid monolayer

机译:磷脂单层中孔和畴形成的模拟研究

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摘要

Despite extensive study the phase behavior of phospholipid monolayers at an air-water interface is still not fully understood. In particular recent vibrational sum-frequency generation (VSFG) spectra of DPPC monolayers as a function of area density show a sharp transition in the order of the lipid chains at 1.10 nm(2)/molecule. This is in a region where the lateral pressure as a function of area is effectively constant. We have investigated the nature of this transition by studying the phase behavior of DPPC monolayers as a function of area density using molecular-dynamics simulations. The changes in order within the monolayer as a function of area density correlate well with the experimental signal. At 0.58 nm(2)/molecule we observe the onset of lateral separation of highly ordered and disordered lipids, indicating the coexistence of a gel-like liquid condensed and a fluidlike liquid expanded phase. At 0.97 nm(2)/molecule the monolayer ruptures, marking the onset of the liquid-gas (G) coexistence region. This is much earlier than suggested by fluorescence microscopy results and implies that at the point of rupture, the initial pores have an equilibrium size smaller than similar to500 nm in diameter. The rupture of the monolayer leads to a sharp increase in the overall lipid order that explains the sharp transition observed in the VSFG measurements. VSFG measurements thus may represent a sensitive means to determine the onset of the liquid-gas (G) coexistence region for such systems. (C) 2005 American Institute of Physics.
机译:尽管进行了广泛的研究,磷脂单分子层在空气-水界面处的相行为仍不完全清楚。特别是最近的DPPC单层振动求和频率生成(VSFG)谱作为面积密度的函数显示在1.10 nm(2)/分子的脂质链的顺序中的急剧转变。这是在横向压力作为面积函数有效地恒定的区域中。通过使用分子动力学模拟研究DPPC单分子层的相行为作为面积密度的函数,我们已经研究了这种转变的性质。单层内随面积密度变化的顺序与实验信号相关性很好。在0.58 nm(2)/分子时,我们观察到高度有序和无序脂质的侧向分离开始,表明凝胶状液体冷凝相和液体状液体膨胀相共存。在0.97 nm(2)/分子时,单层破裂,标志着液-气(G)共存区域的开始。这比荧光显微镜结果所暗示的要早得多,并且暗示在破裂点,初始孔的平衡尺寸小于直径类似于500nm的尺寸。单层的破裂导致总体脂质顺序的急剧增加,这解释了在VSFG测量中观察到的急剧转变。因此,VSFG测量结果可能是确定此类系统液-气(G)共存区域开始的灵敏手段。 (C)2005美国物理研究所。

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