McConnell H M
Department of Chemistry, Stanford University, CA 94305, USA.
Proc Natl Acad Sci U S A. 1996 Dec 24;93(26):15001-3. doi: 10.1073/pnas.93.26.15001.
A theoretical analysis is given for the rate of change of domain sizes in lipid monolayers at the air-water interface. The calculation is applicable to liquid domains formed from binary mixtures of lipids that form two coexisting liquid phases. Under conditions where the two lipid molecules have approximately equal areas, the equilibration rate does not involve macroscopic hydrodynamic flow in the subphase but rather depends on the diffusion coefficient of the lipid molecules. The calculation shows that the equilibration rate in binary mixtures of cholesterol and phosphatidylcholine is remarkably slow, the radius of a typical 20-microns diameter domain changing by as little as a part in a million per second. Under these circumstances, equilibration times of the order of days of weeks are expected. Even with such long times, the final state reached by the monolayer will in general be a state of metastable equilibrium, rather than true equilibrium.
对空气-水界面脂质单层中畴尺寸的变化率进行了理论分析。该计算适用于由形成两个共存液相的脂质二元混合物形成的液畴。在两种脂质分子具有大致相等面积的条件下,平衡速率不涉及亚相中宏观的流体动力流,而是取决于脂质分子的扩散系数。计算表明,胆固醇和磷脂酰胆碱二元混合物中的平衡速率非常缓慢,典型的直径为20微米的畴半径每秒变化小至百万分之一。在这种情况下,预计平衡时间为几天到几周。即使有这么长的时间,单层最终达到的状态通常将是亚稳平衡状态,而不是真正的平衡状态。