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Phase Transitions in Coarse-Grained Lipid Bilayers Containing Cholesterol by Molecular Dynamics Simulations

机译:分子动力学模拟的含胆固醇粗粒脂质双层中的相变

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摘要

Coarse-grained simulations of model membranes containing mixtures of phospholipid and cholesterol molecules at different concentrations and temperatures have been performed. A random mixing without tendencies for segregation or formation of domains was observed on spatial scales corresponding to a few thousand lipids and timescales up to several microseconds. The gel-to-liquid crystalline phase transition is successively weakened with increasing amounts of cholesterol without disappearing completely even at a concentration of cholesterol as high as 60%. The phase transition temperature increases slightly depending on the cholesterol concentration. The gel phase system undergoes a transition with increasing amounts of cholesterol from a solid-ordered phase into a liquid-ordered one. In the solid phase, the amplitude of the oscillations in the radial distribution function decays algebraically with a prefactor that goes to zero at the solid-liquid transition.
机译:已对包含不同浓度和温度的磷脂和胆固醇分子混合物的模型膜进行了粗粒度模拟。在对应于几千个脂质的空间尺度和长达几微秒的时间尺度上观察到无混合的现象,没有分离或形成域的趋势。随着胆固醇含量的增加,凝胶到液晶的相变逐渐减弱,即使在胆固醇浓度高达60%时也不会完全消失。相变温度根据胆固醇浓度而略微升高。凝胶相系统经历了从固相到液相的不断增加的胆固醇转变。在固相中,径向分布函数中的振荡幅度以代数方式衰减,该因数在固液过渡时变为零。

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