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Cholesterol Depletion from a Ceramide/Cholesterol Mixed Monolayer: A Brewster Angle Microscope Study

机译:神经酰胺/胆固醇混合单层的胆固醇消耗:布鲁斯特角显微镜研究。

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摘要

Cholesterol is crucial to the mechanical properties of cell membranes that are important to cells’ behavior. Its depletion from the cell membranes could be dramatic. Among cyclodextrins (CDs), methyl beta cyclodextrin (MβCD) is the most efficient to deplete cholesterol (Chol) from biomembranes. Here, we focus on the depletion of cholesterol from a C16 ceramide/cholesterol (C16-Cer/Chol) mixed monolayer using MβCD. While the removal of cholesterol by MβCD depends on the cholesterol concentration in most mixed lipid monolayers, it does not depend very much on the concentration of cholesterol in C16-Cer/Chol monolayers. The surface pressure decay during depletion were described by a stretched exponential that suggested that the cholesterol molecules are unable to diffuse laterally and behave like static traps for the MβCD molecules. Cholesterol depletion causes morphology changes of domains but these disrupted monolayers domains seem to reform even when cholesterol level was low.
机译:胆固醇对于细胞膜的机械性能至关重要,而细胞膜的机械性能对细胞的行为至关重要。它从细胞膜中耗竭可能是巨大的。在环糊精(CDs)中,甲基β-环糊精(MβCD)是最有效的从生物膜中消耗胆固醇(Chol)的物质。在这里,我们重点研究使用MβCD从C16神经酰胺/胆固醇(C16-Cer / Chol)混合单层中胆固醇的消耗。虽然通过MβCD去除胆固醇取决于大多数混合脂质单分子层中的胆固醇浓度,但并不非常取决于C16-Cer / Chol单分子层中胆固醇的浓度。耗尽过程中的表面压力衰减通过拉伸指数来描述,这表明胆固醇分子无法横向扩散,其行为类似于MβCD分子的静态陷阱。胆固醇的消耗会导致结构域的形态变化,但是即使胆固醇水平较低,这些被破坏的单分子层结构域也会重新形成。

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