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首页> 外文期刊>Journal of Colloid and Interface Science >Does cholesterol preferentially pack in lipid domains with saturated sphingomyelin over phosphatidylcholine? A comprehensive monolayer study combined with grazing incidence X-ray diffraction and Brewster angle microscopy experiments
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Does cholesterol preferentially pack in lipid domains with saturated sphingomyelin over phosphatidylcholine? A comprehensive monolayer study combined with grazing incidence X-ray diffraction and Brewster angle microscopy experiments

机译:与磷脂酰胆碱相比,胆固醇是否优先将具有饱和鞘磷脂的脂质域包装?全面的单层研究与掠入射X射线衍射和Brewster角显微镜实验相结合

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In this work, the Langmuir monolayers were used as a model for the analysis of the influence of cholesterol on 1,2-distearoyl- sn-glycero-3-phosphocholine - DSPC and stearoyl sphingomyelin - SSM, as well as their equimolar mixture. The aim of these studies was to compare the affinity of cholesterol to sphingomyelin and phosphatidylcholine and discuss the effectiveness of cholesterol packing with these phospholipids. The experiments involved the registration of the surface pressure-area isotherms combined with the application of Brewster angle microscopy (BAM) images and grazing incidence X-ray diffraction methods. We have performed a thorough analysis of the properties of both one-component DSPC and SSM films as well as their 1:1 mixture. Next, the effect of cholesterol on these systems was verified based on the results for 2:1 SSM/Chol, 2:1 DSPC/Chol, and 1:1:1 DSPC/SSM/Chol mixtures. It was found that both phospholipids form highly condensed monolayers, however, they differ in the orientation of acyl chains, namely the acyl chains are more tilted in DSPC film as compared to SSM monolayer as well as DSPC/SSM mixture. Furthermore, the area contraction provoked by the addition of cholesterol was found to be more pronounced for DSPC monolayer than in DSPC/SSM and SSM films. However, all the collected results allow one to postulate that the ability of cholesterol to form ordered domains with DSPC and SSM is similar and is predominantly driven by hydrophobic forces between molecules. The differences in the area condensation induced by cholesterol on the studied phospholipids films results from differences in molecular organization of pure phospholipids films rather than specific cholesterol-phospholipid interactions.
机译:在这项工作中,Langmuir单层被用作分析胆固醇对1,2-二硬脂酰基-sn-甘油-3-磷酸胆碱-DSPC和硬脂酰鞘磷脂-SSM及其等摩尔混合物的影响的模型。这些研究的目的是比较胆固醇与鞘磷脂和磷脂酰胆碱的亲和力,并讨论胆固醇与这些磷脂一起包装的有效性。实验涉及表面压力-面积等温线的配准,布鲁斯特角显微镜(BAM)图像和掠入射X射线衍射方法的应用。我们已经对单组分DSPC和SSM膜及其1:1混合物的性能进行了彻底的分析。接下来,根据2:1 SSM / Chol,2:1 DSPC / Chol和1:1:1 DSPC / SSM / Chol混合物的结果验证了胆固醇对这些系统的作用。已经发现两种磷脂均形成高度缩合的单层,但是,它们在酰基链的取向上不同,即,与SSM单层以及DSPC / SSM混合物相比,酰基链在DSPC膜中的倾斜度更大。此外,发现由胆固醇添加引起的面积收缩对于DSPC单层比在DSPC / SSM和SSM薄膜中更为明显。但是,所有收集的结果都可以假定胆固醇与DSPC和SSM形成有序域的能力是相似的,并且主要是由分子之间的疏水力驱动的。在所研究的磷脂膜上由胆固醇诱导的面积缩合的差异是由于纯磷脂膜的分子组织的差异而不是特定的胆固醇-磷脂相互作用引起的。

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