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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Imaging cerebroside-rich domains for phase and shape characterization in binary and ternary mixtures.
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Imaging cerebroside-rich domains for phase and shape characterization in binary and ternary mixtures.

机译:成像丰富的脑苷脂域,以进行二元和三元混合物的相和形状表征。

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The objective of this paper is to review phase behavior and shape characterization of cerebroside-rich domains in binary and ternary lipid bilayers, as obtained by microscopy techniques. These lipid mixtures provide a format to examine molecular (e.g. headgroup, tail unsaturation, and tail hydroxylation) and thermodynamic (e.g. temperature and mole percentages) factors that determine phase behavior, molecular partitioning, crystal/atomic scale structure, and microstructure/shape (particularly of phase-separated domains). Microscopy can provide excellent spatial (often with high resolution) characterization of cerebroside-rich domains (and their surroundings) to identify, describe or infer with high certainty these characteristics. In the introduction to this review we review briefly the molecular structure, phase behavior, and intermolecular interactions of cerebrosides, in comparison to ceramides and sphingomyelins and in some binary and biological systems. The bulk of the review is then devoted to microscopy investigations of cerebroside-rich domain microstructure and shape dynamics in binary and ternary (one component is cholesterol) systems. Quantitative and/or high-resolution microscopy techniques have been used to interrogate cerebroside-rich domains such as freeze-fracture electron microscopy, atomic force microscopy, imaging elipsometry, two-photon fluorescence microscopy, and LAURDAN generalized polarization in addition to the laboratory workhorse technique of epifluorescence microscopy that allows a quick often qualitative assessment of microstructure and dynamics. We particularly focus on the information these microscopy investigations have revealed with respect to phase behavior, cholesterol partitioning, domain shape, and determinants of domain shape.
机译:本文的目的是回顾通过显微镜技术获得的二元和三元脂质双层中富含脑苷的结构域的相行为和形状表征。这些脂质混合物提供了一种检查分子(例如头基,尾部不饱和度和尾部羟基化)和热力学(例如温度和摩尔百分比)因素的格式,这些因素决定了相行为,分子分配,晶体/原子尺度结构以及微观结构/形状(尤其是相分离的域)。显微镜可以提供丰富的脑苷脂结构域(及其周围环境)的出色空间特征(通常具有高分辨率),以高度确定性地识别,描述或推断这些特征。在这篇综述的引言中,我们简要回顾了脑苷的分子结构,相行为和分子间相互作用,与神经酰胺和鞘磷脂以及某些二元和生物系统相比。然后,大部分的评论致力于显微镜研究富含脑苷的区域的微观结构和二元和三元(一个成分是胆固醇)系统中的形状动力学。定量和/或高分辨率显微镜技术已被用于询问富含脑苷的区域,例如冷冻断裂电子显微镜,原子力显微镜,成像椭偏仪,两光子荧光显微镜和LAURDAN广义极化技术,此外还使用实验室主力技术。荧光显微镜技术可以快速,经常地对微观结构和动力学进行定性评估。我们特别关注这些显微镜研究揭示的有关相行为,胆固醇分配,结构域形状和结构域决定因素的信息。

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