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首页> 外文期刊>Skin pharmacology and physiology >Properties of ceramides and their impact on the stratum corneum structure. Part 2: stratum corneum lipid model systems.
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Properties of ceramides and their impact on the stratum corneum structure. Part 2: stratum corneum lipid model systems.

机译:神经酰胺的性质及其对角质层结构的影响。第2部分:角质层脂质模型系统。

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摘要

The stratum corneum (SC) represents the outermost layer of the mammalian skin, exhibits the main skin barrier and plays an important role in the water penetration pathway through the SC. Knowing the structure and properties of the SC at the molecular level is essential for studying drug penetration through the SC and for the development of new dermal drug delivery systems. Therefore, research interest is focused on the SC lipid matrix and on water diffusion through it. Thus, the ultimate aim is to design a lipid mixture that mimics the barrier properties of the human SC to a high extent and that can substitute the SC in drug delivery systems. This review summarizes various studies performed on either isolated animal or human ceramide based SC model systems, coming to the result that using synthetic lipids with a well-defined architecture allows good extrapolation to the in vivo situation. This review is the continuation of part 1 that is focused on a detailed description of the thermotropic and/or lyotropic phase behaviour of single ceramide types obtained by various experimental techniques. The objective of part 2 is to reflect the numerous studies on SC lipid model systems, namely binary, ternary and multicomponent systems, during the last decade. In this context, neutron diffraction as a prospective tool for analyzing the internal membrane structure is addressed in particular. Based on these new insights, current SC models are presented, whose validations are still under discussion. A profound knowledge about SC lipid organization at the molecular level is still missing.
机译:角质层(SC)代表哺乳动物皮肤的最外层,具有主要的皮肤屏障,并且在通过SC的水渗透途径中起重要作用。在分子水平上了解SC的结构和性质对于研究药物通过SC的渗透以及开发新的皮肤药物输送系统至关重要。因此,研究兴趣集中在SC脂质基质及其上的水扩散。因此,最终目的是设计一种脂质混合物,该脂质混合物在很大程度上模拟人SC的屏障特性,并且可以在药物递送系统中替代SC。这篇综述总结了对基于分离的动物或基于人神经酰胺的SC模型系统进行的各种研究,得出的结果是,使用具有明确定义的结构的合成脂质可以很好地推断体内情况。本文是第1部分的继续,该部分着重于通过各种实验技术获得的单一神经酰胺类型的热致和/或溶致相行为的详细描述。第2部分的目的是反映过去十年间对SC脂质模型系统的大量研究,即二元,三元和多组分系统。在这种情况下,特别涉及中子衍射作为用于分析内部膜结构的前瞻性工具。基于这些新见解,介绍了当前的SC模型,其验证仍在讨论中。尚缺乏在分子水平上对SC脂质组织的深入了解。

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