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Micron-scale assessment of molecular lipid organization in human stratum corneum using microprobe X-ray diffraction

机译:使用探针X射线衍射的微米级评估人角质层中分子脂质组织

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摘要

Lipid and protein components of the stratum corneum (SC) are organized in complex supramolecular arrangements. Exploring spatial relations between various possible substructures is important for understanding the barrier function of this uppermost layer of epidermis. Here, we report the first study where micro-focus X-ray scattering was used for assessing fine structural variations of the human skin barrier with micrometer resolution. We found that the scattering profiles were unchanged when scanning in the direction parallel to the SC surface. Furthermore, small-angle scattering profiles did not change as a function of depth in the SC, confirming that the lipid lamellar spacings remained the same throughout the SC. However, the wide-angle scattering data showed that the orthorhombic phase was more abundant in the middle layers of the SC, whereas the hexagonal phase dominated in the surface layers both at the external and the lowest part of the SC; i.e., the lipids were most tightly packed in the middle region of the SC. Taken together, our results demonstrate that microprobe X-ray diffraction provides abundant information about spatial variations of the SC lipid structure and thus may be a promising tool for assessing the effects of topical formulations on the barrier function of skin.
机译:角质层(SC)的脂质和蛋白质成分以复杂的超分子排列方式组织。探索各种可能的子结构之间的空间关系对于理解表皮这一最上层的屏障功能很重要。在这里,我们报道了第一项研究,其中使用微焦点X射线散射以微米分辨率评估人体皮肤屏障的精细结构变化。我们发现,在平行于SC表面的方向上扫描时,散射分布没有变化。此外,小角度散射曲线在SC中并未随深度变化而变化,这证实了整个SC中的脂质层间距均保持不变。然而,广角散射数据表明,正交晶相在中间层中更为丰富,而六角相在表面层的外部和最低处均占优势。即,脂质最紧密地堆积在SC的中间区域。综上所述,我们的结果表明,微探针X射线衍射可提供有关SC脂质结构空间变化的丰富信息,因此可能是评估局部制剂对皮肤屏障功能的影响的有前途的工具。

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