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Non-invasive depth profiling of the stratum corneum in vivo using confocal Raman microscopy considering the non-homogeneous distribution of keratin

机译:考虑角蛋白的非均匀分布使用共聚焦拉曼显微镜对角质层进行体内非侵入性深度分析

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摘要

Confocal Raman microscopy has a number of advantages in investigating the human stratum corneum (SC) in vivo and ex vivo. The penetration profiles of xenobiotics in the SC, as well as depth profiles of the physiological parameters of the SC, such as the concentration of water depending on the strength of hydrogen bonds, total water concentration, the hydrogen bonding state of water molecules, concentration of intercellular lipids, the lamellar and lateral packing order of intercellular lipids, the concentration of natural moisturizing factor molecules, carotenoids, and the secondary and tertiary structure properties of keratin are well investigated. To consider the depth-dependent Raman signal attenuation, in most cases a normalization procedure is needed, which uses the main SC’s protein keratin-related Raman peaks, based on the assumption that keratin is homogeneously distributed in the SC. We found that this assumption is not accurate for the bottom part of the SC, where the water concentration is considerably increased, thus, reducing the presence of keratin. Our results demonstrate that the bottom part of the SC depth profile should be multiplied by 0.94 in average in order to match this non-homogeneity, which result in a decrease of the uncorrected values in these depths. The correctly normalized depth profiles of the concentration of lipids, water, natural moisturizing factor and carotenoids are presented in this work. The obtained results should be taken into consideration in future skin research using confocal Raman microscopy.
机译:共聚焦拉曼显微镜在体内和离体研究人角质层(SC)方面具有许多优势。异种生物在SC中的渗透曲线以及SC生理参数的深度曲线,例如取决于氢键强度的水浓度,总水浓度,水分子的氢键状态,充分研究了细胞间脂质,细胞间脂质的层状和横向堆积顺序,天然保湿因子分子的浓度,类胡萝卜素以及角蛋白的二级和三级结构性质。为了考虑深度相关的拉曼信号衰减,在大多数情况下,需要进行归一化过程,该过程使用SC的主要蛋白角蛋白相关拉曼峰,前提是假定角蛋白均匀分布在SC中。我们发现,这种假设对于SC底部的水浓度显着增加是不准确的,因此水的浓度会大大增加,从而减少了角蛋白的存在。我们的结果表明,SC深度剖面的底部应平均乘以0.94,以匹配这种非均匀性,这会导致这些深度中未校正值的减少。这项工作提出了脂质,水,天然保湿因子和类胡萝卜素浓度的正确归一化深度剖面图。使用共聚焦拉曼显微镜在将来的皮肤研究中应考虑获得的结果。

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