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通过自旋标记电子顺磁共振研究角质层中的脂质链动力学。

Lipid chain dynamics in stratum corneum studied by spin label electron paramagnetic resonance.

作者信息

Alonso A, Meirelles N C, Tabak M

机构信息

Instituto de Física, Universidade Federal de Goiás, GO, Brazil.

出版信息

Chem Phys Lipids. 2000 Feb;104(2):101-11. doi: 10.1016/s0009-3084(99)00090-0.

DOI:10.1016/s0009-3084(99)00090-0
PMID:10669304
Abstract

The lipid chain motions in stratum corneum (SC) membranes have been studied through electron paramagnetic resonance (EPR) spectroscopy of stearic acid spin-labeled at the 5th, 12th and 16th carbon atom positions of the acyl chain. Lipids have been extracted from SC with a series of chloroform/methanol mixtures, in order to compare the molecular dynamics and the thermotropic behavior in intact SC, lipid-depleted SC (containing covalently bound lipids of the corneocyte envelope) and dispersion of extracted SC lipids. The segmental motion of 5- and 12-doxylstearic acid (5- and 12-DSA) and the rotational correlation time of 16-doxylstearic acid (16-DSA) showed that the envelope lipids are more rigid and the extracted lipids are more fluid than the lipids of the intact SC over the range of temperature measured. The lower fluidity observed for the corneocyte envelope, that may be caused mainly due to lipid-protein interactions, suggests a major contribution of this lipid domain to the barrier function of SC. Changes in the activation energy for reorientational diffusion of the 16-DSA spin label showed apparent phase transitions around 54 degrees C, for the three SC samples. Some lipid reorganization may occur in SC above 54 degrees C, in agreement with results reported from studies with several other techniques. This reorganization is sensitive to the presence of the extractable intercellular lipids, being different in the lipid-depleted sample as compared to native SC and lipid dispersion. The results contribute to the understanding of alkyl chain packing and mobility in the SC membranes, which are involved in the mechanisms that control the permeability of different compounds through skin, suggesting an important involvement of the envelope in the skin barrier.

摘要

通过对硬脂酸在酰基链的第5、12和16个碳原子位置进行自旋标记的电子顺磁共振(EPR)光谱,研究了角质层(SC)膜中的脂质链运动。用一系列氯仿/甲醇混合物从SC中提取脂质,以比较完整SC、脂质耗尽的SC(含有角质形成细胞膜包被的共价结合脂质)和提取的SC脂质分散体中的分子动力学和热致行为。5-和12-二氧硬脂酸(5-和12-DSA)的链段运动以及16-二氧硬脂酸(16-DSA)的旋转相关时间表明,在所测温度范围内,膜包被脂质比完整SC的脂质更刚性,提取的脂质更具流动性。角质形成细胞膜包被观察到的较低流动性可能主要是由于脂质-蛋白质相互作用引起的,这表明该脂质结构域对SC的屏障功能有重要贡献。对于三个SC样品,16-DSA自旋标记重取向扩散的活化能变化在54℃左右显示出明显的相变。在54℃以上,SC中可能会发生一些脂质重组,这与其他几种技术的研究结果一致。这种重组对可提取的细胞间脂质的存在敏感,与天然SC和脂质分散体相比,脂质耗尽样品中的情况不同。这些结果有助于理解SC膜中烷基链的堆积和流动性,它们参与了控制不同化合物通过皮肤的渗透机制,表明膜包被在皮肤屏障中具有重要作用。

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