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鞘氨醇、二氢鞘氨醇和植物鞘氨醇神经酰胺中酰链()-和()-α-羟化对皮肤脂质模型相行为和通透性的影响。

Effects of ()- and ()-α-Hydroxylation of Acyl Chains in Sphingosine, Dihydrosphingosine, and Phytosphingosine Ceramides on Phase Behavior and Permeability of Skin Lipid Models.

机构信息

Skin Barrier Research Group, Faculty of Pharmacy in Hradec Králové, Charles University, Akademika Heyrovského 1203, 500 05 Hradec Králové, Czech Republic.

Faculty of Chemical Technology, University of Chemistry and Technology in Prague, Technická 5, 166 28 Prague, Czech Republic.

出版信息

Int J Mol Sci. 2021 Jul 12;22(14):7468. doi: 10.3390/ijms22147468.

Abstract

Ceramides (Cers) with α-hydroxylated acyl chains comprise about a third of all extractable skin Cers and are required for permeability barrier homeostasis. We have probed here the effects of Cer hydroxylation on their behavior in lipid models comprising the major SC lipids, Cer/free fatty acids (C -C )/cholesterol, and a minor component, cholesteryl sulfate. Namely, Cers with ()-α-hydroxy lignoceroyl chains attached to sphingosine (Cer AS), dihydrosphingosine (Cer AdS), and phytosphingosine (Cer AP) were compared to their unnatural ()-diastereomers and to Cers with non-hydroxylated lignoceroyl chains attached to sphingosine (Cer NS), dihydrosphingosine (Cer NdS), and phytosphingosine (Cer NP). By comparing several biophysical parameters (lamellar organization by X-ray diffraction, chain order, lateral packing, phase transitions, and lipid mixing by infrared spectroscopy using deuterated lipids) and the permeabilities of these models (water loss and two permeability markers), we conclude that there is no general or common consequence of Cer α-hydroxylation. Instead, we found a rich mix of effects, highly dependent on the sphingoid base chain, configuration at the α-carbon, and permeability marker used. We found that the model membranes with unnatural Cer ()-AS have fewer orthorhombically packed lipid chains than those based on the ()-diastereomer. In addition, physiological ()-configuration decreases the permeability of membranes, with Cer ()-AdS to theophylline, and increases the lipid chain order in model systems with natural Cer ()-AP. Thus, each Cer subclass makes a distinct contribution to the structural organization and function of the skin lipid barrier.

摘要

神经酰胺(Cer)的 α-羟酰链约占所有可提取皮肤 Cer 的三分之一,对于维持渗透屏障的稳态是必需的。在这里,我们研究了 Cer 羟化对其在包含主要 SC 脂质 Cer/游离脂肪酸(C16-C26)/胆固醇和次要成分胆甾醇硫酸酯的脂质模型中的行为的影响。即,具有()-α-羟基愈创木酰链连接到神经酰胺(Cer AS)、二氢神经酰胺(Cer AdS)和植物神经酰胺(Cer AP)的 Cer 与它们的非天然()-对映异构体以及具有未羟化愈创木酰链连接到神经酰胺(Cer NS)、二氢神经酰胺(Cer NdS)和植物神经酰胺(Cer NP)的 Cer 进行了比较。通过比较几种生物物理参数(X 射线衍射的层状组织、链序、侧向堆积、相转变以及使用氘化脂质的红外光谱的脂质混合)和这些模型的渗透率(水分损失和两种渗透率标志物),我们得出结论,Cer α-羟化没有普遍或共同的后果。相反,我们发现了一系列丰富的影响,这些影响高度依赖于神经酰胺碱基链、α-碳的构型和使用的渗透率标志物。我们发现,具有非天然 Cer()-AS 的模型膜比基于()-对映异构体的膜具有更少的正交堆积的脂质链。此外,生理()-构型降低了膜的通透性,对于茶碱来说,Cer()-AdS 的通透性降低,并且在具有天然 Cer()-AP 的模型系统中增加了脂质链的有序性。因此,每个 Cer 亚类都对皮肤脂质屏障的结构组织和功能做出了独特的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f17/8303283/1b75f30123ec/ijms-22-07468-g001.jpg

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