首页> 外文期刊>Clinical, Cosmetic and Investigational Dermatology >Novel phytoceramides containing fatty acids of diverse chain lengths are better than a single C18-ceramide N-stearoyl phytosphingosine to improve the physiological properties of human stratum corneum
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Novel phytoceramides containing fatty acids of diverse chain lengths are better than a single C18-ceramide N-stearoyl phytosphingosine to improve the physiological properties of human stratum corneum

机译:新型的含有不同链长脂肪酸的植物神经酰胺优于单一的C18-神经酰胺 N -硬脂酰植物鞘氨醇,可改善人角质层的生理特性

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Ceramides in the human stratum corneum (SC) are a mixture of diverse N -acylated fatty acids (FAs) with different chain lengths. C24 is the major class of FAs of ceramides. However, there are also other classes of ceramides with diverse chain lengths of FAs, and these lengths generally range from C16 to C26. This study aimed to prepare several types of phytoceramide containing diverse chain lengths of N -acylated FAs and compare them with C18-ceramide N -stearoyl phytosphingosine (NP) in terms of their effects on the physiological properties of the SC. We chose natural oils, such as horse fat oil, shea butter, sunflower oil, and a mixture of macadamia nut, shea butter, moringa, and meadowfoam seed oil, as sources of FAs and phytosphingosine as a sphingoid backbone to synthesize diverse phytoceramides. Each phytoceramide exhibited a distinctive formation of the lamellar structure, and their FA profiles were similar to those of their respective natural oil. The skin barrier properties, as analyzed in human skin, clearly demonstrated that all the phytoceramides improved the recovery rate of the damaged SC and enhanced hydration better than C18-ceramide NP did. In conclusion, natural oil-derived phytoceramides could represent a novel class of ceramides for cosmetic applications in the development of an ideal skin barrier moisturizer.
机译:人角质层(SC)中的神经酰胺是具有不同链长的各种N-酰化脂肪酸(FA)的混合物。 C24是神经酰胺FA的主要类别。但是,还有其他类别的神经酰胺,其FA链长不同,这些长度通常在C16至C26之间。这项研究旨在制备包含不同链长的N-酰化FA的几种植物神经酰胺,并将它们与C18-神经酰胺N-硬脂酰基植物鞘氨醇(NP)进行比较,以了解它们对SC生理特性的影响。我们选择天然油(例如马油,牛油树脂,葵花籽油以及澳洲坚果,牛油树脂,辣木和草甸泡沫种子油的混合物)作为FA的来源和植物鞘氨醇作为鞘氨醇骨架来合成各种植物神经酰胺。每种植物神经酰胺均表现出独特的层状结构形成,其FA谱与各自的天然油相似。如在人体皮肤中所分析的,皮肤屏障特性清楚地表明,所有植物神经酰胺都比C18-神经酰胺NP更好地改善了受损SC的恢复率并增强了水合作用。总之,天然油衍生的植物神经酰胺可以代表一类新型的神经酰胺,用于化妆品中理想的皮肤屏障保湿剂的开发。

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