首页> 外文期刊>International Journal of Pharmaceutics >Different effects of l- and d-menthol on the microstructure of ceramide 5/cholesterol/palmitic acid bilayers.
【24h】

Different effects of l- and d-menthol on the microstructure of ceramide 5/cholesterol/palmitic acid bilayers.

机译:l-和d-薄荷醇对神经酰胺5 /胆固醇/棕榈酸双层的微观结构的不同影响。

获取原文
获取原文并翻译 | 示例
       

摘要

The optical activity of transdermal permeation enhancers is one of the crucial factors for the enhancement of drug permeation via the skin. We investigated the effects of optically active menthols on a lipid bilayer model composed of ceramide 5, cholesterol, and palmitic acid. We first examined the fluidizing effects of l- and d-menthols on the lipid bilayers. The fluorescence anisotropy and thermodynamic parameters, such as the transition temperature and transition enthalpy, were significantly reduced by treatment with the optically active menthols. The effects of d-menthol were stronger than those of l-menthol. To discuss further, we also performed a detergent insolubility study and measured wide angle X-ray scattering. The amount of liquid-ordered phase membranes in the bilayers was significantly reduced by treatment with d-menthol. Whereas, l-menthol did not affected to the liquid-ordered phase membranes. The apparent ratio of orthorhombic hydrocarbon chain packing was substantially reduced by treatment with l-menthol. Thus, the distinct effects of optically active menthols on lipid bilayers were clarified: l-menthol acts on orthorhombic hydrocarbon chain packing with high selectivity, whereas d-menthol has no such specific effect. These findings extend our understanding of the mechanisms by which menthols affect the intercellular lipids in the stratum corneum.
机译:透皮渗透促进剂的光学活性是增强药物通过皮肤渗透的关键因素之一。我们调查了光学活性薄荷醇对由神经酰胺5,胆固醇和棕榈酸组成的脂质双层模型的影响。我们首先检查了l-和d-薄荷醇对脂质双层的流化作用。通过用旋光薄荷醇处理,荧光各向异性和热力学参数,例如转变温度和转变焓显着降低。 d-薄荷醇的作用强于l-薄荷醇。为了进一步讨论,我们还进行了去污剂不溶性研究并测量了广角X射线散射。通过用d-薄荷醇处理,双层中的液相有序相膜的量显着减少。然而,l-薄荷醇对液相有序相膜没有影响。通过用1-薄荷醇处理,斜方烃链堆积的表观比率大大降低。因此,澄清了光学活性薄荷醇对脂质双层的独特作用:1-薄荷醇以高选择性作用于正交晶的烃链堆积,而d-薄荷醇没有这种特定作用。这些发现扩展了我们对薄荷醇影响角质层中细胞间脂质的机制的理解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号