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首页> 外文期刊>Journal of chemical information and modeling >A Multiscale Study on the Penetration Enhancement Mechanism of Menthol to Osthole
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A Multiscale Study on the Penetration Enhancement Mechanism of Menthol to Osthole

机译:薄荷洞对欧疏孔渗透增强机制的多尺度研究

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Menthol is a widely used penetration enhancer in clinical medicine due to its high efficiency and relative safety. However, details of the penetration enhancement mechanism of menthol on the molecular level is rarely involved in the discussion. In this work, the penetration enhancement (PE) mechanism of menthol is explored by a multiscale method containing molecular dynamics simulations, in vitro penetration experiments, and transmission electron microscopy. Osthole is chosen to be the tested drug due to its common use in external preparations and because it often accompanies menthol as a PE in the preparations. The results show that menthol in each testing concentration can impair the lipid packing of stratum corneum (SC) and promote osthole permeating into SC, and the penetration promoting effect has an optimal concentration. At a low concentration, menthol causes the bilayer to relax with a reduction in thickness and increment in the lipid headgroup area. At a high concentration, menthol destroys the bilayer structure of SC and causes lipids to form a reversed micelle structure. The penetration enhancement mechanism of menthol is characterized mainly by the disruption of the highly ordered SC lipid in low concentrations and an improvement in the partitioning of drugs into the SC in high concentrations. The results can provide some assistance for additional studies and applications of menthol as a penetration enhancer.
机译:由于其高效率和相对安全,薄荷醇是临床医学的广泛使用的渗透增强剂。然而,薄荷醇对分子水平的渗透增强机制的细节很少参与讨论。在这项工作中,通过含有分子动力学模拟,体外渗透实验和透射电子显微镜的多尺度方法探索薄荷醇的穿透增强(PE)机制。由于其在外部制剂中的常见使用,因此选择了欧疏的药物,因为它通常伴随薄荷醇作为制剂的PE。结果表明,每个测试浓度的薄荷醇都可以损害角质层(SC)的脂质包装,并促进渗透到Sc中的胞孔,并且渗透促进效果具有最佳浓度。在低浓度下,薄荷醇使双层以脂质头组区域的厚度和增量的减小放松。在高浓度下,薄荷醇破坏了Sc的双层结构,并导致脂质形成反向胶束结构。薄荷醇的渗透增强机理的特征主要是通过低浓度的高度有序SC脂质的破坏,以及在高浓度下将药物分配到SC中的改善。结果可以为薄荷醇的额外研究和应用提供一些辅助作为渗透性增强剂。

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