Beijing University of Chinese Medicine, No. 11 of North 3rd Ring East Road, Chaoyang District, Beijing 100029, China.
Key Laboratory of TCM-Information Engineering of State Administration of TCM, No. 11 of North 3rd Ring East Road, Chaoyang District, Beijing 100029, China.
Int J Mol Sci. 2017 Dec 18;18(12):2747. doi: 10.3390/ijms18122747.
Borneol and menthol are terpenes that are widely used as penetration enhancers in transdermal drug delivery. To explore their penetration-enhancement effects on hydrophilic drugs, 5-fluorouracil (5-FU) was selected as a model drug. An approach that combined in vitro permeation studies and coarse-grained molecular dynamics was used to investigate their penetration-enhancement effect on 5-FU. The results showed that although both borneol and menthol imparted penetration-enhancement effects on 5-FU, these differed in terms of their mechanism, which may account for the observed variations in penetration-enhancement effects. The main mechanism of action of menthol involves the disruption of the stratum corneum (SC) bilayer, whereas borneol involves multiple mechanisms, including the disruption of the SC bilayer, increasing the diffusion coefficient of 5-FU, and inducing the formation of transient pores. The findings of the present study improve our understanding of the molecular mechanism that is underlying 5-FU penetration-enhancement by borneol and menthol, which may be utilized in future investigations and applications.
龙脑和薄荷醇是萜类化合物,广泛用作经皮给药的渗透增强剂。为了探索它们对亲水性药物的渗透增强作用,选择 5-氟尿嘧啶(5-FU)作为模型药物。采用体外渗透研究和粗粒度分子动力学相结合的方法,研究了它们对 5-FU 的渗透增强作用。结果表明,虽然龙脑和薄荷醇都对 5-FU 具有渗透增强作用,但它们的作用机制不同,这可能是观察到的渗透增强作用差异的原因。薄荷醇的主要作用机制涉及破坏角质层(SC)双层,而龙脑涉及多种机制,包括破坏 SC 双层、增加 5-FU 的扩散系数以及诱导瞬时孔的形成。本研究的结果提高了我们对龙脑和薄荷醇促进 5-FU 渗透的分子机制的理解,这可能在未来的研究和应用中得到利用。