School of Chemistry and Chemical Engineering, University of Surrey, Guildford, UK.
Unilever R&D Colworth, Bedford, UK.
Pharm Res. 2024 Mar;41(3):567-576. doi: 10.1007/s11095-024-03660-y. Epub 2024 Feb 13.
This study investigates in silico the contribution of the hair follicle to the overall dermal permeability of small molecules, as published experimental work provides inconclusive information on whether the follicular route favours the permeation of hydrophobic or hydrophilic permeants.
A study is conducted varying physico-chemical parameters of permeants such as lipophilicity, molecular weight and protein binding. The simulated data is compared to published experimental data to discuss how those properties can modulate the contribution of the hair follicle to the overall dermal permeation.
The results indicate that the contribution of the follicular route to dermal permeation can range from negligible to notable depending on the combination of lipophilic/hydrophilic properties of the substance filling the follicular route and the permeant.
Characterisation of the substance filling the follicular route is required for analysing the experimental data of dermal permeation of small molecules, as changes between in vivo and in vitro due to handling of samples and cessation of vital functions can modify the contribution of the follicular route to overall dermal permeation, hence hindering data interpretation.
本研究通过计算机模拟,探讨毛囊对小分子整体皮肤渗透性的贡献,因为已发表的实验工作提供的信息并不明确,无法确定毛囊途径是否有利于亲脂性或亲水性渗透物的渗透。
通过改变渗透物的物理化学参数,如脂溶性、分子量和蛋白结合等,进行研究。将模拟数据与已发表的实验数据进行比较,讨论这些特性如何调节毛囊对整体皮肤渗透性的贡献。
结果表明,毛囊途径对皮肤渗透性的贡献范围可以从微不足道到显著,具体取决于填充毛囊途径的物质和渗透物的亲脂/亲水性质的组合。
需要对填充毛囊途径的物质进行特征描述,以分析小分子皮肤渗透性的实验数据,因为由于样品处理和生命功能停止导致的体内和体外之间的变化可以改变毛囊途径对整体皮肤渗透性的贡献,从而阻碍数据解释。