Narita Ibuki, Todo Hiroaki, Fujiwara Chihiro, Teramae Hiroyuki, Oshizaka Takeshi, Itakura Shoko, Komatsu Syuuhei, Takayama Kozo, Sugibayashi Kenji
Faculty of Pharmacy and Pharmaceutical Sciences, Josai University.
Faculty of Science, Josai University.
J Toxicol Sci. 2025;50(4):171-186. doi: 10.2131/jts.50.171.
The development of in silico approaches that can estimate the dermal absorption of chemicals exposed in practical conditions is highly anticipated. In the present study, an in silico model to estimate both the dermal absorption rate and dermal permeation profile was developed for the application of chemicals in finite dose conditions. Forty-three chemicals with molecular weights in the range 116-362 and logK in the range 1.1-4.5 were used to develop an in silico model. A gradient boosting tree approach was applied to estimate permeation parameters for diffusion and partition coefficients of the chemicals in skin using physicochemical parameters of the chemicals such as molecular weight, lipophilicity, and the highest and lowest occupied molecular orbitals as the descriptor. In addition, 11 chemicals with different molecular weights and lipophilicities were applied on excised human skin in a finite dose condition, and dermal absorption profiles were obtained. Consideration of donor-solvent evaporation time, saturated concentrations of the chemicals, and donor-solvent coverage area on the skin surface, in addition to estimated skin permeation parameters of the chemicals, showed comparatively good dermal absorption profiles, although some cases of underestimation of dermal absorption were identified. It will be necessary to verify the accuracy of this model through experiments using more chemicals. However, the obtained results suggested that the established model may be valid to estimate the dermal absorption of chemicals in practical conditions.
人们高度期待能够开发出在计算机上模拟实际条件下化学物质经皮吸收情况的方法。在本研究中,开发了一种在计算机上模拟有限剂量条件下化学物质经皮吸收速率和渗透曲线的模型。使用了43种分子量在116 - 362范围内且logK在1.1 - 4.5范围内的化学物质来开发该计算机模型。采用梯度提升树方法,以化学物质的物理化学参数如分子量、亲脂性以及最高和最低占据分子轨道作为描述符,来估计化学物质在皮肤中的扩散和分配系数的渗透参数。此外,在有限剂量条件下,将11种具有不同分子量和亲脂性的化学物质应用于离体人体皮肤,并获得了经皮吸收曲线。除了估计的化学物质皮肤渗透参数外,考虑供体溶剂蒸发时间、化学物质的饱和浓度以及皮肤表面的供体溶剂覆盖面积后,尽管发现了一些经皮吸收估计不足的情况,但经皮吸收曲线相对较好。有必要通过使用更多化学物质的实验来验证该模型的准确性。然而,所获得的结果表明,所建立的模型可能在估计实际条件下化学物质的经皮吸收方面是有效的。