Wang Tsuo-Feng, Kasting Gerald B, Nitsche Johannes M
Department of Chemical and Biological Engineering, University at Buffalo, State University of New York, Buffalo, New York 14260-4200, USA.
J Pharm Sci. 2007 Nov;96(11):3024-51. doi: 10.1002/jps.20883.
The full parameterization for the stratum corneum biphasic microtransport model presented previously in this Journal [95:620-648 (2006)] is developed through a combination of fundamental transport theory and calibration with existing data. Of the five microscopic transport properties, four (D(cor), K(cor/w), D(lip), K(lip/w)) are developed from sources independent of the existing steady-state permeability database. The fifth parameter, k(trans) (the mass transfer coefficient for transbilayer hopping), is derived from a fit of the model to the permeability data according to a modified free surface area function of the form log(10) k(trans) = A-B x (MW)(1/3). Examination of the experimental data in terms of the two dimensionless groups, R and sigma, arising from the analysis leads to the conclusion that SC permeation for most compounds is dominated by the transcellular pathway regardless of their lipophilicity, a striking departure from recent skin permeability models. Overall fit of the developed model(s) to the permeability data is somewhat better than for the Potts-Guy equation and variants thereof; however, marked improvement is seen in the estimation of lag times and the related potential for predicting skin hydration effects and transient skin permeation profiles. Simple approximations to the full numerical solution are presented that allow the developed model(s) to be implemented on a spreadsheet.
本期刊此前发表的角质层双相微传输模型[95:620 - 648 (2006)]的完整参数化是通过基础传输理论与现有数据校准相结合而开发的。在五个微观传输特性中,四个(D(cor)、K(cor/w)、D(lip)、K(lip/w))是从独立于现有稳态渗透率数据库的来源开发的。第五个参数k(trans)(跨双层跳跃的传质系数)是根据形式为log(10) k(trans) = A - B x (MW)(1/3)的修正自由表面积函数,通过将模型拟合到渗透率数据而得出的。根据分析中产生的两个无量纲组R和σ对实验数据进行检查得出结论,即对于大多数化合物,无论其亲脂性如何,经皮渗透均以跨细胞途径为主,这与最近的皮肤渗透模型有显著差异。所开发模型对渗透率数据的整体拟合比Potts - Guy方程及其变体稍好;然而,在滞后时间的估计以及预测皮肤水合作用和瞬态皮肤渗透曲线的相关潜力方面有明显改善。文中给出了完整数值解的简单近似方法,使所开发的模型能够在电子表格上实现。