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基于第一性原理和结构的经皮转运模型,仅通过角质层渗透实验评估疏水性渗透剂的脂质分配系数和扩散系数。

First-principles, structure-based transdermal transport model to evaluate lipid partition and diffusion coefficients of hydrophobic permeants solely from stratum corneum permeation experiments.

作者信息

Kushner Joseph, Deen William, Blankschtein Daniel, Langer Robert

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.

出版信息

J Pharm Sci. 2007 Dec;96(12):3236-51. doi: 10.1002/jps.20896.

Abstract

To account for the effect of branched, parallel transport pathways in the intercellular domain of the stratum corneum (SC) on the passive transdermal transport of hydrophobic permeants, we have developed, from first-principles, a new theoretical model-the Two-Tortuosity Model. This new model requires two tortuosity factors to account for: (1) the effective diffusion path length, and (2) the total volume of the branched, parallel transport pathways present in the SC intercellular domain, both of which may be evaluated from known values of the SC structure. After validating the Two-Tortuosity model with simulated SC diffusion experiments in FEMLAB (a finite element software package), the vehicle-bilayer partition coefficient, K(b), and the lipid bilayer diffusion coefficient, D(b), in untreated human SC were evaluated using this new model for two hydrophobic permeants, naphthol (K(b) = 225 +/- 42, D(b) = 1.7 x 10(-7) +/- 0.3 x 10(-7) cm(2)/s) and testosterone (K(b) = 92 +/- 29, D(b) = 1.9 x 10(-8) +/- 0.5 x 10(-8) cm(2)/s). The results presented in this paper demonstrate that this new method to evaluate K(b) and D(b) is comparable to, and simpler than, previous methods, in which SC permeation experiments were combined with octanol-water partition experiments, or with SC solute release experiments, to evaluate K(b) and D(b).

摘要

为了解释角质层(SC)细胞间区域中分支平行转运途径对疏水性渗透剂被动经皮转运的影响,我们从第一性原理出发,开发了一种新的理论模型——双曲折模型。这个新模型需要考虑两个曲折因子:(1)有效扩散路径长度,以及(2)SC细胞间区域中存在的分支平行转运途径的总体积,这两者均可根据SC结构的已知值进行评估。在用FEMLAB(一个有限元软件包)中的模拟SC扩散实验验证了双曲折模型之后,使用这个新模型对两种疏水性渗透剂萘酚(K(b) = 225 +/- 42,D(b) = 1.7 x 10(-7) +/- 0.3 x 10(-7) cm(2)/s)和睾酮(K(b) = 92 +/- 29,D(b) = 1.9 x 10(-8) +/- 0.5 x 10(-8) cm(2)/s)评估了未处理人SC中的载体 - 双层分配系数K(b)和脂质双层扩散系数D(b)。本文给出的结果表明,这种评估K(b)和D(b)的新方法与以前的方法相当且更简单,以前的方法是将SC渗透实验与正辛醇 - 水分配实验或SC溶质释放实验相结合来评估K(b)和D(b)。

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