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Transdermal and lateral effective diffusivities for drug transport in stratum corneum from a microscopic anisotropic diffusion model.

Authors :
Wang, Junxi
Nitsche, Johannes M.
Kasting, Gerald B.
Wittum, Gabriel
Nägel, Arne
Source :
European Journal of Pharmaceutics & Biopharmaceutics. Jul2023, Vol. 188, p271-286. 16p.
Publication Year :
2023

Abstract

Isothermal surfaces within the device [Display omitted] This paper presents a computational model of molecular diffusion through the interfollicular stratum corneum. Specifically, it extends an earlier two-dimensional microscopic model for the permeability in two ways: (1) a microporous leakage pathway through the intercellular lipid lamellae allows slow permeation of highly hydrophilic permeants through the tissue; and (2) the model yields explicit predictions of both lateral ( D ‾ ‖ sc ) and transdermal ( D ‾ ⊥ sc ) effective (average, homogenized) diffusivities of solutes within the tissue. We present here the mathematical framework for the analysis and a comparison of the predictions with experimental data on desorption of both hydrophilic and lipophilic solutes from human stratum corneum in vitro. Diffusion in the lipid lamellae is found to make the effective diffusivity highly anisotropic, with the predicted ratio D ‾ ‖ sc / D ‾ ⊥ sc ranging from 34 to 39 for fully hydrated skin and 150 to more than 1000 for partially hydrated skin. The diffusivities and their ratio are in accord with both experimental data and the results of mathematical analyses performed by others. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09396411
Volume :
188
Database :
Academic Search Index
Journal :
European Journal of Pharmaceutics & Biopharmaceutics
Publication Type :
Academic Journal
Accession number :
164180555
Full Text :
https://doi.org/10.1016/j.ejpb.2023.01.025