Diffusion modeling of percutaneous absorption kinetics: 3. Variable diffusion and partition coefficients, consequences for stratum corneum depth profiles and desorption kinetics


Autoria(s): Anissimov, YG; Roberts, MS
Contribuinte(s)

R. T. Borchardt

Data(s)

01/01/2004

Resumo

Stratum corneum (SC) desorption experiments have yielded higher calculated steady-state fluxes than those obtained by epidermal penetration studies. A possible explanation of this result is a variable diffusion or partition coefficient across the SC. We therefore developed the diffusion model for percutaneous penetration and desorption to study the effects of either a variable diffusion coefficient or variable partition coefficient in the SC over the diffusion path length. Steady-state flux, lag time, and mean desorption time were obtained from Laplace domain solutions. Numerical inversion of the Laplace domain solutions was used for simulations of solute concentration-distance and amount penetrated (desorbed)-time profiles. Diffusion and partition coefficients heterogeneity were examined using six different models. The effect of heterogeneity on predicted flux from desorption studies was compared with that obtained in permeation studies. Partition coefficient heterogeneity had a more profound effect on predicted fluxes than diffusion coefficient heterogeneity. Concentration-distance profiles show even larger dependence on heterogeneity, which is consistent with experimental tape-stripping data reported for clobetasol propionate and other solutes. The clobetasol propionate tape-stripping data were most consistent with the partition coefficient decreasing exponentially for half the SC and then becoming a constant for the remaining SC. (C) 2004 Wiley-Liss, Inc.

Identificador

http://espace.library.uq.edu.au/view/UQ:70070

Idioma(s)

eng

Publicador

John Wiley & Sons, Inc

Palavras-Chave #Chemistry, Multidisciplinary #Pharmacology & Pharmacy #Diffusion #Mathematical Models #Transdermal #Permeability #Heterogeneity #In-vivo #Barrier #Transport #Membranes #Water #Skin #Chemistry, Medicinal #C1 #320501 Pharmaceutical Sciences and Pharmacy #730118 Organs, diseases and abnormal conditions not elsewhere classified
Tipo

Journal Article