4.7 Article

Validation of kinetic modeling of progesterone release from polymeric membranes

Journal

ASIAN JOURNAL OF PHARMACEUTICAL SCIENCES
Volume 13, Issue 1, Pages 54-62

Publisher

SHENYANG PHARMACEUTICAL UNIV
DOI: 10.1016/j.ajps.2017.08.007

Keywords

Mathematical models; Model validation; Drug delivery/release; Mass transfer coefficient; Equilibrium distribution constant

Funding

  1. Consejo de Investigacion, Universidad Nacional de Salta (CIUNSa) [2176/0]
  2. Consejo Nacional de Investigaciones Cientificas y Tecnicas (CONICET)
  3. Agencia Nacional de Promocion Cientifica y Tecnologica (ANPCyT) [PICT-MICINN 2011-2751, PICT 20122643]

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Mathematical modeling in drug release systems is fundamental in development and optimization of these systems, since it allows to predict drug release rates and to elucidate the physical transport mechanisms involved. In this paper we validate a novel mathematical model that describes progesterone (Prg) controlled release from poly-3-hydroxybutyric acid (PHB) membranes. A statistical analysis was conducted to compare the fitting of our model with six different models and the Akaike information criterion (AIC) was used to find the equation with best-fit. A simple relation between mass and drug released rate was found, which allows predicting the effect of Prg loads on the release behavior. Our proposed model was the one with minimum AIC value, and therefore it was the one that statistically fitted better the experimental data obtained for all the Prg loads tested. Furthermore, the initial release rate was calculated and therefore, the interface mass transfer coefficient estimated and the equilibrium distribution constant of Prg between the PHB and the release medium was also determined. The results lead us to conclude that our proposed model is the one which best fits the experimental data and can be successfully used to describe Prg drug release in PHB membranes. (C) 2018 Shenyang Pharmaceutical University. Production and hosting by Elsevier B.V.

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