Validation of kinetic modeling of progesterone release from polymeric membranes

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 (...

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Main Authors: Analia Irma Romero, Mercedes Villegas, Alicia Graciela Cid, Mónica Liliana Parentis, Elio Emilio Gonzo, José María Bermúdez
Format: Article
Language:English
Published: Elsevier 2018-01-01
Series:Asian Journal of Pharmaceutical Sciences
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1818087617301848
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author Analia Irma Romero
Mercedes Villegas
Alicia Graciela Cid
Mónica Liliana Parentis
Elio Emilio Gonzo
José María Bermúdez
author_facet Analia Irma Romero
Mercedes Villegas
Alicia Graciela Cid
Mónica Liliana Parentis
Elio Emilio Gonzo
José María Bermúdez
author_sort Analia Irma Romero
collection DOAJ
description 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.
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spelling doaj.art-fbcb6f1f67f24ab9b0b7bf226569e2d32022-12-22T03:39:10ZengElsevierAsian Journal of Pharmaceutical Sciences1818-08762018-01-01131546210.1016/j.ajps.2017.08.007Validation of kinetic modeling of progesterone release from polymeric membranesAnalia Irma Romero0Mercedes Villegas1Alicia Graciela Cid2Mónica Liliana Parentis3Elio Emilio Gonzo4José María Bermúdez5Instituto de Investigaciones para la Industria Química, Universidad Nacional de Salta – Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Bolivia 5150, Salta Capital 4400, ArgentinaInstituto de Investigaciones para la Industria Química, Universidad Nacional de Salta – Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Bolivia 5150, Salta Capital 4400, ArgentinaInstituto de Investigaciones para la Industria Química, Universidad Nacional de Salta – Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Bolivia 5150, Salta Capital 4400, ArgentinaInstituto de Investigaciones para la Industria Química, Universidad Nacional de Salta – Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Bolivia 5150, Salta Capital 4400, ArgentinaInstituto de Investigaciones para la Industria Química, Universidad Nacional de Salta – Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Bolivia 5150, Salta Capital 4400, ArgentinaInstituto de Investigaciones para la Industria Química, Universidad Nacional de Salta – Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Bolivia 5150, Salta Capital 4400, ArgentinaMathematical 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.http://www.sciencedirect.com/science/article/pii/S1818087617301848Mathematical modelsModel validationDrug delivery/releaseMass transfer coefficientEquilibrium distribution constant
spellingShingle Analia Irma Romero
Mercedes Villegas
Alicia Graciela Cid
Mónica Liliana Parentis
Elio Emilio Gonzo
José María Bermúdez
Validation of kinetic modeling of progesterone release from polymeric membranes
Asian Journal of Pharmaceutical Sciences
Mathematical models
Model validation
Drug delivery/release
Mass transfer coefficient
Equilibrium distribution constant
title Validation of kinetic modeling of progesterone release from polymeric membranes
title_full Validation of kinetic modeling of progesterone release from polymeric membranes
title_fullStr Validation of kinetic modeling of progesterone release from polymeric membranes
title_full_unstemmed Validation of kinetic modeling of progesterone release from polymeric membranes
title_short Validation of kinetic modeling of progesterone release from polymeric membranes
title_sort validation of kinetic modeling of progesterone release from polymeric membranes
topic Mathematical models
Model validation
Drug delivery/release
Mass transfer coefficient
Equilibrium distribution constant
url http://www.sciencedirect.com/science/article/pii/S1818087617301848
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