Stability analysis and analytical solution of a nonlinear model for controlled drug release: Travelling wave fronts

In this paper, the process of drug dissolution and release from a planar matrix is investigated based on two coupled nonlinear partial differential equations proposed by Göran Frenning in 2003. In the modelling the process drug adsorption has been disregarded, assuming concentration-independent diff...

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محفوظ في:
التفاصيل البيبلوغرافية
المؤلفون الرئيسيون: Chontita Rattanakul, Yongwimon Lenbury
مؤلفون آخرون: Mahidol University
التنسيق: مقال
منشور في: 2018
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الوصول للمادة أونلاين:https://repository.li.mahidol.ac.th/handle/123456789/14015
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spelling th-mahidol.140152018-06-11T11:57:26Z Stability analysis and analytical solution of a nonlinear model for controlled drug release: Travelling wave fronts Chontita Rattanakul Yongwimon Lenbury Mahidol University Centre of Excellence in Mathematics Computer Science Mathematics In this paper, the process of drug dissolution and release from a planar matrix is investigated based on two coupled nonlinear partial differential equations proposed by Göran Frenning in 2003. In the modelling the process drug adsorption has been disregarded, assuming concentration-independent diffusion coefficients, using perfect sink conditions, and specializing to a planar geometry, The concentration profile of the mobile, or diffusing, the resulting model is rather complex and has been investigated only numerically and only approximate solution have been possible. In this paper it is shown that an analytical solution can be obtained exactly in the form of a travelling wave front. We describe the method for finding the analytical solutions using the travelling wave coordinate when the wave is assumed to be moving at constant speed. The model system of partial differential equations is transformed into two coupled ordinary differential equations, which is analysed interms of the stability of its steady state. Analytical solutions are derived in three possible cases, giving travelling wave solutions. We then discuss a comparison between the exact solutions obtained here and the analytical short-time approximation as well as the curves obtained from the modified Higuchi formula reported by Frenning in 2003. 2018-06-11T04:44:50Z 2018-06-11T04:44:50Z 2012-12-01 Article International Journal of Mathematics and Computers in Simulation. Vol.6, No.3 (2012), 351-359 19980159 2-s2.0-84875719614 https://repository.li.mahidol.ac.th/handle/123456789/14015 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84875719614&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Computer Science
Mathematics
spellingShingle Computer Science
Mathematics
Chontita Rattanakul
Yongwimon Lenbury
Stability analysis and analytical solution of a nonlinear model for controlled drug release: Travelling wave fronts
description In this paper, the process of drug dissolution and release from a planar matrix is investigated based on two coupled nonlinear partial differential equations proposed by Göran Frenning in 2003. In the modelling the process drug adsorption has been disregarded, assuming concentration-independent diffusion coefficients, using perfect sink conditions, and specializing to a planar geometry, The concentration profile of the mobile, or diffusing, the resulting model is rather complex and has been investigated only numerically and only approximate solution have been possible. In this paper it is shown that an analytical solution can be obtained exactly in the form of a travelling wave front. We describe the method for finding the analytical solutions using the travelling wave coordinate when the wave is assumed to be moving at constant speed. The model system of partial differential equations is transformed into two coupled ordinary differential equations, which is analysed interms of the stability of its steady state. Analytical solutions are derived in three possible cases, giving travelling wave solutions. We then discuss a comparison between the exact solutions obtained here and the analytical short-time approximation as well as the curves obtained from the modified Higuchi formula reported by Frenning in 2003.
author2 Mahidol University
author_facet Mahidol University
Chontita Rattanakul
Yongwimon Lenbury
format Article
author Chontita Rattanakul
Yongwimon Lenbury
author_sort Chontita Rattanakul
title Stability analysis and analytical solution of a nonlinear model for controlled drug release: Travelling wave fronts
title_short Stability analysis and analytical solution of a nonlinear model for controlled drug release: Travelling wave fronts
title_full Stability analysis and analytical solution of a nonlinear model for controlled drug release: Travelling wave fronts
title_fullStr Stability analysis and analytical solution of a nonlinear model for controlled drug release: Travelling wave fronts
title_full_unstemmed Stability analysis and analytical solution of a nonlinear model for controlled drug release: Travelling wave fronts
title_sort stability analysis and analytical solution of a nonlinear model for controlled drug release: travelling wave fronts
publishDate 2018
url https://repository.li.mahidol.ac.th/handle/123456789/14015
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