The Influence of Temperature and Drug Concentrations Prednisolone in NIPAAm Copolymer

Controlled delivery systems would be more beneficial and ideal if the drug could be delivered with respond to external environmental change. It could be used to overcome the shortcomings of conventional dosage forms. Therefore, the correct amount of drug would be released upon the stimulation of suc...

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Main Authors: Setiyorini, Y., Lou, Xia, Pintowantoro, S.
Other Authors: Shigeo Hirose
Format: Journal Article
Published: Elsevier BV 2012
Online Access:http://hdl.handle.net/20.500.11937/39910
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author Setiyorini, Y.
Lou, Xia
Pintowantoro, S.
author2 Shigeo Hirose
author_facet Shigeo Hirose
Setiyorini, Y.
Lou, Xia
Pintowantoro, S.
author_sort Setiyorini, Y.
building Curtin Institutional Repository
collection Online Access
description Controlled delivery systems would be more beneficial and ideal if the drug could be delivered with respond to external environmental change. It could be used to overcome the shortcomings of conventional dosage forms. Therefore, the correct amount of drug would be released upon the stimulation of such a temperature and concentration change. The purpose of study is to investigate the influence of temperature and drug concentration from poly(2-hydroxyethyl methacrylate and N-isopropylacrylamide)/poly(HEMA-NIPAAm). The macroporous structure 5HEMA15NIPAAm was showed the most rapid responsiveness in swelling ratio, polymer volume fraction, swelling and deswelling kinetics. The high drug loading capacity was achieved at or below ambient temperature, whilst the release profile was revealed sustain release of conventional anti-inflammatory drug; prednisolone 21 hemisuccinate sodium salt. In general, drug loading capacity and drug diffusion kinetics are influence by the porosity of hydrogels, temperature, and drug concentration.
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institution Curtin University Malaysia
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publishDate 2012
publisher Elsevier BV
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spelling curtin-20.500.11937-399102023-02-07T08:01:21Z The Influence of Temperature and Drug Concentrations Prednisolone in NIPAAm Copolymer Setiyorini, Y. Lou, Xia Pintowantoro, S. Shigeo Hirose Edy Giri Rachman Putra Controlled delivery systems would be more beneficial and ideal if the drug could be delivered with respond to external environmental change. It could be used to overcome the shortcomings of conventional dosage forms. Therefore, the correct amount of drug would be released upon the stimulation of such a temperature and concentration change. The purpose of study is to investigate the influence of temperature and drug concentration from poly(2-hydroxyethyl methacrylate and N-isopropylacrylamide)/poly(HEMA-NIPAAm). The macroporous structure 5HEMA15NIPAAm was showed the most rapid responsiveness in swelling ratio, polymer volume fraction, swelling and deswelling kinetics. The high drug loading capacity was achieved at or below ambient temperature, whilst the release profile was revealed sustain release of conventional anti-inflammatory drug; prednisolone 21 hemisuccinate sodium salt. In general, drug loading capacity and drug diffusion kinetics are influence by the porosity of hydrogels, temperature, and drug concentration. 2012 Journal Article http://hdl.handle.net/20.500.11937/39910 10.1016/j.proche.2012.06.047 Elsevier BV fulltext
spellingShingle Setiyorini, Y.
Lou, Xia
Pintowantoro, S.
The Influence of Temperature and Drug Concentrations Prednisolone in NIPAAm Copolymer
title The Influence of Temperature and Drug Concentrations Prednisolone in NIPAAm Copolymer
title_full The Influence of Temperature and Drug Concentrations Prednisolone in NIPAAm Copolymer
title_fullStr The Influence of Temperature and Drug Concentrations Prednisolone in NIPAAm Copolymer
title_full_unstemmed The Influence of Temperature and Drug Concentrations Prednisolone in NIPAAm Copolymer
title_short The Influence of Temperature and Drug Concentrations Prednisolone in NIPAAm Copolymer
title_sort influence of temperature and drug concentrations prednisolone in nipaam copolymer
url http://hdl.handle.net/20.500.11937/39910