Controlled Release of Ibuprofen by Using Morphologically Modified Mesoporous Silica

The synthesis of mesoporous silica with variable pore sizes was carried out for the purpose of controlled drug release study. Mesoporous silica containing three-dimensional cagelike structures was prepared by the simple hydrothermal method using triblock copolymer Pluronic F-127 as the template and...

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Main Authors: Sana Ahmad, Javariah Javaid, Wajeeha Fatima
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2022/6376915
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author Sana Ahmad
Javariah Javaid
Wajeeha Fatima
author_facet Sana Ahmad
Javariah Javaid
Wajeeha Fatima
author_sort Sana Ahmad
collection DOAJ
description The synthesis of mesoporous silica with variable pore sizes was carried out for the purpose of controlled drug release study. Mesoporous silica containing three-dimensional cagelike structures was prepared by the simple hydrothermal method using triblock copolymer Pluronic F-127 as the template and tetraethyl orthosilicate (TEOS) as a silica source. The synthesized samples of plain and modified mesoporous silica were compared to measure the drug release ability of ibuprofen. The effect of cosurfactants, temperature, and different salts on the pore structure of the materials were also observed. The surface property enhancement of mesoporous silica was contributed by controlling its pore morphology. The materials were characterized by FT-IR, SEM, TGA, and UV-Visible spectroscopy and later used for the ibuprofen release study. The results indicated that the modified mesoporous silica with increased pore diameter showed increased storage capacity and high pH-responsive release behavior as compared to the plain mesoporous silica.
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institution Kabale University
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publishDate 2022-01-01
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spelling doaj-art-fb26e3d7e4e74882923fd77a450f7b8e2025-02-03T05:53:50ZengWileyAdvances in Materials Science and Engineering1687-84422022-01-01202210.1155/2022/6376915Controlled Release of Ibuprofen by Using Morphologically Modified Mesoporous SilicaSana Ahmad0Javariah Javaid1Wajeeha Fatima2Lahore College for Women UniversityLahore College for Women UniversityLahore College for Women UniversityThe synthesis of mesoporous silica with variable pore sizes was carried out for the purpose of controlled drug release study. Mesoporous silica containing three-dimensional cagelike structures was prepared by the simple hydrothermal method using triblock copolymer Pluronic F-127 as the template and tetraethyl orthosilicate (TEOS) as a silica source. The synthesized samples of plain and modified mesoporous silica were compared to measure the drug release ability of ibuprofen. The effect of cosurfactants, temperature, and different salts on the pore structure of the materials were also observed. The surface property enhancement of mesoporous silica was contributed by controlling its pore morphology. The materials were characterized by FT-IR, SEM, TGA, and UV-Visible spectroscopy and later used for the ibuprofen release study. The results indicated that the modified mesoporous silica with increased pore diameter showed increased storage capacity and high pH-responsive release behavior as compared to the plain mesoporous silica.http://dx.doi.org/10.1155/2022/6376915
spellingShingle Sana Ahmad
Javariah Javaid
Wajeeha Fatima
Controlled Release of Ibuprofen by Using Morphologically Modified Mesoporous Silica
Advances in Materials Science and Engineering
title Controlled Release of Ibuprofen by Using Morphologically Modified Mesoporous Silica
title_full Controlled Release of Ibuprofen by Using Morphologically Modified Mesoporous Silica
title_fullStr Controlled Release of Ibuprofen by Using Morphologically Modified Mesoporous Silica
title_full_unstemmed Controlled Release of Ibuprofen by Using Morphologically Modified Mesoporous Silica
title_short Controlled Release of Ibuprofen by Using Morphologically Modified Mesoporous Silica
title_sort controlled release of ibuprofen by using morphologically modified mesoporous silica
url http://dx.doi.org/10.1155/2022/6376915
work_keys_str_mv AT sanaahmad controlledreleaseofibuprofenbyusingmorphologicallymodifiedmesoporoussilica
AT javariahjavaid controlledreleaseofibuprofenbyusingmorphologicallymodifiedmesoporoussilica
AT wajeehafatima controlledreleaseofibuprofenbyusingmorphologicallymodifiedmesoporoussilica