Combination of Solvent Displacement and Wet Ball Milling Techniques for Size Reduction of Celecoxib

Background: The objective of the present study was to investigate the combinative effect of ball milling and solvent displacement method on size reduction of Celecoxib particles. Celecoxib is a poorly water soluble cyclooxygenase 2 inhibitor which has a wide range of therapeutic applicability. Metho...

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Main Author: Shadi Yaqoubi, Mohammad Barzegar Jalali, Khosro Adibkia, Hamed Hamishehkar
Format: Article
Language:English
Published: Tabriz University of Medical Sciences 2016-03-01
Series:Pharmaceutical Sciences
Online Access:http://journals.tbzmed.ac.ir/PHARM/Abstract/PHARM_827_20150912180525
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spelling doaj-73dbef69ec774b6cbc22b484cf7bc34e2021-02-02T04:55:35ZengTabriz University of Medical SciencesPharmaceutical Sciences2383-28862383-28862016-03-01221222710.15171/PS.2016.05Combination of Solvent Displacement and Wet Ball Milling Techniques for Size Reduction of Celecoxib Shadi Yaqoubi, Mohammad Barzegar Jalali, Khosro Adibkia, Hamed HamishehkarBackground: The objective of the present study was to investigate the combinative effect of ball milling and solvent displacement method on size reduction of Celecoxib particles. Celecoxib is a poorly water soluble cyclooxygenase 2 inhibitor which has a wide range of therapeutic applicability. Methods: Microparticles were developed via solvent displacement method followed by planetary ball milling. In order to obtain an optimized size and size distribution of Celecoxib microparticles various factors were evaluated; the role of solvent type, type and concentration of stabilizer, milling effect, and the effect of milling duration were the most important factors studied during the present investigation. Results: All the obtained formulations were in micron range that the smallest particles had the size of 1.76 μm and the formulation containing the largest particles was of 8.30 μm by volume mean diameter. Both solvent displacement and milling methods are common and potential approaches in order to formulate micron scaled particles. Conclusion: The combination of these two methods generates a synergistic effect which leads to smaller particle size and a narrow size distribution. Celecoxib microparticles have the potential to use as promising delivery systems to treat various disease and malignancies. http://journals.tbzmed.ac.ir/PHARM/Abstract/PHARM_827_20150912180525
collection DOAJ
language English
format Article
sources DOAJ
author Shadi Yaqoubi, Mohammad Barzegar Jalali, Khosro Adibkia, Hamed Hamishehkar
spellingShingle Shadi Yaqoubi, Mohammad Barzegar Jalali, Khosro Adibkia, Hamed Hamishehkar
Combination of Solvent Displacement and Wet Ball Milling Techniques for Size Reduction of Celecoxib
Pharmaceutical Sciences
author_facet Shadi Yaqoubi, Mohammad Barzegar Jalali, Khosro Adibkia, Hamed Hamishehkar
author_sort Shadi Yaqoubi, Mohammad Barzegar Jalali, Khosro Adibkia, Hamed Hamishehkar
title Combination of Solvent Displacement and Wet Ball Milling Techniques for Size Reduction of Celecoxib
title_short Combination of Solvent Displacement and Wet Ball Milling Techniques for Size Reduction of Celecoxib
title_full Combination of Solvent Displacement and Wet Ball Milling Techniques for Size Reduction of Celecoxib
title_fullStr Combination of Solvent Displacement and Wet Ball Milling Techniques for Size Reduction of Celecoxib
title_full_unstemmed Combination of Solvent Displacement and Wet Ball Milling Techniques for Size Reduction of Celecoxib
title_sort combination of solvent displacement and wet ball milling techniques for size reduction of celecoxib
publisher Tabriz University of Medical Sciences
series Pharmaceutical Sciences
issn 2383-2886
2383-2886
publishDate 2016-03-01
description Background: The objective of the present study was to investigate the combinative effect of ball milling and solvent displacement method on size reduction of Celecoxib particles. Celecoxib is a poorly water soluble cyclooxygenase 2 inhibitor which has a wide range of therapeutic applicability. Methods: Microparticles were developed via solvent displacement method followed by planetary ball milling. In order to obtain an optimized size and size distribution of Celecoxib microparticles various factors were evaluated; the role of solvent type, type and concentration of stabilizer, milling effect, and the effect of milling duration were the most important factors studied during the present investigation. Results: All the obtained formulations were in micron range that the smallest particles had the size of 1.76 μm and the formulation containing the largest particles was of 8.30 μm by volume mean diameter. Both solvent displacement and milling methods are common and potential approaches in order to formulate micron scaled particles. Conclusion: The combination of these two methods generates a synergistic effect which leads to smaller particle size and a narrow size distribution. Celecoxib microparticles have the potential to use as promising delivery systems to treat various disease and malignancies.
url http://journals.tbzmed.ac.ir/PHARM/Abstract/PHARM_827_20150912180525
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