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Triple-component nanocomposite films prepared using a casting method: Its potential in drug delivery

The purpose of this study was to fabricate a triple-component nanocomposite system consisting of chitosan, polyethylene glycol (PEG), and drug for assessing the application of chitosan–PEG nanocomposites in drug delivery and also to assess the effect of different molecular weights of PEG on nanocomp...

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Autores principales: Gilani, Sadia, Mir, Sadullah, Masood, Momina, Khan, Abida Kalsoom, Rashid, Rehana, Azhar, Saira, Rasul, Akhtar, Ashraf, Muhammad Nadeem, Waqas, Muhammad Khurram, Murtaza, Ghulam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taiwan Food and Drug Administration 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9322216/
https://www.ncbi.nlm.nih.gov/pubmed/29567261
http://dx.doi.org/10.1016/j.jfda.2017.02.006
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author Gilani, Sadia
Mir, Sadullah
Masood, Momina
Khan, Abida Kalsoom
Rashid, Rehana
Azhar, Saira
Rasul, Akhtar
Ashraf, Muhammad Nadeem
Waqas, Muhammad Khurram
Murtaza, Ghulam
author_facet Gilani, Sadia
Mir, Sadullah
Masood, Momina
Khan, Abida Kalsoom
Rashid, Rehana
Azhar, Saira
Rasul, Akhtar
Ashraf, Muhammad Nadeem
Waqas, Muhammad Khurram
Murtaza, Ghulam
author_sort Gilani, Sadia
collection PubMed
description The purpose of this study was to fabricate a triple-component nanocomposite system consisting of chitosan, polyethylene glycol (PEG), and drug for assessing the application of chitosan–PEG nanocomposites in drug delivery and also to assess the effect of different molecular weights of PEG on nanocomposite characteristics. The casting/solvent evaporation method was used to prepare chitosan–PEG nanocomposite films incorporating piroxicam-β-cyclodextrin. In order to characterize the morphology and structure of nanocomposites, X-ray diffraction technique, scanning electron microscopy, thermogravimetric analysis, and Fourier transmission infrared spectroscopy were used. Drug content uniformity test, swelling studies, water content, erosion studies, dissolution studies, and anti-inflammatory activity were also performed. The permeation studies across rat skin were also performed on nanocomposite films using Franz diffusion cell. The release behavior of films was found to be sensitive to pH and ionic strength of release medium. The maximum swelling ratio and water content was found in HCl buffer pH 1.2 as compared to acetate buffer of pH 4.5 and phosphate buffer pH 7.4. The release rate constants obtained from kinetic modeling and flux values of ex vivo permeation studies showed that release of piroxicam-β-cyclodextrin increased with an increase in concentration of PEG. The formulation F10 containing 75% concentration of PEG showed the highest swelling ratio (3.42 ± 0.02) in HCl buffer pH 1.2, water content (47.89 ± 1.53%) in HCl buffer pH 1.2, maximum cumulative drug permeation through rat skin (2405.15 ± 10.97 μg/cm(2)) in phosphate buffer pH 7.4, and in vitro drug release (35.51 ± 0.26%) in sequential pH change mediums, and showed a significantly (p < 0.0001) higher anti-inflammatory effect (0.4 cm). It can be concluded from the results that film composition had a particular impact on drug release properties. The different molecular weights of PEG have a strong influence on swelling, drug release, and permeation rate. The developed films can act as successful drug delivery approach for localized drug delivery through the skin.
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spelling pubmed-93222162022-08-09 Triple-component nanocomposite films prepared using a casting method: Its potential in drug delivery Gilani, Sadia Mir, Sadullah Masood, Momina Khan, Abida Kalsoom Rashid, Rehana Azhar, Saira Rasul, Akhtar Ashraf, Muhammad Nadeem Waqas, Muhammad Khurram Murtaza, Ghulam J Food Drug Anal Original Article The purpose of this study was to fabricate a triple-component nanocomposite system consisting of chitosan, polyethylene glycol (PEG), and drug for assessing the application of chitosan–PEG nanocomposites in drug delivery and also to assess the effect of different molecular weights of PEG on nanocomposite characteristics. The casting/solvent evaporation method was used to prepare chitosan–PEG nanocomposite films incorporating piroxicam-β-cyclodextrin. In order to characterize the morphology and structure of nanocomposites, X-ray diffraction technique, scanning electron microscopy, thermogravimetric analysis, and Fourier transmission infrared spectroscopy were used. Drug content uniformity test, swelling studies, water content, erosion studies, dissolution studies, and anti-inflammatory activity were also performed. The permeation studies across rat skin were also performed on nanocomposite films using Franz diffusion cell. The release behavior of films was found to be sensitive to pH and ionic strength of release medium. The maximum swelling ratio and water content was found in HCl buffer pH 1.2 as compared to acetate buffer of pH 4.5 and phosphate buffer pH 7.4. The release rate constants obtained from kinetic modeling and flux values of ex vivo permeation studies showed that release of piroxicam-β-cyclodextrin increased with an increase in concentration of PEG. The formulation F10 containing 75% concentration of PEG showed the highest swelling ratio (3.42 ± 0.02) in HCl buffer pH 1.2, water content (47.89 ± 1.53%) in HCl buffer pH 1.2, maximum cumulative drug permeation through rat skin (2405.15 ± 10.97 μg/cm(2)) in phosphate buffer pH 7.4, and in vitro drug release (35.51 ± 0.26%) in sequential pH change mediums, and showed a significantly (p < 0.0001) higher anti-inflammatory effect (0.4 cm). It can be concluded from the results that film composition had a particular impact on drug release properties. The different molecular weights of PEG have a strong influence on swelling, drug release, and permeation rate. The developed films can act as successful drug delivery approach for localized drug delivery through the skin. Taiwan Food and Drug Administration 2017-03-21 /pmc/articles/PMC9322216/ /pubmed/29567261 http://dx.doi.org/10.1016/j.jfda.2017.02.006 Text en © 2018 Taiwan Food and Drug Administration https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Original Article
Gilani, Sadia
Mir, Sadullah
Masood, Momina
Khan, Abida Kalsoom
Rashid, Rehana
Azhar, Saira
Rasul, Akhtar
Ashraf, Muhammad Nadeem
Waqas, Muhammad Khurram
Murtaza, Ghulam
Triple-component nanocomposite films prepared using a casting method: Its potential in drug delivery
title Triple-component nanocomposite films prepared using a casting method: Its potential in drug delivery
title_full Triple-component nanocomposite films prepared using a casting method: Its potential in drug delivery
title_fullStr Triple-component nanocomposite films prepared using a casting method: Its potential in drug delivery
title_full_unstemmed Triple-component nanocomposite films prepared using a casting method: Its potential in drug delivery
title_short Triple-component nanocomposite films prepared using a casting method: Its potential in drug delivery
title_sort triple-component nanocomposite films prepared using a casting method: its potential in drug delivery
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9322216/
https://www.ncbi.nlm.nih.gov/pubmed/29567261
http://dx.doi.org/10.1016/j.jfda.2017.02.006
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