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In Vitro Inhibition of Histamine Release Behavior of Cetirizine Intercalated into Zn/Al- and Mg/Al-Layered Double Hydroxides

The intercalation of cetirizine into two types of layered double hydroxides, Zn/Al and Mg/Al, has been investigated by the ion exchange method to form CTZAN and CTMAN nanocomposites, respectively. The basal spacing of the nanocomposites were expanded to 31.9 Å for CTZAN and 31.2 Å for CTMAN, suggest...

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Autores principales: Hussein-Al-Ali, Samer Hasan, Al-Qubaisi, Mothanna, Hussein, Mohd Zobir, Ismail, Maznah, Zainal, Zulkarnain, Hakim, Muhammad Nazrul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382767/
https://www.ncbi.nlm.nih.gov/pubmed/22754339
http://dx.doi.org/10.3390/ijms13055899
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author Hussein-Al-Ali, Samer Hasan
Al-Qubaisi, Mothanna
Hussein, Mohd Zobir
Ismail, Maznah
Zainal, Zulkarnain
Hakim, Muhammad Nazrul
author_facet Hussein-Al-Ali, Samer Hasan
Al-Qubaisi, Mothanna
Hussein, Mohd Zobir
Ismail, Maznah
Zainal, Zulkarnain
Hakim, Muhammad Nazrul
author_sort Hussein-Al-Ali, Samer Hasan
collection PubMed
description The intercalation of cetirizine into two types of layered double hydroxides, Zn/Al and Mg/Al, has been investigated by the ion exchange method to form CTZAN and CTMAN nanocomposites, respectively. The basal spacing of the nanocomposites were expanded to 31.9 Å for CTZAN and 31.2 Å for CTMAN, suggesting that cetirizine anion was intercalated into Layered double hydroxides (LDHs) and arranged in a tilted bilayer fashion. A Fourier transform infrared spectroscopy (FTIR) study supported the formation of both the nanocomposites, and the intercalated cetirizine is thermally more stable than its counterpart in free state. The loading of cetirizine in the nanocomposite was estimated to be about 57.2% for CTZAN and 60.7% CTMAN. The cetirizine release from the nanocomposites show sustained release manner and the release rate of cetirizine from CTZAN and CTMAN nanocomposites at pH 7.4 is remarkably lower than that at pH 4.8, presumably due to the different release mechanism. The inhibition of histamine release from RBL2H3 cells by the free cetirizine is higher than the intercalated cetirizine both in CTZAN and CTMAN nanocomposites. The viability in human Chang liver cells at 1000 μg/mL for CTZAN and CTMAN nanocomposites are 74.5 and 91.9%, respectively.
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spelling pubmed-33827672012-06-29 In Vitro Inhibition of Histamine Release Behavior of Cetirizine Intercalated into Zn/Al- and Mg/Al-Layered Double Hydroxides Hussein-Al-Ali, Samer Hasan Al-Qubaisi, Mothanna Hussein, Mohd Zobir Ismail, Maznah Zainal, Zulkarnain Hakim, Muhammad Nazrul Int J Mol Sci Article The intercalation of cetirizine into two types of layered double hydroxides, Zn/Al and Mg/Al, has been investigated by the ion exchange method to form CTZAN and CTMAN nanocomposites, respectively. The basal spacing of the nanocomposites were expanded to 31.9 Å for CTZAN and 31.2 Å for CTMAN, suggesting that cetirizine anion was intercalated into Layered double hydroxides (LDHs) and arranged in a tilted bilayer fashion. A Fourier transform infrared spectroscopy (FTIR) study supported the formation of both the nanocomposites, and the intercalated cetirizine is thermally more stable than its counterpart in free state. The loading of cetirizine in the nanocomposite was estimated to be about 57.2% for CTZAN and 60.7% CTMAN. The cetirizine release from the nanocomposites show sustained release manner and the release rate of cetirizine from CTZAN and CTMAN nanocomposites at pH 7.4 is remarkably lower than that at pH 4.8, presumably due to the different release mechanism. The inhibition of histamine release from RBL2H3 cells by the free cetirizine is higher than the intercalated cetirizine both in CTZAN and CTMAN nanocomposites. The viability in human Chang liver cells at 1000 μg/mL for CTZAN and CTMAN nanocomposites are 74.5 and 91.9%, respectively. Molecular Diversity Preservation International (MDPI) 2012-05-16 /pmc/articles/PMC3382767/ /pubmed/22754339 http://dx.doi.org/10.3390/ijms13055899 Text en © 2012 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0 This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Hussein-Al-Ali, Samer Hasan
Al-Qubaisi, Mothanna
Hussein, Mohd Zobir
Ismail, Maznah
Zainal, Zulkarnain
Hakim, Muhammad Nazrul
In Vitro Inhibition of Histamine Release Behavior of Cetirizine Intercalated into Zn/Al- and Mg/Al-Layered Double Hydroxides
title In Vitro Inhibition of Histamine Release Behavior of Cetirizine Intercalated into Zn/Al- and Mg/Al-Layered Double Hydroxides
title_full In Vitro Inhibition of Histamine Release Behavior of Cetirizine Intercalated into Zn/Al- and Mg/Al-Layered Double Hydroxides
title_fullStr In Vitro Inhibition of Histamine Release Behavior of Cetirizine Intercalated into Zn/Al- and Mg/Al-Layered Double Hydroxides
title_full_unstemmed In Vitro Inhibition of Histamine Release Behavior of Cetirizine Intercalated into Zn/Al- and Mg/Al-Layered Double Hydroxides
title_short In Vitro Inhibition of Histamine Release Behavior of Cetirizine Intercalated into Zn/Al- and Mg/Al-Layered Double Hydroxides
title_sort in vitro inhibition of histamine release behavior of cetirizine intercalated into zn/al- and mg/al-layered double hydroxides
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382767/
https://www.ncbi.nlm.nih.gov/pubmed/22754339
http://dx.doi.org/10.3390/ijms13055899
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