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Controlled-release formulation of antihistamine based on cetirizine zinc-layered hydroxide nanocomposites and its effect on histamine release from basophilic leukemia (RBL-2H3) cells

Authors Hussein-Al-Ali S , Al-Qubaisi MS , Hussein MZ, Ismail M, Zainal Z, Hakim M

Received 12 February 2012

Accepted for publication 9 March 2012

Published 3 July 2012 Volume 2012:7 Pages 3351—3363

DOI https://doi.org/10.2147/IJN.S30809

Review by Single anonymous peer review

Peer reviewer comments 2



Samer Hasan Hussein Al Ali,1 Mothanna Al-Qubaisi,2 Mohd Zobir Hussein,1,3 Maznah Ismail,2,4 Zulkarnain Zainal,1 Muhammad Nazrul Hakim5

1Department of Chemistry, Faculty of Science, 2Laboratory of Molecular Biomedicine, Institute of Bioscience, 3Advanced Materials and Nanotechnology Laboratory, Institute of Advanced Technology (ITMA), 4Department of Nutrition and Dietetics, Faculty of Medicine and Health Science, Universiti Putra, Malaysia; 5Department of Biomedical Science, Faculty of Medicine and Health Science, Universiti Putra Malaysia, Selangor, Malaysia

Abstract: A controlled-release formulation of an antihistamine, cetirizine, was synthesized using zinc-layered hydroxide as the host and cetirizine as the guest. The resulting well-ordered nanolayered structure, a cetirizine nanocomposite "CETN," had a basal spacing of 33.9 Å, averaged from six harmonics observed from X-ray diffraction. The guest, cetirizine, was arranged in a horizontal bilayer between the zinc-layered hydroxide (ZLH) inorganic interlayers. Fourier transform infrared spectroscopy studies indicated that the intercalation takes place without major change in the structure of the guest and that the thermal stability of the guest in the nanocomposites is markedly enhanced. The loading of the guest in the nanocomposites was estimated to be about 49.4% (w/w). The release study showed that about 96% of the guest could be released in 80 hours by phosphate buffer solution at pH 7.4 compared with about 97% in 73 hours at pH 4.8. It was found that release was governed by pseudo-second order kinetics. Release of histamine from rat basophilic leukemia cells was found to be more sensitive to the intercalated cetirizine in the CETN compared with its free counterpart, with inhibition of 56% and 29%, respectively, at 62.5 ng/mL. The cytotoxicity assay toward Chang liver cells line show the IC50 for CETN and ZLH are 617 and 670 µg/mL, respectively.

Keywords: cetirizine hydrochloric acid, nanocomposite, zinc-layered hydroxide, histamine release, rat basophilic leukemia (RBL-2H3) cells

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