Literature DB >> 21374625

Reduction of bitterness of antihistaminic drugs by complexation with β-cyclodextrins.

Nao Ono1, Yuji Miyamoto, Takako Ishiguro, Keiichi Motoyama, Fumitoshi Hirayama, Daisuke Iohara, Hakaru Seo, Satoshi Tsuruta, Hidetoshi Arima, Kaneto Uekama.   

Abstract

Reduction of bitterness of antihistaminic drugs by cyclodextrin (CyD) complexation was examined. The stability constant (Kc) of the 1:1 CyD inclusion complexes with antihistaminic drugs increased in the order of 2-hydroxypropyl-β-CyD (HP-β-CyD) ≈ β-CyD > γ-CyD > α-CyD for diphenhydramine and epinastine, and HP-β-CyD ≈ β-CyD > α-CyD > γ-CyD for hydroxyzine, cetirizine, and dl-chlorpheniramine. The inclusion complexes inhibited the adsorption of antihistaminic drugs to lipid membrane using liposomes, as the magnitude of Kc increased. From human gustatory sensation tests, β-CyD and HP-β-CyD potently suppressed the bitterness of antihistaminic drugs in a dose-dependent manner. Further, an artificial taste sensor analysis revealed that β-CyD and HP-β-CyD inhibited the bitterness of antihistaminic drugs in solution. The results suggest that CyDs suppress the bitterness of antihistaminic drugs in solutions through the formation of inclusion complexes. These results may provide useful information for masking or elimination of bitterness of drugs using CyDs.
Copyright © 2010 Wiley-Liss, Inc.

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Year:  2010        PMID: 21374625     DOI: 10.1002/jps.22417

Source DB:  PubMed          Journal:  J Pharm Sci        ISSN: 0022-3549            Impact factor:   3.534


  7 in total

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2.  In Vivo Investigation of (2-Hydroxypropyl)-β-cyclodextrin-Based Formulation of Spironolactone in Aqueous Solution for Paediatric Use.

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Review 3.  Physical approaches to masking bitter taste: lessons from food and pharmaceuticals.

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4.  Inclusion complexes of trihexyphenidyl with natural and modified cyclodextrins.

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5.  A Novel Method to Mask the Bitter Taste of Berberine Hydrochloride: Powder Surface Modification.

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6.  Taste-masking assessment of orally disintegrating tablets and lyophilisates with cetirizine dihydrochloride microparticles.

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Authors:  Heba A Abou-Taleb; Wesam W Mustafa; Tarek Saad Makram; Lamiaa N Abdelaty; Hesham Salem; Hamdy Abdelkader
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  7 in total

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