4.7 Article

Cyclodextrin solubilization of the antibacterial agents triclosan and triclocarban:: Formation of aggregates and higher-order complexes

Journal

INTERNATIONAL JOURNAL OF PHARMACEUTICS
Volume 297, Issue 1-2, Pages 213-222

Publisher

ELSEVIER
DOI: 10.1016/j.ijpharm.2005.04.007

Keywords

cyclodextrins; inclusion complexes; antibacterial agents

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It is well known that water-soluble cyclodextrins form inclusion complexes with many lipophilic water-insoluble drugs and that such complexation frequently enhances the aqueous solubility of drugs. It is also well known that various excipients, such as water-soluble polymers, organic acids and bases and metal ions can enhance the solubilizing effects of cyclodextrins. However, it is not clear how these excipients enhance the effects. The effects of cyclodextrins, 2-hydroxypropyl-beta-cyclodextrin (HP beta CD) and randomly methylated beta-cyclodextrin (RM beta CD) on the aqueous solubility of triclosan and triclocarban were investigated. The phase-solubility profiles were all of type A(p) indicating formation of higher-order complexes or complex aggregates. Addition of lysine and other excipients enhanced the RM beta CD solubilization of triclocarban. NMR spectroscopic studies, including 2D ROESY and 1D gROESY techniques, indicated that HP beta CD and RM beta CD, as well as their complexes, form aggregates of two to three cyclodextrin molecules. The critical concentration for the aggregate formation was determined to be 5.4% (w/v). Lysine, polyvinylpyrrolidone and magnesium ions formed non-inclusion complexes resulting in formation of multiple-component cyclodextrin complexes in aqueous solutions with triclocarban. (c) 2005 Elsevier B.V. All rights reserved.

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