In-vitro Bioadhesion of a Buccal, Miconazole Slow-release Tablet

Author:

Bouckaert Stefan1,Remon Jean-Paul1

Affiliation:

1. Laboratory of Pharmaceutical Technology, University of Ghent, Harelbekestraat 72, B-9000 Ghent, Belgium

Abstract

Abstract The bioadhesive characteristics of thermally modified starch/polyacrylic acid (PAA) tablets, containing miconazole nitrate, were determined. The detachment force and work of adhesion were significantly affected by the ratio of drum-dried waxy maize starch and PAA. Pure PAA showed the highest detachment force and work of adhesion while the lowest force and work of adhesion were observed for pure starch. There was a pronounced effect of molecular weight of PAA on the bioadhesive characteristics. Miconazole nitrate did not influence bioadhesion up to a concentration of 30%. The influence of additives was negligible and fluctuations of pH did not influence the bioadhesive strength of the tablet.

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

Reference24 articles.

1. The prevalence and intraoral distribution of Candida albicans in man;Arendorf;Arch. Oral. Biol.,1980

2. Bioadhesion of fluoride-containing slow-release tablets on porcine oral mucosa in vitro;Bottenberg;S.T.P. Pharma,1989

3. Development and testing of bioadhesive, fluoride-containing slow-release tablets for oral use;Bottenberg;J. Pharm. Pharmacol.,1991

4. Comparison of salivary miconazole concentrations after administration of a bioadhesive slow-release buccal tablet and an oral gel;Bouckaert;Eur. J. Clin. Pharmacol.,1992

5. Compositions producing adhesion through hydration;Chen,1970

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