Evaluation of polyvinyl alcohols as mucoadhesive polymers for mucoadhesive buccal tablets prepared by direct compression

Drug Dev Ind Pharm. 2017 Sep;43(9):1489-1500. doi: 10.1080/03639045.2017.1321657. Epub 2017 May 5.

Abstract

The purpose of the present work was to evaluate polyvinyl alcohols (PVAs) as a mucoadhesive polymer for mucoadhesive buccal tablets prepared by direct compression. Various polymerization degree and particle diameter PVAs were investigated for their usability. The tensile strength, in vitro adhesive force, and water absorption properties of the tablets were determined to compare the various PVAs. The highest values of the tensile strength and the in vitro adhesive force were observed for PVAs with a medium viscosity and small particle size. The optimal PVA was identified by a factorial design analysis. Mucoadhesive tablets containing the optimal PVA were compared with carboxyvinyl polymer and hydroxypropyl cellulose formulations. The optimal PVA gives a high adhesive force, has a low viscosity, and resulted in relatively rapid drug release. Formulations containing carboxyvinyl polymer had high tensile strengths but short disintegration times. Higher hydroxypropyl cellulose concentration formulations had good adhesion forces and very long disintegration times. We identified the optimal characteristics of PVA, and the usefulness of mucoadhesive buccal tablets containing this PVA was suggested from their formulation properties.

Keywords: Mucosal delivery; buccal; formulation; indomethacin; mucoadhesive polymer; polyvinyl alcohol.

MeSH terms

  • Adhesives / chemistry*
  • Administration, Buccal
  • Cellulose / analogs & derivatives*
  • Cellulose / chemistry
  • Chemistry, Pharmaceutical
  • Drug Liberation
  • Mouth Mucosa / chemistry*
  • Polymers / chemistry
  • Polyvinyl Alcohol / chemistry*
  • Polyvinyl Alcohol / metabolism*
  • Tablets / chemistry*
  • Tablets / metabolism
  • Tensile Strength

Substances

  • Adhesives
  • Polymers
  • Tablets
  • Polyvinyl Alcohol
  • Cellulose
  • hydroxypropylcellulose