Litcius/Paper detail

Optimized hydration dynamics in mucoadhesive xanthan-based trilayer vaginal films for the controlled release of tenofovir

Araceli Martín-Illana, Eva Chinarro, Raúl Cazorla-Luna, Fernando Notario-Pérez, María Dolores Veiga-Ochoa, J. Rubio, Aitana Tamayo

2021Carbohydrate Polymers38 citationsDOIOpen Access PDF

Abstract

Karaya gum, pectin and xanthan gum have been tested as candidates for manufacturing mucoadhesive trilayer films containing ethylcellulose and chitosan for the vaginal administration of the antiviral Tenofovir (TFV). The swelling profile correlated with the amount of mobile dipoles determined by impedance spectroscopy allows the determination of the hydration dynamics of these films. The fast water penetration has been demonstrated to favor the formation of polyelectrolyte complexes (PEC) via hydrogen or ionic bonds which would favor a controlled release. The incorporation of an inorganic drug release regulator induces the weakness of the polymeric chains thus enhancing the ionic mobility via the formation of low molecular weight PECs in films manufactured with karaya gum. Due to the different mechanical properties of the individual components, pectin-based films failed for a potential pharmaceutical formulation. However, mucoadhesive trilayer films produced with xanthan gum have demonstrated a moderate swelling, improved wettability and a controlled release of TFV.

Topics & Concepts

Xanthan gumSwellingChemical engineeringMucoadhesionChemistryHydrogen bondPermeationWettingMaterials sciencePolyelectrolytePolymer chemistryPectinIonic bondingDrug deliveryPolymerOrganic chemistryDrug carrierComposite materialMembraneIonRheologyMoleculeEngineeringBiochemistryAdvanced Drug Delivery SystemsOcular Surface and Contact LensSurfactants and Colloidal Systems