| Literature DB >> 26076598 |
Federica Bigucci1, Angela Abruzzo2, Bruno Saladini3, Maria Caterina Gallucci4, Teresa Cerchiara5, Barbara Luppi6.
Abstract
The objective of this study was the development of chitosan/hyaluronan transdermal films to improve bioavailability of thiocolchicoside. This approach offers the possibility to elude the first-pass metabolism and at the same time it is able to provide a predictable and extended duration of activity. Films were prepared by casting and drying of aqueous solutions containing different weight ratios of chitosan and hyaluronan and characterized for their physico-chemical and functional properties. In accordance with polymeric composition of films and, therefore, with the amount of the net charge after the complexation, films containing the same weight ratio of chitosan and hyaluronan showed lower water uptake ability with respect to films containing only one polymeric species or an excess of chitosan or hyaluronan. Moreover, the lower the hydration of the polymeric network, the lower is the drug diffusion through the films and its permeation through the skin. This study clearly confirmed that the selection of a suitable polymeric weight ratio and appropriate preparative conditions allows the modulation of film functional properties, suggesting that these formulations could be used as a novel technological platform for transdermal drug delivery.Entities:
Keywords: Chitosan (PubMed CID: 71853); Chitosan/hyaluronan complexes; Hydrogels; Polymeric films; Sodium hyaluronate (PubMed CID: 3084049); Thiocolchicoside; Thiocolchicoside (PubMed CID 72067); Transdermal delivery
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Year: 2015 PMID: 26076598 DOI: 10.1016/j.carbpol.2015.04.067
Source DB: PubMed Journal: Carbohydr Polym ISSN: 0144-8617 Impact factor: 9.381