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Research Article

Deproteinized natural rubber film forming polymeric solutions for nicotine transdermal delivery

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Pages 1111-1121 | Received 24 Apr 2012, Accepted 10 Jun 2012, Published online: 13 Aug 2012
 

Abstract

Film forming polymeric solutions were prepared from DNRL blended with MC, PVA, or SAG, together with dibutylphthalate or glycerine used as plasticizers. These formulations were easily prepared by simple mixing. In a preliminary step, in situ films were prepared by solvent evaporation in a Petri-dish. Their mechanical and physicochemical properties were determined. The in vitro release and skin permeation of nicotine dissolved in these blended polymers were investigated by a modified Franz diffusion cell. The formulations had a white milky appearance, and were homogeneous and smooth in texture. Their pH was suitable for usage in skin contact. The mechanical property of in situ films depended on the ingredients but all compatible films were in an amorphous phase. The DNRL/PVA was shown to be the most suitable mixture to form completed films. The in vitro release and skin permeation studies demonstrated a biphasic release that provided an initial rapid release followed by a constant release rate that fitted the Higuchi’s model. Nicotine loaded DNRL/PVA series were selected for the stability test for 3 months. These formulations needed to be kept at 4°C in tight fitting containers. In conclusion, film forming polymeric solutions could be developed for transdermal nicotine delivery systems.

Acknowledgments

The authors thank Dr. Brian Hodgson for assistance with the English.

Declaration of interest

The authors would like to acknowledge the Prince of Songkla University, the Thailand Research Fund, and the Office of Commission on Higher Education, Ministry of Education (Grant No. MRG5180243) for financial support.

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