Econazole imprinted textiles with antifungal activity

Mirza Akram Hossain,Augustine Lalloz, Aicha Benhaddou,Fabrice Pagniez, Martine Raymond,Patrice Le Pape, Pierre Simard, Karine Théberge,Jeanne Leblond

European Journal of Pharmaceutics and Biopharmaceutics(2016)

引用 7|浏览5
暂无评分
摘要
In this work, we propose pharmaceutical textiles imprinted with lipid microparticles of Econazole nitrate (ECN) as a mean to improve patient compliance while maintaining drug activity. Lipid microparticles were prepared and characterized by laser diffraction (3.5±0.1μm). Using an optimized screen-printing method, microparticles were deposited on textiles, as observed by scanning electron microscopy. The drug content of textiles (97±3μg/cm2) was reproducible and stable up to 4months storage at 25°C/65% Relative Humidity. Imprinted textiles exhibited a thermosensitive behavior, as witnessed by a fusion temperature of 34.8°C, which enabled a larger drug release at 32°C (temperature of the skin) than at room temperature. In vitro antifungal activity of ECN textiles was compared to commercial 1% (wt/wt) ECN cream Pevaryl®. ECN textiles maintained their antifungal activity against a broad range of Candida species as well as major dermatophyte species. In vivo, ECN textiles also preserved the antifungal efficacy of ECN on cutaneous candidiasis infection in mice. Ex vivo percutaneous absorption studies demonstrated that ECN released from pharmaceutical textiles concentrated more in the upper skin layers, where the fungal infections develop, as compared to dermal absorption of Pevaryl®. Overall, these results showed that this technology is promising to develop pharmaceutical garments textiles for the treatment of superficial fungal infections.
更多
查看译文
关键词
Econazole nitrate,Fungal infection,Topical administration,Thermo-responsive formulation,Lipid microparticles,Candida
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要