31 citations
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January 2012 in “Skin Research and Technology” In this study, curcumin was successfully encapsulated in ethyl cellulose and its blend with methyl cellulose, enhancing its skin penetration efficacy through o/w and w/o lotions compared to water suspensions.
25 citations
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June 2011 in “International journal of pharmaceutics” This study found that polymeric nanoparticle suspensions can deliver poorly water-soluble drugs to hair follicles in animal models, suggesting a promising method for targeted topical treatments.
June 2026 in “International Journal of Drug Delivery Technology” This study developed EGCG-loaded nanohydrogels using ethyl cellulose and polyvinyl alcohol to enhance the stability and delivery of the hydrophilic drug in aloe vera gel, optimizing encapsulation efficiency and drug release properties.
January 2018 in “Refubium (Universitätsbibliothek der Freien Universität Berlin)” This study found that dexamethasone-loaded polymeric nanoparticles, particularly those combining ethyl cellulose with Eudragit® RS, may improve controlled release and penetration of corticosteroids into the skin and hair follicles compared to traditional methods.
This study found that encapsulating curcumin within specific polymers increased its oral bioavailability, photostability, and release in both mice and in vitro, compared to free curcumin.