Topical film-forming solutions (FFSs) show considerable potential for dermal delivery of an API. Through a mechanism of in situ film formation upon solvent evaporation, they may improve skin delivery by prolonging substantivity on the skin, by establishing a transient supersaturation, and/or by enhancing solubility through the formation of a solid dispersion in the resulting film. This work aimed at developing an FFS for topical application with enhanced skin delivery. The tested FFSs were composed of the lipophilic retinoid tazarotene and the hydrophobic polyamide-3 polymers. The residual films cast from FFSs were examined by DSC and their release mechanism was investigated. Additionally, ex vivo skin penetration of tazarotene was explored. In comparison to a physical mixture, the glass transition (T) was significantly increased (p < 0.01) in in-situ generated polyamide-3 (11,500 Da)/tazarotene films with ratios 5:1 and 10:1, indicating a molecular distribution of tazarotene within the polymer. Stress testing at 32°C and 40°C further indicated that these films were kinetically stabilized for at least two weeks. Tazarotene release from solid solution films was notably increased as compared to the crystalline and the amorphous tazarotene. A ten-times higher skin penetration of the ratio 10:1 film (containing 0.1% tazarotene) was observed as compared to a commercial 0.1% tazarotene cream. Hence, topical solid solutions may represent an option for improved dermal API delivery.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.xphs.2022.04.006 | DOI Listing |
J Biomater Sci Polym Ed
December 2024
Department of Pharmaceutics, Dr. Prabhakar B Kore Basic Science Research Center, Off-campus, KLE College of Pharmacy (A constituent unit of KAHER-Belagavi), Bengaluru, Karnataka, India.
Zaltoprofen (ZAL) is a non-steroidal anti-inflammatory drug (NSAID) with a short half-life (∼2.8 h) due to extensive first pass metabolism. In this context, 16 different polymeric film forming solutions (PFFS) of ZAL were developed using different grades of Eudragits, Polyvinylpyrrolidones, Kollicoat MAE 100 P and Hydroxypropyl cellulose as film formers, and polyethylene glycol 400 as a plasticizer in equal parts of ethanol and isopropyl alcohol used as solvents.
View Article and Find Full Text PDFJ Mycol Med
December 2024
Chitkara College of Pharmacy, Chitkara University, Punjab, 140401, India. Electronic address:
Introduction: Onychomycosis (Paronychia) is a common fungal nail infection, characterised by thickened, discoloured and brittle nails often accompanied by pain and discomfort. It is one of the most prevalent fungal nail infections with the global incidence of >20 % affected commonly by Candida albicans and Candida parapsilosis. The market today is flooded with various antifungal therapies (Azoles, Imidazoles, Allylamines, etc.
View Article and Find Full Text PDFAAPS PharmSciTech
November 2024
Facultad de Química, Universidad Autónoma del Estado de México, 50120, Toluca, Estado de México, Mexico.
Drug delivery through the skin is a widely used therapeutic method for the treatment of local dermatologic conditions. Dermal and transdermal methods of drug delivery offer numerous advantages, but some of the most important aspects of drug absorption through the skin need to be considered. Film-forming systems (FFS) represent a new mode of sustained drug delivery that can be used to replace traditional topical formulations such as creams, ointments, pastes, or patches.
View Article and Find Full Text PDFPharmaceutics
October 2024
Department of Pharmacy, University of Genova, 16148 Genova, Italy.
Background/objectives: Oral diseases causing mucosal lesions are normally treated with local or systemic anti-inflammatory, analgesic and antimicrobial agents. The development of topical formulations, including wound-healing promoters, might speed up the recovery process, improving patients' quality of life, and reduce the risk of deterioration in health conditions. In this study, a mucoadhesive multilayer film, including a novel biocompatible substance (solubilized eggshell membrane, SESM), was rationally designed.
View Article and Find Full Text PDFPharmaceutics
October 2024
Laboratory of Preclinical Research of Natural Products, Paranaense University (UNIPAR), Umuarama 87502-210, Brazil.
Background/objectives: Considering the antioxidant and antimicrobial properties attributed to compounds in extract, this research aimed to advance postoperative therapeutic innovations. Specifically, the study assessed the physicochemical properties of a film-forming solution (FFS) incorporated with , evaluating its therapeutic potential for postoperative applications.
Methods: The extract was meticulously characterized to determine its chemical composition, with particular emphasis on the concentration of phenolic compounds.
Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!