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Treatment of skin infection by dermatophytes is still limited, and the application of conventional topical formulations (ointments, creams, etc.) cause patient discomfort due to repeated administration and low efficacy. This study describes the film-forming system (FFS) hybridized with econazole (ECO)-loaded nanostructured lipid carriers (NLC) for enhanced antifungal activity against dermatophytes. We assumed that the application of NLC could effectively increase the skin permeability of ECO, thereby suppressing the growth of dermatophytes in stratum corneum as well as in epidermis. Meanwhile, ECO-NLC hybrid FFS (ECO-NLC@FFS) could increase the adhesion of ECO-NLC to the skin and prolong the antifungal activity of ECO. First, we optimized ECO-NLC, which shows nanosized particle (199 nm), high encapsulation efficiency (92.5%), and biocompatibility. ECO-NLC@FFS formed a transparent, homogeneous, and hard-to-remove film after topical application. In vitro skin permeation and deposition studies demonstrated that ECO-NLC@FFS showed 1.5-fold higher skin permeation and 3-fold higher ECO deposition in the epidermis layer than a commercial product, which resulted from the nanosized particle and its occlusion effect. And, ex vivo and in vivo antifungal activity studies confirmed that ECO-NLC@FFS improved the skin adhesion of ECO-NLC, thereby allowing ECO to be continuously exposed to the infection sited and reducing the number of applications with a single dose. These results showed that this hybrid system could be a potential for effectively improving the efficacy of antifungal agents and the patient compliance in the treatment of dermatophytes. STATEMENT OF SIGNIFICANCE: Treatment of skin infection by dermatophytes is difficult due to the inconvenience and low efficacy of conventional topical formulations. Here, we demonstrated the potential of a film-forming system (FFS) hybridized with nanostructured lipid carriers (NLC). First, we confirmed that the enhanced skin permeability of drug was improved by NLC. In addition, the hybridization of NLC with FFS improved the skin adhesion of NLC, allowing the drug to exhibit a sustained release profile and prolong antifungal activity. Given the maximized antifungal activity, this hybrid system can be used as a potential pharmaceutical technique to improve patient convenience and achieve complete treatment of skin infection.
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http://dx.doi.org/10.1016/j.actbio.2019.10.024 | DOI Listing |
Fundam Clin Pharmacol
October 2025
Postgraduate Program in Pharmaceutical Science, Federal University of Juiz de Fora, Juiz de Fora, Minas Gerais, Brazil.
This review highlights the integration of drug repurposing and nanotechnology-driven delivery strategies as innovative approaches to enhance the antifungal activity of statins against mucosal candidiasis, providing a framework for future translational research and clinical application. The rising prevalence of antifungal resistance and virulence factors of Candida albicans underscore the limitations of current therapies. Statins, commonly used as lipid-lowering agents, have emerged as attractive repurposed drug candidates due to their ability to interfere with fungal ergosterol biosynthesis and Ras-mediated signaling pathways.
View Article and Find Full Text PDFRev Argent Microbiol
September 2025
Universidad de Buenos Aires, CONICET, Instituto de Investigaciones en Microbiología y Parasitología Médica (IMPaM), Buenos Aires, Argentina. Electronic address:
Infections caused by the genus Candida have acquired considerable significance in recent years due to the enhanced susceptibility of immunocompromised hosts. There have been increasing reports of multidrug resistance (MDR) in several Candida species, posing a major hurdle to antifungal therapy. Accordingly, exploring and developing novel anti-Candida agents has become a priority.
View Article and Find Full Text PDFPhytochemistry
September 2025
Plant Protection Institute, HUN-REN Centre for Agricultural Research, Fehérvári út 132-144, 1116 Budapest, Hungary. Electronic address:
The demand for previously undescribed antimicrobial agents is increasing due to the emergence of resistant plant pathogens. One of the untapped sources of new biopesticides is the plant kingdom. A bioassay-guided process comprising TLC-Bacillus subtilis bioassay, TLC-MS, and preparative flash column chromatography enabled the isolation of five previously undescribed antimicrobial labdane diterpenes (graminifolins A-E, 1-5) from the flower extract of grass-leaved goldenrod (Euthamia graminifolia, formerly Solidago graminifolia).
View Article and Find Full Text PDFBioorg Med Chem
September 2025
Universidade Federal Fluminense, Instituto de Química, Niterói, RJ,CEP 24020-141, Brazil. Electronic address:
Invasive Candidiasis infections are a clinical challenge, with limited effective therapeutic agents and increasing resistance. The discovery of new antifungal agents is urgently required. Here, we developed a new series of 2-methyl-1,4-naphthoquinone (Menadione) Tethered to 1H-1,2,3-triazolyl-selenoester in good yields, which exhibit antifungal potential activity against Candida species.
View Article and Find Full Text PDFFEMS Microbiol Lett
September 2025
Protein Technology Research Center, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Arthrospira platensis (Spirulina) is one the highly valuable cyanobacteria in food and pharmaceutical industry. The intracellular and extracellular polysaccharide (PS) extracts of A. platensis have been exhibited different biological functions.
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