Abstract
Invasive fungal infections (IFIs) represent a critical health threat, particularly among immunocompromised individuals, with mortality rates reaching up to 50%. The growing resistance to existing antifungal therapies necessitates the development of novel agents. Here, we rationally designed phenylthiazole-based oxadiazole derivatives to enhance selectivity and potency against resistant fungal strains. Among the tested compounds, compound 35 (which emerged as a lead candidate) demonstrated potent activity against Candida albicans (MIC = 1-2 μg mL−1), Candida glabrata (MIC = 0.5-1 μg mL−1), and multidrug-resistant Candida auris (MIC = 2-4 μg mL−1), outperforming fluconazole and matching amphotericin B. Additionally, compound 35 showed minimal cytotoxicity (88% cell viability at 16 μg mL−1) and negligible hemolytic activity, indicating a superior safety profile.
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CITATION STYLE
Hagras, M., Ezzat, H. G., Abuelkhir, A. A., & Mayhoub, A. S. (2025). Repurposing the phenylthiazole scaffold with 1,3,4-oxadiazole for selective, potent and well-tolerated antifungal activity. RSC Advances, 15(12), 9305–9319. https://doi.org/10.1039/d5ra00499c
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