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Published on: February 14, 2018
Unveiling the Potential of Magainin Derivatives against Candida Species
Tianmeng Zhang1, Jinxin Zhao2, Praveen Praveen1
1Department of Biochemistry and Chemistry, La Trobe Institute for Molecular Science, La Trobe University, Bundoora, MelbourneVictoria3086, Australia.
Abstract:
The increasing antifungal resistance, including Candida albicans resistance, highlights the urgent need for novel antifungal agents. Antimicrobial peptides are promising alternative antimicrobial agents, but most work focuses on antibacterial studies, including Magainin II and its derivative Pexiganan (MSI-78). Here, we evaluated a Pexiganan peptide library and identified MSI-78 (4-20) as a lead-hit antifungal agent against multiple Candida species, including fluconazole-resistant C. auris isolates. Importantly, it improved survival and reduced fungal burden in C. albicans-infected Galleria mellonella, suppressing phenoloxidase activity and melanization. Mechanistically, it entered cells at 16 μg/mL with limited membrane damage, whereas 32 μg/mL caused membrane disruption and intracellular leakage. Transcriptomics revealed activation of stress-response and cell-surface remodeling, with repression of carbon metabolism and respiration. These findings indicate a concentration-dependent mixed mode of action combining metabolic stress at lower exposure and membrane disruption at higher concentrations. MSI-78 (4-20) therefore represents a magainin-derived scaffold for antifungal development.
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