Antibiotics (Aug 2024)

Combinatory Use of hLF(1-11), a Synthetic Peptide Derived from Human Lactoferrin, and Fluconazole/Amphotericin B against <i>Malassezia furfur</i> Reveals a Synergistic/Additive Antifungal Effect

  • Carlo P. J. M. Brouwer,
  • Bart Theelen,
  • Youp van der Linden,
  • Nick Sarink,
  • Mahfuzur Rahman,
  • Saleh Alwasel,
  • Claudia Cafarchia,
  • Mick M. Welling,
  • Teun Boekhout

DOI
https://doi.org/10.3390/antibiotics13080790
Journal volume & issue
Vol. 13, no. 8
p. 790

Abstract

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Objective: The increasing resistance of Malassezia yeasts against commonly used antifungal drugs dictates the need for novel antifungal compounds. Human lactoferrin-based peptides show a broad spectrum of antimicrobial activities. Various assays were performed to find the optimal growth conditions of the yeasts and to assess cell viability, using media with low lipid content to avoid peptide binding to medium components. Methods: In the current study, we tested the antimicrobial susceptibility of 30 strains of M. furfur that cover the known IGS1 genotypic variation. Results: hLF(1-11) inhibited the growth of all species tested, resulting in minimum inhibitory concentrations (MIC) values ranging from 12.5 to 100 μg/mL. In the combinatory tests, the majority of fractional inhibitory concentration indexes (FIC) for the tested strains of M. furfur were up to 1.0, showing that there is a synergistic or additive effect on the efficacy of the antifungal drugs when used in combination with hLF(1-11). Conclusion: Results showed that hLF(1-11) could be combined with fluconazole or amphotericin for the antimicrobial treatment of resistant strains, enhancing the potency of these antifungal drugs, resulting in an improved outcome for the patient.

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