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Updated: Jun 26, 2025

Quantifying the Antifungal Activity of Peptides Against Candida albicans
Published on: January 13, 2023
Antifungal activity of human antimicrobial peptides targeting apoptosis in Candida auris
Siham Shaban1, Mrudula Patel1,2, Aijaz Ahmad1,3
1Department of Clinical Microbiology and Infectious Diseases, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, 2193, South Africa.
Abstract:
Introduction. Innovative antifungal therapies are of crucial importance to combat the potentially life-threatening infections linked to the multidrug-resistant fungal pathogen Candida auris. Induction of regulated cell death, apoptosis, could provide an outline for future therapeutics. Human antimicrobial peptides (AMPs), well-known antifungal compounds, have shown the ability to induce apoptosis in pathogenic fungi.Hypothesis/Gap Statement . Although it is known that AMPs possess antifungal activity against C. auris, their ability to induce apoptosis requires further investigations.Aim. This study evaluated the effects of AMPs on the induction of apoptosis in C. auris.Methods. Human neutrophil peptide-1 (HNP-1), human β-Defensins-3 (hBD-3) and human salivary histatin 5 (His 5) were assessed against two clinical C. auris isolates. Apoptosis hallmarks were examined using FITC-Annexin V/PI double labelling assay and terminal deoxynucleotidyl transferase deoxynucleotidyl transferase nick-end labelling (TUNEL) to detect phosphatidylserine externalization and DNA fragmentation, respectively. Then, several intracellular triggers were studied using JC-10 staining, spectrophotometric assay and 2',7'-dichlorofluorescin diacetate staining to measure the mitochondrial membrane potential, cytochrome-c release and reactive oxygen species (ROS) production, respectively.Results and conclusion. FITC-Annexin V/PI staining and TUNEL analysis revealed that exposure of C. auris cells to HNP-1 and hBD-3 triggered both early and late apoptosis, while His 5 caused significant necrosis. Furthermore, HNP-1 and hBD-3 induced significant mitochondrial membrane depolarization, which resulted in substantial cytochrome c release. In contrast to His 5, which showed minimal mitochondrial depolarization and no cytochrome c release. At last, all peptides significantly increased ROS production, which is related to both types of cell death. Therefore, these peptides represent promising and effective antifungal agents for treating invasive infections caused by multidrug-resistant C. auris.
Insights
Human antimicrobial peptides (AMPs) like HNP-1 and hBD-3 induce apoptosis in Candida auris, a multidrug-resistant fungus. These AMPs show promise for treating C. auris infections by triggering cell death pathways.
Area of Science:
- Mycology and Infectious Diseases
- Cell Biology and Biochemistry
Background:
- Multidrug-resistant *Candida auris* poses a significant threat, necessitating innovative antifungal therapies.
- Induction of programmed cell death, specifically apoptosis, is a potential therapeutic strategy against fungal pathogens.
- Human antimicrobial peptides (AMPs) are known for their antifungal properties and ability to induce apoptosis.
Purpose of the Study:
- To investigate the capacity of specific human antimicrobial peptides (AMPs) to induce apoptosis in *Candida auris*.
- To compare the cell death mechanisms induced by different AMPs against *C. auris*.
Main Methods:
- Tested human neutrophil peptide-1 (HNP-1), human β-Defensins-3 (hBD-3), and human salivary histatin 5 (His 5) against clinical *C. auris* isolates.
- Assessed apoptosis hallmarks using FITC-Annexin V/PI staining (phosphatidylserine externalization) and TUNEL assay (DNA fragmentation).
- Measured mitochondrial membrane potential (JC-10), cytochrome-c release, and reactive oxygen species (ROS) production.
Main Results:
- HNP-1 and hBD-3 induced both early and late apoptosis in *C. auris*, evidenced by Annexin V/PI and TUNEL assays.
- His 5 primarily induced necrosis, with minimal apoptotic markers observed.
- HNP-1 and hBD-3 caused mitochondrial depolarization and cytochrome-c release, key events in apoptosis; all peptides increased ROS production.
Conclusions:
- HNP-1 and hBD-3 effectively induce apoptosis in *Candida auris* through mitochondrial pathways.
- His 5 induces necrosis rather than apoptosis in *C. auris*.
- These AMPs, particularly HNP-1 and hBD-3, represent promising therapeutic candidates for combating multidrug-resistant *C. auris* infections.

