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.

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.