Apoptosis induced by environmental stresses and amphotericin B in Candida albicans

Andrew J Phillips1, Ian Sudbery, Mark Ramsdale

  • 1Department of Molecular and Cell Biology, Institute of Medical Sciences, University of Aberdeen, Foresterhill, AB25 2ZD Aberdeen, Scotland.

Insights

New research demonstrates programmed cell death, or apoptosis, in the fungal pathogen Candida albicans. Understanding this process may lead to novel antifungal therapies against deadly infections.

Area of Science:

  • Mycology
  • Cell Biology
  • Medical Microbiology

Background:

  • Life-threatening fungal infections caused by pathogens like Candida albicans necessitate new antifungal treatments.
  • Targeting endogenous programmed cell death in fungi offers a potential therapeutic strategy.

Purpose of the Study:

  • To investigate the physiological mechanisms of cell death in Candida albicans.
  • To characterize the cellular and ultrastructural changes associated with apoptosis and necrosis in C. albicans.

Main Methods:

  • Exposure of C. albicans to environmental stresses (acetic acid, hydrogen peroxide) and an antifungal agent (amphotericin B).
  • Assessment of cellular changes using propidium iodide exclusion, annexin-V-FITC labeling, TUNEL assay, and reactive oxygen species detection.
  • Ultrastructural analysis via electron microscopy and cell cycle analysis.

Main Results:

  • Specific concentrations of acetic acid, hydrogen peroxide, and amphotericin B induced apoptosis-like features in C. albicans, including phosphatidylserine externalization and DNA fragmentation.
  • Higher doses of these agents induced necrosis, characterized by loss of membrane integrity and nuclear disorganization.
  • Apoptosis was linked to G2/M cell cycle arrest and, in some cases, hyphal differentiation.

Conclusions:

  • Candida albicans exhibits programmed cell death (apoptosis) in response to specific environmental and drug-induced stresses.
  • These findings demonstrate apoptosis in a significant fungal pathogen, opening avenues for novel antifungal drug development.
  • Understanding fungal cell death pathways is crucial for combating invasive candidiasis.

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