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Bio-energetics Investigation of Candida albicans Using Real-time Extracellular Flux Analysis
Published on: March 19, 2019
A Transcriptomic Study of the Effects of Tea Tree Essential Oil on the Pathogenicity of Candida albicans
Yutao Zhou1, Jiahao Xu1, Chang Su1
1Department of Perfume and Aroma Technology, Shanghai Institute of Technology, Shanghai 201418, China.
Abstract:
Candida albicans is a common opportunistic pathogen. Long-term use of azole antifungals faces challenges like resistance, necessitating novel agents. Tea tree oil (TTO), a natural broad-spectrum antimicrobial, shows promise, but its molecular mechanisms, particularly concerning novel cell death pathways, require clarification. This study comprehensively evaluated the antifungal mechanism of TTO against C. albicans using transcriptomics. Antifungal susceptibility assays were conducted to assess the effects of TTO and its components (4-terpineol, terpenes, and γ-pinene) on the growth of C. albicans hyphae and biofilms. Fluorescent labeling and biochemical analysis were employed to detect ferroptosis markers. Transcriptomic results indicate that TTO induces 423 differentially expressed genes and systematically inhibits the development of C. albicans hyphae through mechanisms such as oxidative stress, iron homeostasis disruption, disruption of cell wall integrity, and interference with ergosterol metabolism. Notably, the significant enrichment of redox enzyme activity and iron ion binding functions, along with changes in the glutathione metabolic pathway, suggest that ferroptosis may be involved in this process. Subsequent studies revealed that the compound 4-pinene most effectively inhibits the pathogenicity of C. albicans by suppressing its adhesion, hyphae formation, and biofilm formation, whereas terpinene induces the accumulation of reactive oxygen species (ROS) and increases lipid peroxidation in C. albicans; furthermore, following treatment with an iron-mediated apoptosis inhibitor, terpinene enhances the viability of the treated C. albicans cells.
Insights
Tea tree oil (TTO) combats Candida albicans by disrupting cell integrity and metabolism. Its component, 4-pinene, shows potent antifungal activity, suggesting TTO as a novel therapeutic agent.
Area of Science:
- Mycology
- Natural Products Chemistry
- Molecular Biology
Background:
- Candida albicans is an opportunistic pathogen with growing azole resistance.
- Novel antifungal agents are needed to combat resistant strains.
- The molecular mechanisms of natural antifungals like Tea Tree Oil (TTO) require further elucidation, especially regarding cell death pathways.
Purpose of the Study:
- To comprehensively evaluate the antifungal mechanism of TTO against C. albicans.
- To investigate the role of TTO components in antifungal activity.
- To explore potential novel cell death pathways induced by TTO.
Main Methods:
- Transcriptomic analysis to identify differentially expressed genes.
- Antifungal susceptibility assays on hyphae and biofilms.
- Fluorescent labeling and biochemical assays for ferroptosis markers.
- Assessment of reactive oxygen species (ROS) and lipid peroxidation.
Main Results:
- TTO significantly inhibits C. albicans hyphae and biofilm development.
- Transcriptomics revealed TTO induces oxidative stress, disrupts iron homeostasis, cell wall integrity, and ergosterol metabolism.
- Ferroptosis is suggested by enriched redox enzyme activity, iron binding, and glutathione pathway changes.
- 4-pinene most effectively suppresses C. albicans pathogenicity, while terpinene increases ROS and lipid peroxidation.
Conclusions:
- TTO exhibits broad-spectrum antifungal activity against C. albicans through multiple molecular mechanisms.
- Ferroptosis is a potential cell death pathway induced by TTO.
- Specific TTO components like 4-pinene and terpinene possess distinct antifungal properties.

