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Updated: Oct 30, 2025

Bio-energetics Investigation of Candida albicans Using Real-time Extracellular Flux Analysis
Published on: March 19, 2019
Metabolic flexibility and extensive adaptability governing multiple drug resistance and enhanced virulence in Candida
Sajad Ahmad Padder1, Asiya Ramzan1, Inayatullah Tahir2
1Department of Bioresources, School of Biological Sciences, University of Kashmir, Srinagar, India.
Abstract:
Commensal fungus-Candida albicans turn pathogenic during the compromised immunity of the host, causing infections ranging from superficial mucosal to dreadful systemic ones. C. albicans has evolved various adaptive measures which collectively contribute towards its enhanced virulence. Among fitness attributes, metabolic flexibility and vigorous stress response are essential for its pathogenicity and virulence. Metabolic flexibility provides a means for nutrient assimilation and growth in diverse host microenvironments and reduces the vulnerability of the pathogen to various antifungals besides evading host immune response(s). Inside the host micro-environments, C. albicans efficiently utilizes the multiple fermentable and non-fermentable carbon sources to sustain and proliferate in glucose deficit conditions. The utilization of alternative carbon sources further highlights the importance of understanding these pathways as the attractive and potential therapeutic target. A thorough understanding of metabolic flexibility and adaptation to environmental stresses is warranted to decipher in-depth insights into virulence and molecular mechanisms of fungal pathogenicity. In this review, we have attempted to provide a detailed and recent understanding of some key aspects of fungal biology. Particular focus will be placed on processes like nutrient assimilation and utilization, metabolic adaptability, virulence factors, and host immune response in C. albicans leading to its enhanced pathogenicity.
Insights
Candida albicans, a common fungus, becomes dangerous with weakened immunity, causing infections. Its metabolic flexibility and stress response are key to its virulence and potential as a therapeutic target.
Area of Science:
- Medical Mycology
- Molecular Biology
- Pathogenesis
Background:
- * *Candida albicans* is a commensal fungus that can cause superficial and systemic infections in immunocompromised hosts.
- * Virulence in *C. albicans* is linked to adaptive strategies, particularly metabolic flexibility and stress response.
- * Understanding these adaptations is crucial for developing new antifungal therapies.
Purpose of the Study:
- * To review the key aspects of *C. albicans* biology contributing to pathogenicity.
- * To highlight metabolic flexibility and stress adaptation as critical factors in virulence.
- * To explore nutrient assimilation, virulence factors, and host immune response.
Main Methods:
- * Literature review focusing on *C. albicans* pathogenicity mechanisms.
- * Analysis of metabolic adaptability and stress response pathways.
- * Examination of virulence factors and host-pathogen interactions.
Main Results:
- * *C. albicans* exhibits significant metabolic flexibility, utilizing diverse carbon sources for growth in nutrient-limited host environments.
- * Stress response mechanisms enhance pathogen survival and immune evasion.
- * Alternative carbon source utilization pathways represent potential therapeutic targets.
Conclusions:
- * Metabolic flexibility and stress adaptation are essential for *C. albicans* virulence.
- * Targeting these pathways could lead to novel antifungal strategies.
- * Further research into *C. albicans* pathogenicity mechanisms is warranted.
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