Authors
Piyush Baindara, Suresh K Mondal, Dinata Roy, Sourav Chakraborty, Dheeraj Kumar Sarkar, Santi M Mandal, Gourisankar Ghosh
Published in
iScience. Volume 29. Issue 8. Pages 116886. Aug 21, 2026. Epub Jul 24, 2026.
Abstract
The rising incidence of invasive Candida infections highlights the urgent need for distinct antifungal agents with improved safety and efficacy. Although several antifungal drugs are clinically available, their associated toxicity and the increasing emergence of drug-resistant Candida species often result in poor therapeutic outcomes. In this study, we report the antifungal potential of cardio-green butyl acetate (CaGA), a previously unknown synthesized compound, and investigate its activity and mechanism of action. CaGA exhibited strong fungicidal activity against Candida albicans, significantly reducing planktonic cell viability and biofilm biomass. Membrane disruption was demonstrated by protein leakage assays, Nile red and live/dead staining, and scanning electron microscopy. Isothermal titration calorimetry (ITC) confirmed direct interaction between CaGA and ergosterol, the major sterol component of the C. albicans membrane. Coarse-grained membrane simulations further revealed preferential interaction with ergosterol-rich domains and pore-like structure formation. Together, these findings identify CaGA as a promising next-generation antifungal candidate with a distinct membrane-targeting mechanism, offering therapeutic potential against drug-resistant Candida infections.
PMID:
42542634
Bibliographic data and abstract were imported from PubMed on 02 Aug 2026.
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