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Research Article | Open Access

Antifungal activity of a maleimide derivative: disruption of cell membranes and interference with iron ion homoeostasis

Chaoqun Chena,b,*Zhiyu Xiec,*Liu CongaShanshan MaoaLiying WangdYalun WudYu ZhangaQing ZhoueAijaz AhmadfWenqiang Changg( )Zuobin Zhud( )Ying Lia( )
School of Medical Technology, Xuzhou Medical University, Xuzhou, China
Department of Clinical Laboratory, Xuzhou Central Hospital, Xuzhou, China
Key Laboratory of Micro-Nano Materials for Energy Storage and Conversion of Henan Province, Institute of Surface Micro and Nano Materials, College of Chemical and Materials Engineering, Xuchang University, Xuchang, China
Department of Genetics, Xuzhou Medical University, Xuzhou, China
Department of Periodontology, Xuchang Central Hospital, Xuchang, China
Department of Clinical Microbiology and Infectious Diseases, School of Pathology, University of the Witwatersrand, Johannesburg, South Africa
Department of Natural Product Chemistry, Key Laboratory of Chemical Biology (Ministry of Education), School of Pharmaceutical Sciences, Cheeloo College of Medicine, Shandong University, Jinan, China

*These authors contributed equally to this work.

This article has been corrected with minor changes. These changes do not impact the academic content of the article.

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Abstract

Fungal infections caused by Candida albicans have posed a persistent threat to human health. Existing clinical antifungal drugs are constrained by issues such as drug resistance and side effects. Compounds containing maleimide rings have been verified to possess antifungal properties, although the specific molecular mechanisms by which they exert this activity have yet to be fully understood. A total of 40 compounds containing maleimide rings were synthesised in the present study, and 12 derivatives that possessed antifungal properties were subsequently identified. The maleimide compound 5 (MPD) with the most potent activity demonstrated fungicidal action at a concentration that was twice as potent as the minimal inhibitory concentration and effectively prevented the formation of biofilms. Furthermore, the mechanistic studies revealed that MPD interfered with iron ion homoeostasis by reducing intracellular iron concentration inside cells, which led to the inhibition of ergosterol biosynthesis and increased cell membrane permeability, resulting in the leakage of intracellular trehalose. In addition, MPD was observed to perturb cell wall biosynthesis by reducing the activity of chitin synthase. Moreover, MPD was found to demonstrate therapeutical efficacy in vivo when assessed using a Caenorhabditis elegans C. albicans infection model.

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Mycology
Pages 382-401

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Cite this article:
Chen C, Xie Z, Cong L, et al. Antifungal activity of a maleimide derivative: disruption of cell membranes and interference with iron ion homoeostasis. Mycology, 2025, 16(1): 382-401. https://doi.org/10.1080/21501203.2024.2330403

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Received: 20 December 2023
Accepted: 06 March 2024
Published: 01 March 2025
© 2024 The Author(s).

This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. The terms on which this article has been published allow the posting of the Accepted Manuscript in a repository by the author(s) or with their consent.