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Siderophore-Conjugated Antifungals: A Strategy to Potentially Cure Fungal Infections
Kalaiarasu Lakshminarayanan1,2, Dhanashree Murugan2, Janarthanan Venkatesan1,2
1Department of Chemistry, School of Advanced Sciences (SAS), Vellore Institute of Technology, Vellore 632014, India.
Abstract:
Fungi pose a global threat to humankind due to the increasing emergence of multi-drug-resistant fungi. There is a rising incidence of invasive fungal infections. Due to the structural complexity of fungal cell membranes, only a few classes of antifungal agents are effective and have been approved by the U.S. FDA. Hence, researchers globally are focusing on developing novel strategies to cure fungal infections. One of the potential strategies is the "Trojan horse" approach, which uses the siderophore-mediated iron acquisition (SIA) system to scavenge iron to deliver potent antifungal agents for therapeutics and diagnostics. These siderophore conjugates chelate to iron and are taken up through siderophore-iron transporters, which are overexpressed exclusively on microbes such as bacteria or fungi, but not mammalian cells. Our comprehensive review delves into recent advancements in the design of siderophore-conjugated antifungal agents to gain fungal cell entry. Notably, our focus extends to unraveling the intricate relationship between the structure of natural siderophores or siderophore-like molecules and the resulting antifungal activity. By exploring these design strategies, we aim to contribute to the ongoing discourse on combating drug-resistant fungal infections and advancing the landscape of antifungal theranostics.
Insights
Drug-resistant fungi threaten global health. Researchers are developing novel antifungal agents using a "Trojan horse" strategy, delivering drugs via iron uptake systems for targeted fungal infections.
Area of Science:
- Mycology
- Medicinal Chemistry
- Drug Discovery
Background:
- Rising incidence of invasive fungal infections.
- Emergence of multi-drug-resistant fungi poses a global health threat.
- Limited efficacy and FDA-approved antifungal agents due to fungal cell membrane complexity.
Purpose of the Study:
- To review advancements in siderophore-conjugated antifungal agents.
- To explore the structure-activity relationship of siderophores in antifungal drug design.
- To highlight the potential of the "Trojan horse" approach for combating fungal infections.
Main Methods:
- Review of recent literature on siderophore-conjugated antifungal agents.
- Analysis of siderophore-mediated iron acquisition (SIA) systems.
- Investigation of siderophore-iron transporter overexpression in fungi.
Main Results:
- Siderophore conjugates effectively target fungal cells via overexpressed transporters.
- The "Trojan horse" approach demonstrates potential for delivering antifungal agents.
- Structure of natural siderophores or siderophore-like molecules correlates with antifungal activity.
Conclusions:
- Siderophore-based drug delivery offers a promising strategy against drug-resistant fungi.
- Targeted delivery via siderophore-iron transporters enhances antifungal efficacy.
- Further research into siderophore conjugate design can advance antifungal theranostics.

