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Updated: Jun 27, 2025

Assessing the Putative Anticryptococcal Properties of Crude and Clarified Extracts from Mollusks
Published on: December 2, 2022
Marine-Derived Metabolites Act as Promising Antifungal Agents
Sijin Hang1, Hui Lu1, Yuanying Jiang1
1Department of Pharmacy, Shanghai Tenth People's Hospital, School of Medicine, Tongji University, 200092 Shanghai, China.
Abstract:
The incidence of invasive fungal diseases (IFDs) is on the rise globally, particularly among immunocompromised patients, leading to significant morbidity and mortality. Current clinical antifungal agents, such as polyenes, azoles, and echinocandins, face increasing resistance from pathogenic fungi. Therefore, there is a pressing need for the development of novel antifungal drugs. Marine-derived secondary metabolites represent valuable resources that are characterized by varied chemical structures and pharmacological activities. While numerous compounds exhibiting promising antifungal activity have been identified, a comprehensive review elucidating their specific underlying mechanisms remains lacking. In this review, we have compiled a summary of antifungal compounds derived from marine organisms, highlighting their diverse mechanisms of action targeting various fungal cellular components, including the cell wall, cell membrane, mitochondria, chromosomes, drug efflux pumps, and several biological processes, including vesicular trafficking and the growth of hyphae and biofilms. This review is helpful for the subsequent development of antifungal drugs due to its summary of the antifungal mechanisms of secondary metabolites from marine organisms.
Insights
Marine organisms offer novel antifungal compounds to combat rising fungal infections and drug resistance. This review details their diverse mechanisms, targeting key fungal components for new drug development.
Area of Science:
- Marine biology
- Pharmacology
- Mycology
Background:
- Invasive fungal diseases (IFDs) are increasing globally, especially in immunocompromised individuals.
- Existing antifungal drugs (polyenes, azoles, echinocandins) face growing fungal resistance.
- Novel antifungal agents are urgently needed.
Purpose of the Study:
- To review antifungal compounds derived from marine organisms.
- To summarize their diverse mechanisms of action.
- To aid in the development of new antifungal drugs.
Main Methods:
- Literature review of marine-derived secondary metabolites with antifungal activity.
- Analysis of identified compounds' chemical structures and pharmacological properties.
- Compilation of documented mechanisms of action.
Main Results:
- Marine natural products exhibit broad-spectrum antifungal activity.
- Compounds target various fungal structures: cell wall, cell membrane, mitochondria, chromosomes.
- Mechanisms include inhibiting drug efflux pumps and disrupting hyphal growth and biofilms.
Conclusions:
- Marine-derived secondary metabolites are a promising source for novel antifungal drug discovery.
- Understanding their diverse mechanisms is crucial for therapeutic development.
- This review provides a foundation for future research in marine-derived antifungals.

