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Recent Advances in Marine-Derived Compounds as Potent Antibacterial and Antifungal Agents: A Comprehensive Review
Devaraj Bharathi1, Jintae Lee1
1School of Chemical Engineering, Yeungnam University, 280 Daehak-Ro, Gyeongsan 38541, Republic of Korea.
Abstract:
The increase in antimicrobial resistance (AMR) in microorganisms is a significant global health concern. Various factors contribute to AMR, including alterations in cell membrane permeability, increased efflux pump activity, enzymatic modification or inactivation of antibiotics, target site changes, alternative metabolic pathways, and biofilm formation. Marine environments, with their extensive biodiversity, provide a valuable source of natural products with a wide range of biological activities. Marine-derived antimicrobial compounds show significant potential against drug-resistant bacteria and fungi. This review discusses the current knowledge on marine natural products such as microorganisms, sponges, tunicates and mollusks with antibacterial and antifungal properties effective against drug-resistant microorganisms and their ecological roles. These natural products are classified based on their chemical structures, such as alkaloids, amino acids, peptides, polyketides, naphthoquinones, terpenoids, and polysaccharides. Although still in preclinical studies, these agents demonstrate promising in vivo efficacy, suggesting that marine sources could be pivotal in developing new drugs to combat AMR, thereby fulfilling an essential medical need. This review highlights the ongoing importance of marine biodiversity exploration for discovering potential antimicrobial agents.
Insights
Marine natural products offer promising solutions to combat rising antimicrobial resistance (AMR). These compounds, derived from diverse marine organisms, show significant potential against drug-resistant microbes, highlighting the need for further exploration.
Area of Science:
- Marine Biology
- Microbiology
- Pharmacology
Background:
- Antimicrobial resistance (AMR) is a growing global health crisis.
- Mechanisms of AMR include altered cell permeability, efflux pumps, and biofilm formation.
- Marine environments harbor rich biodiversity with potential for novel therapeutic compounds.
Purpose of the Study:
- To review marine natural products with antimicrobial properties.
- To explore their potential against drug-resistant microorganisms.
- To classify these compounds and discuss their ecological roles.
Main Methods:
- Literature review of marine-derived antimicrobial agents.
- Classification of compounds by chemical structure (alkaloids, peptides, etc.).
- Assessment of efficacy against resistant bacteria and fungi.
Main Results:
- Marine natural products exhibit significant antibacterial and antifungal activities.
- Compounds from microorganisms, sponges, tunicates, and mollusks show promise.
- Preclinical studies indicate promising in vivo efficacy.
Conclusions:
- Marine biodiversity is a crucial resource for developing new antimicrobial drugs.
- Marine-derived compounds could be key in combating AMR.
- Continued exploration is essential to address this medical need.
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