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April 12, 2026Marine Drugs2 citationsOpen Access

Marine Pharmacology in 2022–2023: Marine Compounds with Antibacterial, Antidiabetic, Antifungal, Anti-Inflammatory, Antiprotozoal, Antituberculosis and Antiviral Activities, Affecting the Immune and Nervous Systems, and Other Miscellaneous Mechanisms of Action

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AMAlejandro M. S. MayerVMVeronica A. MayerMSMichelle Swanson-Mungerson

Key Points

  • This research explores the pharmacological activities of marine-derived compounds from 2022–2023.
  • Analyzed 173 marine-derived compounds for pharmacological properties
  • Conducted mechanism-of-action studies on 43 compounds with antibacterial and antifungal activities
  • Investigated effects on immune and nervous systems for 74 compounds
  • Reviewed the pharmacological mechanisms of 65 unique compounds
  • Identified significant antibacterial, antifungal, antidiabetic, and anti-inflammatory effects
  • Demonstrated promising insights into unique pharmacological mechanisms
  • Highlighted potential contributions to future marine pharmaceutical developments

Abstract

During 2022–2023, research groups from 40 nations contributed to the preclinical pharmacology of 173 structurally defined marine-derived compounds, unveiling innovative mechanisms of action. Peer-reviewed publications in the field of marine natural product pharmacology during 2022–2023 included mechanism-of-action studies with 43 compounds showing antibacterial, antifungal, antiprotozoal, antitubercular, and antiviral activity. Additional mechanism-of-action studies were reported for 74 marine compounds that exhibited antidiabetic and anti-inflammatory properties, as well as significant effects on both the immune and nervous systems. Finally, while 65 marine compounds revealed unique and diverse pharmacological mechanisms, further investigation will be required to determine whether they will contribute to a particular therapeutic category. Collectively, the pharmacology of 2022–2023 preclinical marine natural products demonstrated robust activity, offering both novel mechanistic insights and promising chemical scaffolds to enrich the 2026 marine pharmaceutical development pipeline (https://www.marinepharmacology.org/) which currently consists of 17 marine-derived pharmaceuticals approved for clinical use and 29 compounds in either Phase I, II or III of clinical pharmaceutical development.

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Cite This Study

Mayer et al. (2026) studied this question.

synapsesocial.com/papers/69db37b04fe01fead37c5b10https://doi.org/10.3390/md24040133
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