Review ArticlePharmacognosy ResearchVol. 18 | Issue 2 | 2026 | pp. 279–294Open access
Unexplored Marine-Derived Microbial Metabolites as Next-Generation Antiparasitic Agents: Phytochemistry, Mechanistic Insights, and Translational Prospects
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- 1 Department of Pharmaceutical Chemistry, Bengal College of Pharmaceutical Sciences and Research, Durgapur, West Bengal, INDIA.
- 2 Department of Pharmaceutical Chemistry, Bengal College of Pharmaceutical Technology, Dubrajpur, West Bengal, INDIA.
- 3 Department of Pharmacology, Gupta College of Technological Sciences, Asansol, West Bengal, INDIA.
- 4 Department of Pharmaceutics, Bengal College of Pharmaceutical Technology, Dubrajpur, West Bengal, INDIA.
- 5 Department of Pharmaceutics, Bengal College of Pharmaceutical Sciences and Research, Durgapur, West Bengal, INDIA.
- 6 Department of Pharmaceutics, Gupta College of Technological Sciences, Asansol, West Bengal, INDIA.
- 7 Department of Pharmaceutics, NSHM Institute of Pharmaceutical Technology, NSHM Knowledge Campus, Durgapur, West Bengal, INDIA.
- 8 Department of Pharmaceutical Technology, Gupta College of Technological Sciences, Asansol, West Bengal, INDIA.
- 9 Department of Pharmaceutical Chemistry, Gupta College of Technological Sciences, Asansol, West Bengal, INDIA.
- 10 Department of Pharmaceutical Science, Bengal College of Pharmaceutical Technology, Dubrajpur, West Bengal, INDIA.
Published in Pharmacognosy Research
Correspondence: Suman Ghosh
Department of Pharmaceutical Chemistry, Bengal College of Pharmaceutical Technology, Dubrajpur, West Bengal, INDIA.
Email: ghoshsuman280@gmail.com
Copyright: © 2026 Manuscript Technomedia. This is an open access article.
- Published:
- Mar 18, 2026
- Received:
- Oct 13, 2025
- Accepted:
- Dec 26, 2025
How to cite
Debnath, I., Ghosh, S., Duttagupta, N., Mondal, S., Debata, J., Nandi, S., Bhattacharjee, S., Dutta, R., Jha, S. K., Banik, N., Bhowmik, M., Chatterjee, A., Roy, S., Sil, A., Gangopadhyay, A., Ghosh, A., Patra, S., Das, S., Das, D., … Khan, B. (2026). Unexplored Marine-Derived Microbial Metabolites as Next-Generation Antiparasitic Agents: Phytochemistry, Mechanistic Insights, and Translational Prospects. Pharmacognosy Research, 18(2), 279–294. https://doi.org/10.5530/pres.20260146
Abstract
Background
Marine-derived microbial metabolites have emerged as an underexplored but exceptionally promising source of antiparasitic agents. Over the past two decades, intensive efforts in natural product discovery have revealed structurally unique compounds ranging from alkaloids, peptides, and polyketides to glycolipids and nucleoside analogues that exhibit potent activity against protozoan and helminthic parasites. In this review, we systematically evaluated the phytochemical diversity, pharmacological mechanisms, and toxicological considerations of these marine metabolites, with emphasis on compounds targeting Plasmodium, Leishmania, Trypanosoma, Toxoplasma, Entamoeba, and Schistosoma species.
Materials and Methods
This review systematically collated and critically analyzed published literature from PubMed, Scopus, and Web of Science focusing on marine microbial metabolites with antiparasitic activity. Data were integrated on phytochemical classes, biosynthetic origins, mechanisms of action, in vitro and in vivo efficacy, selectivity indices, toxicological evaluations, and translational feasibility.
Results
Diverse compounds including alkaloids (manzamine A, renieramycin A), nucleoside analogues (tubercidin), β-lactones (salinosporamide A), lipodepsipeptides (gallinamide A), and glycolipids (sulfoquinovosyl diacylglycerols) demonstrated potent activity against protozoan and helminthic parasites, with IC₅₀ values ranging from nanomolar to low micromolar. Mechanistic insights revealed proteasome inhibition, cysteine protease blockade, DNA synthesis interference, mitochondrial disruption, and membrane destabilization as key antiparasitic strategies. Preclinical studies indicated encouraging selectivity indices and tolerable host cytotoxicity for several scaffolds.
Conclusion
Marine microbial metabolites constitute a chemically diverse and pharmacologically valuable frontier for antiparasitic drug discovery. By integrating phytochemistry, pharmacology, and toxicology, this review highlights their translational potential and emphasizes future directions including biosynthetic engineering, SAR-guided analog design, and standardized in vivo validation to accelerate progression into clinical pipelines.
Keywords
Subject
Article metadata
| Title | Unexplored Marine-Derived Microbial Metabolites as Next-Generation Antiparasitic Agents: Phytochemistry, Mechanistic Insights, and Translational Prospects |
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| Authors | Ishita Debnath; Suman Ghosh; Nirjhar Duttagupta; Sitanshu Mondal; Jitendra Debata; Sumit Nandi; Soumik Bhattacharjee; Rana Dutta; Sajal Kumar Jha; Nabanita Banik; Mithun Bhowmik; Arindam Chatterjee; Sudip Roy; Ayantika Sil; Amites Gangopadhyay; Avijit Ghosh; Samar Patra; Shubhajit Das; Disha Das; Piyush Mahato; Bapan Khan |
| Affiliations | Department of Pharmaceutical Chemistry, Bengal College of Pharmaceutical Sciences and Research, Durgapur, West Bengal, INDIA.; Department of Pharmaceutical Chemistry, Bengal College of Pharmaceutical Technology, Dubrajpur, West Bengal, INDIA.; Department of Pharmacology, Gupta College of Technological Sciences, Asansol, West Bengal, INDIA.; Department of Pharmaceutics, Bengal College of Pharmaceutical Technology, Dubrajpur, West Bengal, INDIA.; Department of Pharmaceutics, Bengal College of Pharmaceutical Sciences and Research, Durgapur, West Bengal, INDIA.; Department of Pharmaceutics, Gupta College of Technological Sciences, Asansol, West Bengal, INDIA.; Department of Pharmaceutics, NSHM Institute of Pharmaceutical Technology, NSHM Knowledge Campus, Durgapur, West Bengal, INDIA.; Department of Pharmaceutical Technology, Gupta College of Technological Sciences, Asansol, West Bengal, INDIA.; Department of Pharmaceutical Chemistry, Gupta College of Technological Sciences, Asansol, West Bengal, INDIA.; Department of Pharmaceutical Science, Bengal College of Pharmaceutical Technology, Dubrajpur, West Bengal, INDIA. |
| Corresponding author | ghoshsuman280@gmail.com |
| Journal | Pharmacognosy Research |
| Volume / Issue | Vol. 18, Issue 2 (2026) |
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