Exploring Marine-Derived Antioxidant and Anti-Inflammatory Agents: Findings from Recent Studies
Conflicts of Interest
List of Contributions
- Liu, C.; Gu, F.; Zou, Z.; Wang, F.; Li, D.; Song, J.; Hong, Y.; Wu, X.; Yang, X.; Liu, W.-H.; et al. Marine-Derived Alternariol Suppresses Inflammation by Regulating T Cell Activation and Migration. Mar. Drugs 2025, 23, 133. https://doi.org/10.3390/md23030133.
- Niu, X.; Chen, S.; Wang, X.; Wen, J.; Liu, X.; Yong, Y.; Yu, Z.; Ma, X.; Abd El-Aty, A.M.; Ju, X. Butyrolactone-I from Marine Fungal Metabolites Mitigates Heat-Stress-Induced Apoptosis in IPEC-J2 Cells and Mice Through the ROS/PERK/CHOP Signaling Pathway. Mar. Drugs 2024, 22, 564. https://doi.org/10.3390/md22120564.
- Yang, F.; Yang, Y.; Xiao, D.; Kim, P.; Lee, J.; Jeon, Y.-J.; Wang, L. Anti-Photoaging Effects of Antioxidant Peptide from Seahorse (Hippocampus abdominalis) in In Vivo and In Vitro Models. Mar. Drugs 2024, 22, 471. https://doi.org/10.3390/md22100471.
- Marasinghe, C.K.; Je, J.-Y. Blue Mussel-Derived Bioactive Peptides PIISVYWK (P1) and FSVVPSPK (P2): Promising Agents for Inhibiting Foam Cell Formation and Inflammation in Cardiovascular Diseases. Mar. Drugs 2024, 22, 466. https://doi.org/10.3390/md22100466.
- Joshi, A.; Holland, B.; Sachar, M.; Barrow, C.J. Pilot-Scale Enzymatic Conversion of Low Stability, High Free Fatty, Squid Oil to an Oxidatively Stable Astaxanthin-Rich Acylglyceride Oil Suitable for Nutritional Applications. Mar. Drugs 2025, 23, 21. https://doi.org/10.3390/md23010021.
- Shu, Z.; Ji, Y.; Liu, F.; Jing, Y.; Jiao, C.; Li, Y.; Zhao, Y.; Wang, G.; Zhang, J. Proteomics Analysis of the Protective Effect of Polydeoxyribonucleotide Extracted from Sea Cucumber (Apostichopus japonicus) Sperm in a Hydrogen Peroxide-Induced RAW264.7 Cell Injury Model. Mar. Drugs 2024, 22, 325. https://doi.org/10.3390/md22070325.
- Dörschmann, P.; Kopplin, G.; Thalenhorst, T.; Seeba, C.; Ullah, S.F.; Srivastava, V.; Roider, J.; Klettner, A. Influence of a Very High-Molecular Weight Fucoidan from Laminaria hyperborea on Age-Related Macular Degeneration-Relevant Pathomechanisms in Ocular Cell Models. Mar. Drugs 2025, 23, 101. https://doi.org/10.3390/md23030101.
- Lukova, P.; Kokova, V.; Baldzhieva, A.; Murdjeva, M.; Katsarov, P.; Delattre, C.; Apostolova, E. Alginate from Ericaria crinita Possesses Antioxidant Activity and Attenuates Systemic Inflammation via Downregulation of Pro-Inflammatory Cytokines. Mar. Drugs 2024, 22, 482. https://doi.org/10.3390/md22110482.
- Lee, H.L.; Ju, Y.H.; Kim, I.Y.; Choi, H.J.; Heo, Y.M.; Na, H.R.; Heo, H.J. Codium fragile Extract Ameliorates Respiratory Function by Controlling Allergic Inflammation in Ovalbumin-Induced Bronchial Disorders in Mice. Mar. Drugs 2025, 23, 221. https://doi.org/10.3390/md23050221.
- Pruvost, L.; Gerlei, M.; Paris, C.; Velot, É.; Kahn, C.J.-F.; Bianchi, A.; Linder, M. Chondroitin Sulfate Nanovectorized by LC-PUFAs Nanocarriers Extracted from Salmon (Salmo salar) by Green Process with Decreased Inflammatory Marker Expression in Interleukin-1β-Stimulated Primary Human Chondrocytes In Vitro Culture. Mar. Drugs 2024, 22, 571. https://doi.org/10.3390/md22120571.
- Yang, G.; Lin, M.; Kaliaperumal, K.; Lu, Y.; Qi, X.; Jiang, X.; Xu, X.; Gao, C.; Liu, Y.; Luo, X. Recent Advances in Anti-Inflammatory Compounds from Marine Microorganisms. Mar. Drugs 2024, 22, 424. https://doi.org/10.3390/md22090424.
- Vasarri, M.; De Marchi, L.; Pretti, C.; Barletta, E.; Degl’Innocenti, D. Antioxidant and Anti-Inflammatory Properties of Four Native Mediterranean Seagrasses: A Review of Bioactive Potential and Ecological Context. Mar. Drugs 2025, 23, 206. https://doi.org/10.3390/md23050206.
Marine Organism | Compound | In Vitro Experimental Model | In Vivo Animal Models | Contribution |
---|---|---|---|---|
Marine fungi Alternaria sp. | Alternariol (AOH) | Bone marrow-derived dendritic cells (BMDCs) and macrophages (BMDMs) | C57BL/6J mice | Contribution 1 (Liu et al. (2025)) |
Marine fungus Aspergillus C23-3 | Butyrolactone-I (BTL-I) | Intestinal porcine enterocyte (IPEC-J2) cells | C57BL/6J mice | Contribution 2 (Niu et al. (2024)) |
Seahorse (Hippocampus abdominalis) | SHP2 peptide | Human keratinocyte (HaCaT) cells; Human dermal fibroblast (HDF) cells | Zebrafish model | Contribution 3 (Yang et al. (2024)) |
Blue mussel (Mytilus edulis) | Peptides PIISVYWK (P1) and FSVVPSPK (P2) | Murine macrophage (RAW264.7) cells | Contribution 4 (Marasinghe et al. (2024)) | |
Squid viscera | oil enriched with omega-3 fatty acids and astaxanthin | Contribution 5 (Joshi et al. (2025)) | ||
Sea Cucumber (Apostichopus japonicus) | Polydeoxyribonucleotide (AJS-PDRN) | Murine macrophage (RAW264.7) cells | Contribution 6 (Shu et al. (2024)) | |
Brow seaweed (Laminaria hyperborea) | Fucoidan (FucBB04) | Human uveal melanoma (OMM-1) cells; primary retinal pigment epithelium (RPE) cells from pig eyes; immortalized retinal pigment epithelial (ARPE-19) cells | Contribution 7 (Dörschmann et al. (2025)) | |
Brown seaweed (Ericaria crinita) | Alginate | Wistar rats | Contribution 8 (Lukova et al. (2024)) | |
Green seaweed (Codium fragile) | oleamide (9-octadecenamide) | BALB/c mice | Contribution 9 (Lee et al. (2025)) | |
Salmon (Salmo salar) | chondroitin sulfate and lipids | Primary human chondrocyte cells | Contribution 10 (Pruvost et al. (2024)) |
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Vasarri, M.; Degl’Innocenti, D. Exploring Marine-Derived Antioxidant and Anti-Inflammatory Agents: Findings from Recent Studies. Mar. Drugs 2025, 23, 240. https://doi.org/10.3390/md23060240
Vasarri M, Degl’Innocenti D. Exploring Marine-Derived Antioxidant and Anti-Inflammatory Agents: Findings from Recent Studies. Marine Drugs. 2025; 23(6):240. https://doi.org/10.3390/md23060240
Chicago/Turabian StyleVasarri, Marzia, and Donatella Degl’Innocenti. 2025. "Exploring Marine-Derived Antioxidant and Anti-Inflammatory Agents: Findings from Recent Studies" Marine Drugs 23, no. 6: 240. https://doi.org/10.3390/md23060240
APA StyleVasarri, M., & Degl’Innocenti, D. (2025). Exploring Marine-Derived Antioxidant and Anti-Inflammatory Agents: Findings from Recent Studies. Marine Drugs, 23(6), 240. https://doi.org/10.3390/md23060240