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Neorogioltriol and Related Diterpenes from the Red Alga

Authors :
Maria G, Daskalaki
Dimitra, Vyrla
Maria, Harizani
Christina, Doxaki
Aristides G, Eliopoulos
Vassilios, Roussis
Efstathia, Ioannou
Christos, Tsatsanis
Sotirios C, Kampranis
Source :
Marine Drugs
Publication Year :
2018

Abstract

Macrophages are central mediators of inflammation, orchestrating the inflammatory response through the production of cytokines and nitric oxide. Macrophages obtain pro-inflammatory (M1) and anti-inflammatory (M2) phenotypes, which can be modulated by soluble factors, including natural products. Despite the crucial protective role of inflammation, chronic or deregulated inflammation can lead to pathological states, such as autoimmune diseases, metabolic disorders, cardiovascular diseases, and cancer. In this case, we studied the anti-inflammatory activity of neorogioltriol (1) in depth and identified two structurally related diterpenes, neorogioldiol (2), and O11,15-cyclo-14-bromo-14,15-dihydrorogiol-3,11-diol (3), with equally potent activity. We investigated the mechanism of action of metabolites 1–3 and found that all three suppressed macrophage activation and promoted an M2-like anti-inflammatory phenotype by inducing expression of Arginase1, MRC1, IRAK-M, the transcription factor C/EBPβ, and the miRNA miR-146a. In addition, they suppressed iNOS induction and nitric oxide production. Importantly, treatment of mice with 2 or 3 suppressed DSS-induced colitis by reducing tissue damage and pro-inflammatory cytokine production. Thus, all these three diterpenes are promising lead molecules for the development of anti-inflammatory agents targeting macrophage polarization mechanisms.

Details

ISSN :
16603397
Volume :
17
Issue :
2
Database :
OpenAIRE
Journal :
Marine drugs
Accession number :
edsair.pmid..........a532915e853111de0600dfb9baed958a