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dc.contributor.authorBarreca, M; Spane, V; Montalbano, A; Cueto, M; Marrero, ARD; Deniz, I; Erdogan, A; Bilela, LL; Moulin, C; Taffin-de-Givenchy, E; Spriano, F; Perale, G; Mehiri, M; Rotter, A; Thomas, OP; Barraja, P; Gaudencio, SP; Bertoni, F
dc.date.accessioned2023-03-02T06:39:12Z
dc.date.available2023-03-02T06:39:12Z
dc.date.issuedDEC
dc.date.issued2020
dc.identifier.urihttp://hdl.handle.net/20.500.12481/14337
dc.description.abstractThe marine environment is a rich source of biologically active molecules for the treatment of human diseases, especially cancer. The adaptation to unique environmental conditions led marine organisms to evolve different pathways than their terrestrial counterparts, thus producing unique chemicals with a broad diversity and complexity. So far, more than 36,000 compounds have been isolated from marine micro- and macro-organisms including but not limited to fungi, bacteria, microalgae, macroalgae, sponges, corals, mollusks and tunicates, with hundreds of new marine natural products (MNPs) being discovered every year. Marine-based pharmaceuticals have started to impact modern pharmacology and different anti-cancer drugs derived from marine compounds have been approved for clinical use, such as: cytarabine, vidarabine, nelarabine (prodrug of ara-G), fludarabine phosphate (pro-drug of ara-A), trabectedin, eribulin mesylate, brentuximab vedotin, polatuzumab vedotin, enfortumab vedotin, belantamab mafodotin, plitidepsin, and lurbinectedin. This review focuses on the bioactive molecules derived from the marine environment with anticancer activity, discussing their families, origin, structural features and therapeutic use.
dc.titleMarine Anticancer Agents: An Overview with a Particular Focus on Their Chemical Classes
dc.title.alternativeMARINE DRUGS
dc.identifier.DOI-ID10.3390/md18120619
dc.identifier.volume18
dc.identifier.issue12
dc.identifier.issn/e-issn1660-3397


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