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The Isolation and Structure Elucidation of Novel, Anti-Inflammatory Secondary Metabolites from New Zealand Marine Invertebrates

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dc.contributor.author Moraes, Greta
dc.date.accessioned 2008-09-05T03:41:07Z
dc.date.accessioned 2022-10-10T22:00:18Z
dc.date.available 2008-09-05T03:41:07Z
dc.date.available 2022-10-10T22:00:18Z
dc.date.copyright 2006
dc.date.issued 2006
dc.identifier.uri https://ir.wgtn.ac.nz/handle/123456789/21606
dc.description.abstract The aim of this study was to isolate novel anti-inflammatory secondary metabolites with potential to be developed as nutraceuticals or pharmaceuticals from marine invertebrates. Two classes of marine invertebrates, Porifera and Echinodermata were chosen for the study. A continued investigation of the New Zealand sponge Raspailia topsenti (Porifera) resulted in the isolation of several known and three novel diterpenes. Raspailenone B (27) is a clerodane diterpenoid with the uncommon cis-ring fusion. Topsentane A (28) and topsentane B (29) are 19-nor-clerodanes with an additional furan ring and are the first compounds of this type to be isolated from the marine environment. Topsentanes A and B exhibit anti-inflammatory activity. Sea cucumbers (Echinodermata) were selected for this study since they have been used for over 5000 years in traditional medicine and as health products. Investigation of the New Zealand sea cucumber Australostichopus mollis resulted in the isolation of one known triterpene glycoside, neothyonidioside (79) and four novel monosulphated triterpene glycosides mollisoside C (78), mollisoside D (80), mollisoside A (81), and mollisoside E (82). A combination of normal and reverse phase chromatographic separations, guided by mass spectroscopy, was used to separate the closely related glycosides. A variety of spectroscopic methods was used in elucidating the structures and determining the relative stereochemistry of the novel compounds. Glycoside mixtures and two of the pure compounds (78) and (79) were tested for anti-inflammatory activity and found to be more active than aspirin. Glycoside mixtures also exhibited anti-fungal activity and were found to be non cytotoxic. en_NZ
dc.language en_NZ
dc.language.iso en_NZ
dc.publisher Te Herenga Waka—Victoria University of Wellington en_NZ
dc.title The Isolation and Structure Elucidation of Novel, Anti-Inflammatory Secondary Metabolites from New Zealand Marine Invertebrates en_NZ
dc.type Text en_NZ
vuwschema.type.vuw Awarded Doctoral Thesis en_NZ
thesis.degree.discipline Chemistry en_NZ
thesis.degree.grantor Te Herenga Waka—Victoria University of Wellington en_NZ
thesis.degree.level Doctoral en_NZ
thesis.degree.name Doctor of Philosophy en_NZ


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