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Study on the Natural Products from the Formosan Soft Corals Sinularia gibberosa and Sarcophyton sp.Chen, Shin-Pin 29 August 2007 (has links)
Marine organisms have attracted much attention as potential source for drugs over recent years. Soft corals have yielded many bioactive metabolites. Some of them have been examined for their pharmacological properties. For the process of drug discovery, we have examined bioactive metabolites from the organic extracts of two soft corals Sinularia gibberosa and Sarcophyton sp. collected off Formosan coast. This study had led to the isolation of forty-two natural products (1¡V42), including one new £]-caryophyllene-type sesquiterpenoid (1), four new xeniaphyllane-type norditerpenoids (2, 14, 16, and 17), fourteen new xeniaphyllane-type diterpenoids (3¡V13 and 18¡V20), one novel nor-humulene (15), seven new xeniaphyllane-type diterpenoids (21¡V26) with cyclic peroxyhemiketal (3,6-dihydro-1,2-dioxin-3-ol) moiety, and one new steroid (27), along with five known compounds (28¡V32) from Sinularia gibberosa. Three new cembrane-type diterpenoids (33¡V35), along with seven known cembranolides (36¡V42) were isolated from Sarcophyton sp. The structures of metabolites 1¡V42 including their stereochemistry have been established by detailed spectroscopic analyses, particularly mass, 2D NMR (1H¡V1H COSY, HMQC, HMBC, and NOESY) spectroscopy and by comparison with the related physical and spectral data from other known compounds.
In above metabolites, two compounds (8, 9) exhibited cytotoxicity against the growth of MCF-7, Hep 3B, Ca9-22 cancer cell lines. Furthermore, nine compounds (4, 8, 9, 11, 12, 13, 21, 31, 39) exhibited cytotoxicity against the growth of MDA-MB-231, Hep G2 and A-549 cancer cell lines.
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Genomic Analyses of the Complete Mitochondrial DNA Sequences of Five Alcyonacea CoralsChen, Chun-ting 29 August 2007 (has links)
Corals are the dominant species of the coral reefs. The diversity of species is classified by traditional morphological traits, especially relied on the calcious deposits-sclerites. The formation of sclerites may be affected by the environmental conditions; therefore, some controversies may exist. The ambiguities may be clarified with molecular approaches. Five soft coral species, Lobophytum pauciflorum, Sinularia leptoclado, Sinularia flexibilis, Sarcophyton sp., Nephthea erecta were chosen for this study. The total mitochondrial DNA sequences were determined by PCR and primer walking. The genome contains 18562 bp, 18732 bp, 18752 bp, 18806 bp, 18716 bp separately, which harbors 14 protein-coding genes (ATP6¡BATP8¡BCOI¡BCOII¡BCOIIII¡BCYTB¡BND1¡BND2¡BND3¡BND4¡BND4L¡BND5¡BND6¡BMSH), 2 rRNA and only 1 tRNA genes. The phylogenetic relationship of alcyonacea corals were analyzed and compared with published sequences. The possibility of using a short ¡§DNA bar-code sequence¡¨ of the mitochondria as an alternative for species identification may be feasible. We found the short DNA signature sequences for these five corals. They may speed up the identification of corals in the long run.
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