Aerial parts of Physalis coztomatl afforded a new labdane diterpene, physacoztomatin (1), and five new withanolides, physacoztolides A-E (5-9). Six known compounds were also isolated. The structures of the new compounds were established after analyses of their spectroscopic data and by means of chemical transformations. X-ray diffraction analyses of 15-dehydrophysacoztomatin (2) and 5 confirmed the structures of 1 and 5. Labd-13(E)-ene-8alpha,15-diol (4) and physacoztomatin (1) represent the first labdane diterpenes isolated from the genus Physalis.
A phytochemical study of Robinsonecio gerberifolius afforded six new sesquiterpenoids, two oplopane (1and 2) and four eremophilane derivatives (3-6). The structures of these compounds were elucidated on spectroscopic grounds, and the absolute configurations of compounds 3 and 4 were established from CD analysis. The known 3beta-angeloyloxy-1,10-epoxyfuranoeremophilane (7) was also isolated, and its stereochemistry was revised. The cytotoxic activities of compounds 1-7 were determined against five human cancer cell lines.
Eight new compounds, labdanes 2-4, homoergostane 10, and sucrose esters 12-15, were isolated from aerial parts of Physalis sordida together with several known compounds. Structures of the new compounds were elucidated using spectroscopic evidence and chemical transformations. The structure of 10 was confirmed by X-ray crystallographic analysis of its methyl ester. Anti-inflammatory activity of compounds 1, 2, 4, 5, and 12-15 was evaluated using the TPA-induced mouse ear edema test. Compounds 12 (IC(50) 0.26 mumol/ear) and 15 (IC(50) 0.24 mumol/ear) showed anti-inflammatory activity similar to that of indomethacin (IC(50) 0.24 mumol/ear).
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