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K Likhitwitayawuid

Publications and source records attributed to K Likhitwitayawuid.

13 recordsLinked to original sources

Flavonoids from Ochna integerrima.

Two biflavonoids namely, 2",3"-dihydroochnaflavone and 2",3"-dihydroochnaflavone 7"-O-methyl ether, and a flavonoid glycoside, 6-gamma,gamma-dimethylallyltaxifolin 7-O-beta-D-glucoside were isolated from the leaves of Ochna integerrima.

Flavonoids↗

Tyrosinase inhibitors from Artocarpus gomezianus.

Eight compounds including, phenyl-beta-naphthylamine (1), isocyclomorusin (2), cycloartocarpin (3), artocarpin (4), norartocarpetin (5), cudraflavone C (6), albanin A (7), and resveratrol (8) were isolated from the roots of Artocarpus gomezianus. Compounds 5 and 8 exhibited potent tyrosinase inhibitory activity. The 1H- and 13C-NMR properties of 1, 3 and 8 were extensively studied.

Enzyme Inhibitors↗

Antimalarials from Stephania venosa, Prismatomeris sessiliflora, Diospyros montana and Murraya siamensis.

Fourteen compounds isolated from Stephania venosa, Prismatomeris sessiliflora, Diospyros montana and Murraya siamensis were tested for their antimalarial potential. The 6a,7-dehydroaporphine alkaloids dehydrostephanine and dehydrocrebanine showed potent activity with IC50 values of 40 and 70 ng/ml, respectively. The 13C-NMR data of rubiadin, rubiadin-1-methyl ether, diospyrin and 5-hydroxy-4-methoxy-2-naphthal-dehyde were extensively studied.

Antimalarials↗

Antimalarial xanthones from Garcinia cowa.

Five xanthones from the bark of Garcinia cowa, namely 7-O-methylgarcinone E (1), cowanin (2), cowanol (3), cowaxanthone (4), and beta-mangostin (5), were found to possess in vitro antimalarial activity against Plasmodium falciparum with IC50 values ranging from 1.50 to 3.00 micrograms/ml. Complete 1H- and 13C-NMR assignments of these compounds are also reported.

Animals↗

Antimalarial naphthoquinones from Nepenthes thorelii.

Roots of Nepenthes thorelii yielded plumbagin, 2-methylnaphthazarin, octadecyl caffeate, isoshinanolone, and droserone. In addition, seven derivatives were prepared from plumbagin. Each of these natural and semisynthetic compounds was evaluated for in vitro antimalarial potential.

Animals↗

Xanthones with antimalarial activity from Garcinia dulcis.

Chromatographic separation of the EtOH extract of the bark of Garcinia dulcis (Guttiferae) furnished five xanthones, viz 1,7-dihydroxyxanthone (1), 12b-hydroxy-des-D-garcigerrin A (2), 1-O-methylsymphoxanthone (3), symphoxanthone (4), and garciniaxanthone (5). These xanthones 1-5 showed inhibitory effects on the growth of Plasmodium falciparum with IC50 values of 0.96-3.88 micrograms/ml. In addition, revised 13C-NMR assignments of 3 and complete 13C-NMR assignments of 4 were obtained through analysis of their COSY, NOESY, HMQC, and HMBC spectra.

Animals↗

Cytotoxic and antimalarial bisbenzylisoquinoline alkaloids from Stephania erecta.

(+)-2-N-Methyltelobine [1], a new alkaloid, together with twelve known bisbenzylisoquinolines, was isolated from the tubers of Stephania erecta. The structure determination and the complete 1H- and unambiguous 13C-nmr assignments of 1 were obtained through extensive use of several 1D and 2D nmr techniques. All alkaloids inhibited the growth of cultured Plasmodium falciparum strains D-6 and W-2 and displayed nonselective cytotoxicity with a battery of cultured mammalian cells. These data were used for the calculation of selectivity indices. Relative to known antimalarial agents, these bisbenzylisoquinoline alkaloids do not appear to be promising clinical candidates at the present time.

Alkaloids↗

1H- and 13C-nmr assignments of phyllanthin and hypophyllanthin: lignans that enhance cytotoxic responses with cultured multidrug-resistant cells.

Complete 1H-nmr data and unambiguous assignments of the 13C-nmr spectra of phyllanthin [1] and hypophyllanthin [2] were obtained through extensive nmr studies, including homonuclear COSY, homonuclear decoupling, APT, HETCOR, nOe difference, selective INEPT, and COLOC experiments. The absolute configuration of hypophyllanthin [2] was determined by cd. Neither of these lignans demonstrated significant cytotoxic activity when evaluated with a battery of cultured mammalian cells, but both were found to enhance the cytotoxic response mediated by vinblastine with multidrug-resistant KB cells. In addition, 1 was found to displace the binding of vinblastine with membrane vesicles derived from this cell line, suggesting an interaction with the P-glycoprotein.

Animals↗

Bisamides from Aglaia species: structure analysis and potential to reverse drug resistance with cultured cells.

The structure of pyramidatine [1], a new bisamide alkaloid from leaves of Aglaia pyramidata, was determined through extensive nmr studies, including homonuclear COSY, NOESY, APT, HETCOR, and selective INEPT techniques. Revision of the 13C-nmr assignment of piriferine [2], an alkaloid previously isolated from A. pirifera, was achieved by examination of several 2D nmr spectra (homonuclear COSY, NOESY, and HETCOR) and confirmed by selective INEPT nmr experiments. Evaluation of the cytotoxic potential of the two alkaloids, along with two other bisamides from Aglaia odorata, odorine [3] and 5'-epi-odorine [4], was carried out in eleven human cancer cell lines. None of these bisamides showed significant cytotoxicity. Nevertheless, piriferine [2], odorine [3], and 5'-epi-odorine [4] were found to inhibit the growth of the vinblastine-resistant KB cells by enhancing the anticancer activity of vinblastine.

Alkaloids↗

Cytotoxic and antimalarial alkaloids from the bulbs of Crinum amabile.

From the bulbs of Crinum amabile (Amaryllidaceae), a new alkaloid (-)-amabiline [1], together with the known alkaloids (-)-lycorine [2], (-)-buphanisine [3], (-)-augustine [4], and (+)-crinamine [5], were isolated. The structural characterization of 1 and the revised 1H- and 13C-nmr assignments of 2 are discussed. Alkaloids 2, 4, and 5 were found to be the principal cytotoxic and antimalarial constituents.

Alkaloids↗

Cytotoxic and antimalarial alkaloids from the tubers of Stephania pierrei.

Biological evaluation of extracts prepared from the tubers of Stephania pierrei revealed cytotoxic and antimalarial activity. During the course of separation, two new aporphine alkaloids, (-)-asimilobine-2-O-beta-D-glucoside [2] and (-)-nordicentrine [8], in addition to twenty-one known isoquinoline alkaloids, were isolated. Each isolate was assessed for cytotoxic and antimalarial activities. It was found that the cytotoxicity of S. pierrei was mainly due to the presence of the aporphine alkaloids containing the 1,2-methylenedioxy group 3-10, whereas the antimalarial activity was attributed to the nonquaternary aporphine alkaloids 1, 3-10 and the tetrahydroprotoberberines possessing a phenolic functionality, 13-15, 18. None of the isolates showed a degree of selectivity comparable to that of antimalarial drugs such as chloroquine, quinine, mefloquine, and artemisinin. Comparison of the alkaloid content of S. pierrei and Stephania erecta strongly suggested separate identities for the two plants.

Animals↗

Constituents of Michelia Rajaniana. Two new germacranolide amides.

Six components have been isolated from the bark of Michelia rajaniana, and their structures have been determined by spectroscopic analysis. Four of the components have been reported previously: The germacranolide (-)-parthenolide and the oxoaporphinoid alkaloid liriodenine have been observed as constituents of several species, and (-)-bisparthenolidine and (+)-paramicholide have been reported recently by us as constituents of Paramichelia baillonii. The two new components 3 and 4, which are novel derivatives of parthenolide and contain an unusual N-acetyl substituent at C-13, have been given the names (+)-N-acetylparthenolidine and (+)-N-acetyl-8 alpha-hydroxyparthenolidine, respectively. The crude CHCl3 extract of the bark of M. rajaniana exhibited strong cytotoxicity in the KB cell culture assay.

Amides↗