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dracaena braunii/leucemia

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Steroidal saponins from the aerial parts of Dracaena draco and their cytostatic activity on HL-60 cells.

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Chemical examination of the aerial parts of Dracaena draco has led to the isolation of a total of nine steroidal saponins, including five new ones. The structures of the new saponins were determined by spectral data and a few chemical transformations to be (23S,24S)-spirosta-5,25(27)-diene-1 beta,3

Steroidal saponins from Dracaena surculosa.

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A phytochemical investigation of the whole plant of Dracaena surculosa resulted in the isolation of nine steroidal saponins, including three new bisdesmosidic spirostanol saponins, named surculosides A (1), B (2), and C (3), and a new bisdesmosidic furostanol saponin (4), which are based on

Steroidal saponins from the bark of Dracaena draco and their cytotoxic activities.

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From the stem bark of Dracaena draco, three new compounds, namely, draconins A-C (1-3), were isolated, along with 17 known compounds. The structures of the new compounds isolated were elucidated on the basis of spectroscopic data interpretation. Several of the isolated compounds showed potent

Icogenin, a new cytotoxic steroidal saponin isolated from Dracaena draco.

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This paper reports on the cytotoxic effect induced by a new natural steroidal saponin, icogenin, on the myeloid leukemia cell line HL-60. Icogenin was found to be a cytotoxic compound IC(50) 2.6+/-0.9microM at 72h, with growth inhibition caused by the induction of apoptosis, as determined by

Chemical constituents of the leaves of Dracaena thalioides.

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Two new furostanol bisdesmosides (1 and 2) and seven known compounds (3-9) were isolated from the leaves of Dracaena thalioides (Agavaceae). The structures of the new compounds were determined on the basis of spectroscopic data and the results of hydrolytic cleavage. The isolated compounds were

Steroidal glycosides from the underground parts of Dracaena thalioides and their cytotoxic activity.

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Six spirostanol glycosides (1-6) and 12 known compounds (7-18) were isolated from the underground parts of Dracaena thalioides (Agavaceae). Their structures were determined by spectroscopic analysis, including 2D NMR spectroscopic data, and chemical transformations. The isolated compounds were
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