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taxus canadensis/antikancerogeno

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ČlanciKlinička ispitivanjaPatenti
5 rezultatima

Taxus canadensis abundant taxane: conversion to paclitaxel and rearrangements.

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Prijava Registriraj se
An efficient conversion of Taxus canadensis abundant taxane, 9-dihydro-13-acetylbaccatin III to baccatin III is described. Since the synthesis of paclitaxel from baccatin III has been reported, this work can be used for additional supply of this powerful anticancer drug. In addition, new taxanes

Antitumor activity of 9(R)-dihydrotaxane analogs.

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A novel reduced taxane, 13-acetyl-9(R)-dihydrobaccatin III (1) has been isolated from Taxus canadensis. The selective C-13 deacetylation of this isolate has allowed for the preparation of a wide variety of 9(R)-dihydrotaxane analogs. In general, this series has shown greater stability and water

Taxol production and taxadiene synthase activity in Taxus canadensis cell suspension cultures.

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Prijava Registriraj se
The cyclization of geranylgeranyl diphosphate to taxa-4(5),11(12)-diene represents the first committed, and a slow, step in the complex biosynthetic pathway leading to the anticancer drug Taxol. The cyclization enzyme, taxadiene synthase, has been previously purified from Pacific yew (Taxus

Cell culture of Taxus as a source of the antineoplastic drug taxol and related taxanes.

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Callus cultures of Taxus cuspidata and Taxus canadensis were induced using different tissue explants including green and red arils, seed contents, young stems and needles. Callus derived from stem segments displayed the best growth in defined media. The culture medium was supplemented with reducing

Exogenous and endogenous increase in fungal GGPP increased fungal Taxol production.

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Prijava Registriraj se
Taxol is an anticancer identified in both endophytic fungus and its host plant. Plant Taxol is a diterpenoid with geranylgeranyl diphosphate (GGPP) mediates the biosynthesis of its terpenoid moiety. Previous report has suggested that fungal Taxol may require terpenoid pathway for its biosynthesis.
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