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taxus baccata/抗癌藥

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The present investigation was undertaken to establish standardization profile of Taxus baccata L. with the help of pharmacognostic parameters, which is not done before. T. baccata(Taxaceae), is native to Europe, is an evergreen needle-leaved tree, growing up to 28 m high. A large number of
Isolation and identification of some potent anti-tumor compounds from medicinal plants has motivated researchers to screen different parts of plant species for the determination of anti-tumor effects. In this study, cytotoxic effects and IC(50) of specific concentrations of hydro-alcoholic extracts
The taxane diterpneoid 2-deacetoxytaxinine J (2-DAT-J) 1 has been isolated from the bark of Himalayan yew, Taxus baccata L. spp. wallichiana in a reasonably good yield (0.1%) and its anticancer activity against breast cancer cell lines (MCF-7 and MDA-MB-231) and normal human kidney epithelial cell
Endophytic fungi were isolated/screened from temperate Taxus baccata (Yew) for production of the anti-cancer drug taxol. Of 242 endophytic fungi isolated from surface-sterilised Yew tree twig segments, only two produced taxol in a defined liquid medium; confirmed by HPLC and LC-MS/MS analyses. They

Taxanes in Taxus baccata pollen: cardiotoxicity and/or allergenicity?

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Diterpenic alkaloids belonging to taxine (yield: 0.18 % dry weight) and taxoids (paclitaxel, baccatine III and 10-deacetylbaccatine III, cumulated yield: 0.004 % dry weight) were isolated from Taxus baccata L. pollen. Moreover, taxoids conjugated to macromolecules were also detected by ELISA.
OBJECTIVE To investigate possible effects of aqueous taxus baccata extract on adenosine deaminase (ADA) activity in cancerous and noncancerous human tissues and to clarify mechanism(s) of its anticancer potential. METHODS Cancerous and noncancerous human gastric and colon tissues were used in the
Various species of Taxus contain taxanes that promote polymerization and stabilization of microtubules. They have been reported as antineoplastic compounds with highly effective chemiotherapeutic application. A decrease in incorporation of the radiolabelled precursors into DNA, RNA and proteins in
Fungal endophytes were isolated from inner bark of Taxus baccata L., an important source of potent anticancer drug taxol. Bark samples were collected from two locations of Arunachal Pradesh, India, part of the Indo-Burma mega biodiversity hotspot, during two seasons i.e. monsoon and winter.
Different yew species contain poisonous taxane alkaloids which serve as resources for semi-synthesis of anticancer drugs. The highly variable amounts of taxanes demand new methods for fast characterization of the raw plant material and the isolation of the target structures during phyto extraction.
Total five plants, three from Mizoram (Dillenia pentagyna, Ageratum conyzoides, Blumea lanceolaria) and two from Meghalaya (Potentilla fulgens, Taxus baccata) were studied for their antitumour activity against murine ascites Dalton's lymphoma (DL) in vivo. Only three plants showed the different
BACKGROUND Yew species (Taxus spp.) throughout the world are hosts to hundreds, or perhaps thousands, of endophytic organisms. Most commonly, these organisms are fungi, living in a commensal or a symbiotic relationship with their host plant, so the plants exhibit little or no outward evidence that
Since the discovery of Taxol and of its antitumor activity a number of chemical, pharmacological and clinical studies have been performed on this natural diterpene isolated from the genus Taxus. Because the extraction of Taxol from the bark is expensive, difficult and damaging to the Taxus species,
BACKGROUND Paclitaxel is a potent antitumor alkaloid widely used for the treatment of several cancer types. This valuable secondary metabolite naturally exists in the inner bark of Taxus species in very low amounts. The small-scale production of paclitaxel in Taxus cell cultures requires utilization
Taxotere (RP 56976; NSC 628503; N-debenzoyl-N-tert-butoxycarbonyl-10-deacetyl taxol) is a new microtubule stabilizing agent. It is obtained by semisynthesis from a noncytotoxic precursor extracted from the needles of the tree, Taxus baccata L. Taxotere was evaluated for antitumor activity against a
OBJECTIVE Taxol is one of the most effective anticancer drugs that isolated from Taxus sp. due to the slow growth of Taxus trees and low concentration of Taxol in the tissues, the biotechnological approaches especially plant cell culture have been considered to produce Taxol in commercial
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