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fallopia/cancro

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Fallopia japonica, a Natural Modulator, Can Overcome Multidrug Resistance in Cancer Cells.

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Resistance of cancer cells to chemotherapy is controlled by the decrease of intracellular drug accumulation, increase of detoxification, and diminished propensity of cancer cells to undergo apoptosis. ATP-binding cassette (ABC) membrane transporters with intracellular metabolic enzymes contribute to

Anticancer potential of selected Fallopia Adans species.

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The aim of the present study was to determine the anticancer potential of three species belonging to the Fallopia genus (Polygonaceae): Fallopia convolvulus (F. convolvulus, Fallopia dumetorum (F. dumetorum) and Fallopia aubertii (F. aubertii). For this purpose, crude extracts were obtained and
BACKGROUND The plant genus Fallopia is well-known in Chinese traditional medicine and includes many species that contain bioactive compounds, namely phytoestrogens. Consumption of phytoestrogens may be linked to decreased incidence of breast and prostate cancers therefore discovery of novel

In Vitro Comparison of the Bioactivities of Japanese and Bohemian Knotweed Ethanol Extracts.

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Knotweed is a flowering plant that is native to temperate and subtropical regions in the northern hemisphere. We evaluated Japanese (Reynoutriajaponica Houtt.) and Bohemian (Fallopiaxbohemica) knotweed rhizome and flower ethanol extracts and compared them in terms

Guanacastane diterpenoids from the plant endophytic fungus Cercospora sp.

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Cercosporenes A-F (1-6, respectively), six new guanacastane diterpenes, including a homodimer (5) and a heterodimer (6), were isolated from the crude extract of the fungus Cercospora sp., endophytic to the medicinal plant Fallopia japonica. The structures of 1-6 were elucidated by nuclear magnetic
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