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vicia sativa/kanser

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Effects of cathepsin D inhibitor from Vicia sativa L. seed hulls on human skin fibroblasts and breast cancer cells (in vitro studies).

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Cathepsin D is a lysosomal protease which plays an important role in cancer invasion and metastasis. There are known inhibitors of that enzyme, such as pepstatin and potato inhibitor. In this study, we examined effects of the cathepsin D inhibitor from Vicia sativa L. seed hulls on cell cultures of

Rhizobium nod genes are involved in the induction of two early nodulin genes in Vicia sativa root nodules.

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Nodulin gene expresison was studied in Vicia sativa (common vetch) root nodules induced by several Rhizobium and Agrobacterium strains. An Agrobacterium transconjugant containing a R. leguminosarum symplasmid instead of its Ti-plasmid, that was previously shown to form "empty" nodules on pea,

Natural microbial polysaccharide sulphoethyl glucan as antigenotoxic and cancer preventing agent.

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Naturally occurring polysaccharides isolated from the yeasts are the substances with versatile intriguing biomodulatory activities. One of the novel derivatives prepared from the (1 --> 3)-beta-D-glucan isolated from the cell walls of baker's yeast Saccharomyces cerevisiae is sulfoethyl glucan

Chemical constituents from common vetch (Vicia sativa L.) and their antioxidant and cytotoxic activities.

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Vicia sativa L. (common vetch) is a potential food source for both human beings and animals because of its abundant nutritional composition. There is a lack of phytochemical study on the whole plant, and thus the objective of this study was to investigate the isolation of phytochemicals and evaluate

The role of natural biopolymers in genotoxicity of mutagens/carcinogens elimination.

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Nowadays naturally occurring compounds with the potential antimutagenic and anticarcinogenic effects are of great importance for their prospective use in cancer chemoprevention and treatment. The new water soluble derivative of microbial polysaccharide beta-D-glucan-carboxymethyl glucan (CMG)

Antimutagenic potential of homoisoflavonoids from Muscari racemosum.

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The potential antimutagenic effect of the plant extract of Muscari racemosum bulbs, rich on 3-benzylidene-4-chromanones, was evaluated on three genetic model organisms. The mixture of three homoisoflavonoids was applied together with diagnostic mutagens in the Ames assay on four bacterial strains
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