Publications by authors named "Marina Veselova"

From a root bark of Turch we isolated two new (7 and 8) and six previously known compounds (1-6) belonging to the group of prenylated polyphenols. Their structures were elucidated using mass spectrometry, nuclear magnetic resonance and circular dichroism spectroscopy. These natural compounds selectively inhibited human drug-resistant prostate cancer in vitro.

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Four new pterocarpans (6aR,11aR)-6a,11a-dihydrolespedezol A (2), (6aR,11aR)-2-isoprenyl-6a,11a-dihydrolespedezol A (3), (6aR,11aR,3'R)-6a,11a-dihydrolespedezol A (4), (6aR,11aR,3'S)-6a,11a-dihydrolespedezol A (5) and one new stilbenoid with 1,2-diketone fragment named bicoloketone (6) along with one previously known pterocarpen lespedezol A (1) have been isolated from Lespedeza bicolor stem bark using multistage column chromatography on polyamide and silica gel. The structures of the isolated polyphenolic compounds were determined by spectroscopic methods. The absolute configurations of 4 and 5 were determined by comparison of their electronic circular dichroism (ECD) spectra obtained experimentally and the spectra calculated using time-dependent density functional theory (TDDFT).

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A callus culture of Iris pseudacorus L. (Iridaceae) was established from plant leaves using a modified Murashige and Skoog medium. A derivative of cinnamic acid (lavandoside) (1), a neolignan (dehydrodiconiferyl alcohol-4-O-beta-D-glucopyranoside) (2) as well as three isoflavonoids, tectoridin (3), tectorigenin (4), and iristectorigenin A (5) were isolated from the callus culture.

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It has been established that transformation of Vitis amurensis callus culture with the plant oncogene rolB of Agrobacterium rhizogenes results in a high level of resveratrol production in the transformed culture. In the present report, we investigated two rolB transgenic V. amurensis cell cultures with different levels of rolB expression and resveratrol production.

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Isoflavonoids, an interesting and restricted group of secondary metabolites of legumes, exhibit estrogenic, antiangiogenic, and anticancer activities and are now popular as dietary supplements. Plant cell cultures that possess an increased ability to synthesize these metabolites were examined. During the investigation, cell cultures of the Far Eastern relict tree Maackia amurensis (Leguminosae) were established.

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During an investigation of plant cell cultures that might be useful in the treatment of renal disorders, we established a vigorously-growing E-4 callus culture of Eritrichium sericeum that produced large amounts of caffeic acid metabolites, (-)-rabdosiin (1.8% dry wt) and rosmarinic acid (4.6% dry wt).

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Article Synopsis
  • Eritrichium sericeum callus and root cultures were studied for their production of caffeic acid metabolites, notably identifying (-)-rabdosiin and rosmarinic acid as the main compounds.
  • The E. sericeum Er-1 root culture yielded higher concentrations of (-)-rabdosiin (1.5% DW) and rosmarinic acid (4.5% DW) compared to Lithospermum erythrorhizon cultures, which exclusively produced the (+)-enantiomer of rabdosiin.
  • A new compound named eritrichin was isolated from E. sericeum cultures, with its structure identified as a complex phenolic acid derivative through
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