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Polyphenolic Compounds from Lespedeza Bicolor Root Bark Inhibit Progression of Human Prostate Cancer Cells via Induction of Apoptosis and Cell Cycle Arrest.


ABSTRACT: From a root bark of Lespedeza bicolor 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. Prenylated pterocarpans 1-3 prevented the cell cycle progression of human cancer cells in S-phase. This was accompanied by a reduced expression of mRNA corresponding to several human cyclin-dependent kinases (CDKs). In contrast, compounds 4-8 induced a G1-phase cell cycle arrest without any pronounced effect on CDKs mRNA expression. Interestingly, a non-substituted hydroxy group at C-8 of ring D of the pterocarpan skeleton of compounds 1-3 seems to be important for the CDKs inhibitory activity.

SUBMITTER: Dyshlovoy SA 

PROVIDER: S-EPMC7175281 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Polyphenolic Compounds from Lespedeza Bicolor Root Bark Inhibit Progression of Human Prostate Cancer Cells via Induction of Apoptosis and Cell Cycle Arrest.

Dyshlovoy Sergey A SA   Tarbeeva Darya D   Fedoreyev Sergey S   Busenbender Tobias T   Kaune Moritz M   Veselova Marina M   Kalinovskiy Anatoliy A   Hauschild Jessica J   Grigorchuk Valeria V   Kim Natalya N   Bokemeyer Carsten C   Graefen Markus M   Gorovoy Petr P   von Amsberg Gunhild G  

Biomolecules 20200314 3


From a root bark of <i>Lespedeza bicolor</i> 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. Prenylated pterocarpans 1-3 prevented the cell cycle progression of human cancer cells in S-phase. This was accom  ...[more]

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