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[Chemical constituents from roots of Caragana stenophylla and their anti-tumor activities].

TLDR
Fourteen compounds were isolated from the 80% ethanol extract of Caragana stenophylla root, by using a combination of various chromatographic approaches, including silica gel sephadex LH-20 column chromatography, and preparative HPLC, and revealed a new benzofuran derivative, named as mucodianin S.
Abstract
Fourteen compounds were isolated from the 80% ethanol extract of Caragana stenophylla root, by using a combination of various chromatographic approaches, including silica gel sephadex LH-20 column chromatography, and preparative HPLC. On the basis of their physical and chemical properties and spectroscopic data, their structures were elucidated as 2-(4-hydroxy-3-methoxy lphenyl)-3-methoxyl benzofuran-6-ol (1), mucodianin C (2), isopterofuran (3), formononetin (4), afromosin (5), calycosin (6), acacetin (7), 3-O-methylkaempferol (8), liquiritigenin (9), isoliquiritigenin (10), variabilin (11), resveratrol (12), zhebeiresinol (13), and 2, 3-dicarboxy-6, 7-dihydroxy-1-(3', 4'-dihydroxy)-phenyl-1, 2-dihydronaphthalen (14). Compound 1 is a new benzofuran derivative, named as mucodianin S; compounds 2, 3, 11, 13, 14 were isolated from the genus Caragana for the first time, and compounds 4-10 were firstly isolated from Caragana stenophylla. MTT assay was used to determine their cytotoxicity of the isolated compounds against human tumor cell lines, and 2 showed cytotoxicity against human hepato cellular cancer (HepG2) and human cervical (HeLa) lines, with IC₅₀ values of (16.18±0.95), (3.75±0.08) μmol•L ⁻¹, respectively.

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Acacetin, a flavone with diverse therapeutic potential in cancer, inflammation, infections and other metabolic disorders.

TL;DR: Acacetin is a potent molecule reported for its strong anti-inflammatory and anti-cancer activity, however further scientific evidence is essential to validate its potency in disease models associated with inflammation and cancer.
Journal ArticleDOI

Investigation of the pharmacodynamic substances in dahuang zhechong pill that inhibit energy metabolism.

TL;DR: Rhein, emodin, chrysophanol, hypoxanthine, baicalein, baicalsin, wogonoside, acteoside), formononetin, isoliquiritigenin, and glycyrrhizic acid were the pharmacodynamic substances responsible for inhibition of energy metabolism of DHZCP.
Journal ArticleDOI

Structures and biological evaluation of phenylpropanoid derivatives from Dendrobium Sonia.

TL;DR: Two new phenylpropanoid derivatives (1-2), together with eight known compounds (3-10) were isolated from the stems of Dendrobium sonia, and the structures of these compounds were elucidated on the basis of spectroscopic analyses, including HRESIMS, 1 D and 2‬D NMR experiments.
Journal ArticleDOI

Bioactive-guided isolation and identification of oligostilbenes as anti-rheumatoid arthritis constituents from the roots of Caragana stenophylla.

TL;DR: In this article, the anti-rheumatoid arthritis effects of the roots of Caragana stenophylla ethanol extract (EC), elucidate its mechanism of action and identify its active substances.
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