• Title/Summary/Keyword: 6'-O-acetyl astragalin

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Isolation of Flavonoids from the Leaves of Aralia continentalis (땃두릅으로부터 Flavonoid 성분의 분리)

  • Kim, Ju-Sun;Kang, Sam-Sik;Lee, Myung-Whan;Kim, Ok-Kyung
    • Korean Journal of Pharmacognosy
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    • v.26 no.3
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    • pp.239-243
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    • 1995
  • Six flavonoids were isolated from the leaves of Aralia continentalis. Their structures were characterized as kaempferol, quercetin, 6'-O-acetyl astragalin, astragalin, trifolin and hyperoside by chemical and spectroscopic evidences. This is the first isolation from this plant.

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Flavonoids from the Leaves of Polygalga japonica

  • Do, Jae-Chul;Yu, Young-Jun;Jung, Keun-Young;Son, Kun-Ho
    • Korean Journal of Pharmacognosy
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    • v.23 no.1
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    • pp.9-13
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    • 1992
  • From the leaves of Polygala japonica, kaempferol (1), astragalin (2), kaempferol $3-O-(6'-O-acetyl)-{\beta}-D-glucopyranoside$ (3) and kaempferol $3,7-di-O-{\beta}-D-glucopyranoside$ (4), have been isolated and characterized by chemical and spectral means.

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Antioxidative flavonoids from the Leaves of Morus alba

  • Kim, Sun-Yeou;Gao, Jian Jun;Lee, Won-Chu;Ryu, Kang-Sun;Lee, Kang-Ro;Kim, Young-Choong
    • Archives of Pharmacal Research
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    • v.22 no.1
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    • pp.81-85
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    • 1999
  • Nine flavonoids (1-9) were isolated from the leaves of Morus alba (Moraceae). The structures of compounds were determined to be kaempferol-3-O-$\beta$-glucopyranoisde (astragalin, 1) kaempferol-3-O-(6"-O-acetyl)-$\beta$-D-glucopyranoside (2), quercetin-3-O-(6"-O-acetyl)-$\beta$-D-glucopyranoside (3), quercetin-3-O-$\beta$-D-glucopyranoside (4), kaempferol-3-O-$\alpha$-L-rhamnopyranosyl-(1 6)-$\beta$-D-glucopyranoside (5), quercetin-3-O-$\alpha$-L-rhamnopyranosyl-(1 6)-$\beta$-D-glucopyranoside (rutin, 6), quercetin-3-O-$\beta$-D-glucopyranosyl-(1 6)-$\beta$-D-glucopyranoside (7), quercetin-3,7-di-O-$\beta$-D-glucopyranoside (8) and quercetin (9) on th basis of spectroscopic and chemical studies. Compounds 7 and 9 exhibited significant radical scavenging effect on 1,1-diphenyl-2-picryl-hydrazyl radical.

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Antioxident components from Aralia continentalis

  • Kim, Ju-Sun;Kang, Sam-Sik;Park, Jae-Sue
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1998.11a
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    • pp.182-182
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    • 1998
  • The root of Aralia continentalis Kitagawa(Araliaceae) have been used as an analgesic and fever remedy, and for treatment of rheumatism in Chinese medicine, whereas the young leaves are used for salad. An antioxidant activity of the young leaves of A continentalis was determined by measuring lipid peroxide produced when a mouse liver homogenate was exposed to the air at 37$^{\circ}C$, using 2-thiobarbituric acid(TBA) and by evaluation the radical scavenging activity on 1,l-diphenyl-2 picrylhydrazyl (DPPH) radical. Bioassay guided fractionation of MeOH extract isolated six flavonoid compounds as active components from EtOAc fraction. Adenosine and two saponins were isolated from the weak active BuOH fraction. The antioxidant effect by DPPH radical scavenging activity showed that quercetin was the most active among these compounds. Hyperoside and kaempferol were also active, while 6"-O-acetyl astragalin, astragalin, trifolin, adenosine, oleanolic acid 28-O-glucosyl ester and salsoloside C methyl ester were almost inactive. All the compounds were identified by spectroscopic methods.

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Isolation of Flavonoid Glycosides with Cholinesterase Inhibition Activity and Quantification from Stachys japonica

  • Nugroho, Agung;Choi, Jae Sue;Seong, Su Hui;Song, Byong-Min;Park, Kyoung-Sik;Park, Hee-Juhn
    • Natural Product Sciences
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    • v.24 no.4
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    • pp.259-265
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    • 2018
  • The three flavone glycosides, 4'-O-methylisoscutellarein 7-O-(6'''-O-acetyl)-${\beta}$-D-allopyranosyl(1${\rightarrow}$2)-${\beta}$-D-glucopyranoside (1), isoscutellarein 7-O-(6'''-O-acetyl)-${\beta}$-D-allopyranosyl(1${\rightarrow}$2)-${\beta}$-D-glucopyranoside (3), and isoscutellarein 7-O-${\beta}$-D-allopyranosyl(1${\rightarrow}$2)-${\beta}$-D-glucopyranoside (4) in addition to a flavonol glycoside, kaempferol 3-O-${\beta}$-D-glucopyranoside (astragalin, 2), were isolated from Stachys japonica (Lamiaceae). In cholinesterase inhibition assay, compound 1 significantly inhibited aceylcholinesterase (AChE) and butyrylcholinesterase (BChE) activities ($IC_{50}s$, $39.94{\mu}g/ml$ for AChE and $86.98{\mu}g/ml$ for BChE). The content of isolated compounds were evaluated in this plant extract by HPLC analysis. Our experimental results suggest that the flavonoid glycosides of S. japonica could prevent the memory impairment of Alzheimer's disease.

Antioxidant Components from Aralia continentalis (땃두릅(Aralia continentails)의 항산화 성분)

  • Kang, Sam-Sik;Choi, Jae-Sue;Lee, Myung-Whan;Lee, Taik-Soo;Kim, Ju-Sun
    • Korean Journal of Pharmacognosy
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    • v.29 no.1
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    • pp.13-17
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    • 1998
  • The root of Aralia continentalis Kitagawa (Araliaceae) have been used as an analgesic and fever remedy, and for treatment of rheumatism in Chinese medicine, whereas the young leaves are used for ingredient of salad. Antioxidant activity of the young leaves of A. continentails was determined by measuring lipid peroxide produced when a mouse liver homogenate was exposed to the air at $37^{\circ}C$, using 2-thiobarbituric acid (TBA) and by evaluation the radical scavenging activity on 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical. Chromatographic separation of active fraction led to the isolation of six flavonoids, among which quercetin, hyperoside and kaempferol showed strong antioxidant activities, while 6"-O-acetyl astragalin, astragalin and trifolin were inactive. Adenosine, oleanolic acid 28-O-glucosyl ester and salsoloside C methyl ester isolated from the somewhat active BuOH fraction exhibited no antioxidant activities.

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Chemical Constituents of the Leaves of Weigela subsesillis (병꽃나무 잎의 성분)

  • Won, Hee-Mok;Kwon, Yong-Soo;Lee, Jin-Hoon;Kim, Chang-Min
    • Korean Journal of Pharmacognosy
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    • v.35 no.1 s.136
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    • pp.1-5
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    • 2004
  • Eight compounds were isolated from the n-BuOH soluble fraction of the leaves of Weigela subsesillis. On the basis of spectral data, they wεre identified as $kaempferol-O-3-{\alpha}-L-(3-O-acetyl)\;rhamnopyranosyl-7-O-{\alpha}-L-rhamnopyranoside$ (1), sutchuenoside A (2), kaempferitrin (3), astragalin (4), kaempferol 7-O-rhamnoside (5), scopolin (6), farxin (7), kaempferol 3-O-{\alpha}-L-rhamnosyl-7-O-{\beta}-D-glucoside (8), respectively.