• Title/Summary/Keyword: Natural Extract

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Cytotoxic Constituents of Chelidonium majus var. asiaticum (애기똥풀의 세포독성 성분)

  • Choi, Sang-Zin;Kwon, Hak-Chul;Yi, Jae-Hun;Lee, Won-Bin;Choi, Sang-Un;Lee, Kang-Ro
    • Korean Journal of Pharmacognosy
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    • v.32 no.1 s.124
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    • pp.10-14
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    • 2001
  • Three alkaloids, (-)-stylopine (I), (+)-chelidonine (II), oxysanguinarine (III) and two triterpenoids, $6{\alpha}-hydroxy-A-neo-germacer-22(29)-en-30-oic\;acid$ (IV) and hop-22(29)-en-30-oic acid (V), were isolated from the methanol extract of of Chelidonium majus var. asiaticum, and their cytotoxicity were tested against five cultured human tumor cell lines.

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Phenolic Constituents of Althaea rosea Canival. (접시꽃뿌리의 페놀성 성분)

  • Kim, Do-Hoon;Yang, Min-Cheol;Lee, Kyu-Ha;Kim, Ki-Hyun;Lee, Kang-Ro
    • Korean Journal of Pharmacognosy
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    • v.38 no.3 s.150
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    • pp.222-226
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    • 2007
  • Seven compounds, scopoletin (1), p-hydroxyphenethyl trans-ferulate (2), $1-({\alpha}-L-rhamnosyl(1\;{\rightarrow}\;6)-{\beta}-D-glucopyranosyloxy)-3,4,5-trimethoxybenzene$ (3), benzyl ${\alpha}-L-rhamnopyranosyl(1\;{\rightarrow}\;6)-{\beta}-D-glucopyranoside$ (4), suberic acid (5), sebacic acid (6) and scopolin (7) were isolated from the methanol extract of the roots of Althaea rosea Canival. Compounds $1\;{\sim}\;7$ were first isolated from this plant. The isolated compounds were tested for their cytotoxicity against human cancer cell lines using a SRB method in vitro.

Phytochemical Constituents of Geranium eriostemon

  • Chang, Sang-Wook;Kim, Ki-Hyun;Lee, Il-Kyun;Choi, Sang-Un;Lee, Kang-Ro
    • Natural Product Sciences
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    • v.15 no.3
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    • pp.151-155
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    • 2009
  • Phytochemical investigation of the MeOH extract of the aerial parts of Geranium eriostemon resulted in the isolation of one triterpene, three furofuran lignans, one syringic acid and four flavonoids. Their chemical structures were characterized by spectroscopic methods to be oleanolic acid (1), (-)-kobusin (2), (-)-eudesmin (3), (+)-magnolin (4), syringic acid (5), quercetin (6), juglanin (7), juglalin (8), and hyperin (9). All compounds (1 - 9) were isolated for the first time from this plant source and the compounds 2 - 4 were reported first from the genus Geranium. Compounds 4 - 6 exhibited moderate cytotoxicity against four human cancer cell lines in vitro using a SRB bioassay.

The anti-inflammatory activity of Kalopanax pictus bark extract (V). Effects of saponins from KP on $NF-_K/B$ and elastase activities

  • Li, Da-Wei;Ahn, Kwang-Seok;Joo, Eun-Ji;Cho, So-Yean;Jeong, Choon-Sik;Lee, Eun-Bang;Kim, Yeong-Shik
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.255.3-256
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    • 2002
  • In the previous studies. we confirmed the anti-inflammatory components of Kalopanax pictus bark using activity-guided fractionation in vivo. For the elucidation of anti-inflammatory mechanism, we evaluated the effects of these components on the inhibition of NF-$\sub$K/B activity and human leukocyte elastase. A cell-based assay system developed in our laboratory was used in transfectant RAW 264.7 cells. (omitted)

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A Study on the Well-being Technique Natural Dyeing with Natural Resources (1) - Natural Dyeing of Cotton Fabric using Perilla frutescens var. acuta - (천연물질을 활용한 웰빙기법 천연염색에 관한 연구 (1) - 소엽을 이용한 면직물의 염색 -)

  • Kim, Sang-Yool
    • Fashion & Textile Research Journal
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    • v.10 no.5
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    • pp.771-778
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    • 2008
  • The natural dyeing of cotton fabric with Perilla frutescens var. acuta extract was investigated. The proper extraction temperature and time were $100^{\circ}C$ and 120 minutes. The proper temperature, time and colorant powder concentration for the dyeing of cotton fabric with Perilla frutescens var. acuta powder were $90^{\circ}C$, 60 minutes and 15%(o.w.b.), respectively. In various mordanted methods, the K/S values of simultaneous-mordanted methods were higher than those of pre-and post-mordanted methods. And the Cu-and Fe mordant showed higher K/S values than those of other mordants. Light colorfasness of mordanted cotton fabric was poor, but the other colorfasnesses were shown to be good. The cotton fabric mordanted with Cu mordant was showed effective bacterial reduction.

A New Acylglycosyl Sterol from Quisqualis Fructus

  • Kwon, Hak-Cheol;Min, Young-Duk;Kim, Kyung-Ran;Bang, Eun-Jung;Lee, Chong-Soon;Lee, Kang-Ro
    • Archives of Pharmacal Research
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    • v.26 no.4
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    • pp.275-278
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    • 2003
  • A new acylglycosyl Sterol (4) was isolated from the MeOH extract of Quisqualis Fructus together with four known compounds. On the basis of spectroscopic data, their structures were elucidated as clerosterol (1), betulinic acid (2), methylursolate (3), 3-Ο-[6 -Ο-(8Z-octadecenoyl)-$\beta$-D-glucopyranosyl]-clerosterol (4) and $\alpha$-xylofuranosyluracil (5).

Anti-HIV Activity of Dehydroaltenusin- a Metabolite from a Streptomyces sp.

  • Jabbar, Abdul;Shresta, Ajude Prashad;Hasan, Choudhury Mahmood;Rashid, Mohammad Abdur
    • Natural Product Sciences
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    • v.5 no.4
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    • pp.162-164
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    • 1999
  • Dehydroaltenusin (1) was isolated from the chloroform extract of the culture filtrate of a Streptomyces sp. and its structure was determined from spectral data as well as by comparison with published values. In an XTT-based in vitro anti-HIV assay, dehydroaltenusin effectively inhibited the cytopathic effects of HIV infection at a concentration of $1-5\;{\mu}g/mL$.

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Phytochemical Constituents of Bletilla striata and Their Cytotoxic Activity

  • Woo, Kyeong Wan;Park, Jong Eel;Choi, Sang Un;Kim, Ki Hyun;Lee, Kang Ro
    • Natural Product Sciences
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    • v.20 no.2
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    • pp.91-94
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    • 2014
  • Column chromatographic separation of the MeOH extract from the tubers of Bletilla striata yielded seven phenolic components including four phenanthrenes, 3,7-dihydroxy-2,4-dimethoxyphenanthrene (1), 3,7-dihydroxy-2,4,8-trimethoxyphenanthrene (2), 9,10-dihydro-4,7-dimethoxyphenanthrene-2,8-diol (3), and 9,10-dihydro-1-(4'-hydroxybenzyl)-4,7-dimethoxyphenanthrene-2,8-diol (4) and three stilbenes, gigantol (5), 3',4"-dihydroxy-5',3",5"-trimethoxybibenzyl (6), and batatasin III (7). Their structures were determined on the basis of NMR spectroscopic data. Among them, compound 2, 3, and 6 were reported for the first time from this plant. The isolated compounds (1-7) were tested for cytotoxicity against four human tumor cell lines in vitro using a Sulforhodamin B bioassay.

Phytochemical Constituents of the Leaves of Hosta longipes

  • Kim, Chung Sub;Kim, Ki Hyun;Lee, Kang Ro
    • Natural Product Sciences
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    • v.20 no.2
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    • pp.86-90
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    • 2014
  • Phytochemical investigation of the 80% MeOH extract from the leaves of Hosta longipes resulted in the isolation of sixteen compounds (1 - 16). The structures of the compounds were elucidated by spectroscopic methods to be methyl 10,10-dimethoxydecanoate (1), methyl 10-hydroxy-8E,12Z-octadecadienoate (2), methyl coriolate (3), trans-phytol (4), phytene-1,2-diol (5), phyton (6), (3S,5R,6S,7E,9R)-7-megastigmene-3,6,9-triol (7), (3S,5R,6S,9R)-3,6,9-trihydroxymegastigman-7-ene (8), shikimic acid (9), p-coumaramide (10), trans-N-p-coumaroyltyramine (11), cis-N-coumaroyltyramine (12), tryptophan (13), thymidine (14), adenosine (15), and deoxyadenosine (16). Compound 1 was synthesized, but not yet isolated from natural source, and compounds 2-16 were isolated for the first time from this plant source.

Triterpenes from Perilla frutescens var. acuta and Their Cytotoxic Activity

  • Woo, Kyeong Wan;Han, Ji Young;Choi, Sang Un;Kim, Ki Hyun;Lee, Kang Ro
    • Natural Product Sciences
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    • v.20 no.2
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    • pp.71-75
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    • 2014
  • Nine triterpenes were isolated from the petroleum ether and MeOH extract of Perilla frutescens var. acuta leaves. Their structures were determined to be arjunic acid (1), maslinic acid (2), oleanolic acid (3), euscaphic acid (4), tormentic acid (5), 3-O-trans-p-coumaroyltormentic acid (6), 28-formyloxy-$3{\beta}$-hydroxy-urs-12-ene (7), ursolic acid (8), and corosolic acid (9) by spectroscopic methods. The compounds 1, 2, 4, 6, and 7 were isolated for the first time from this plant and the Genus Labiatae. The isolated compounds (1-9) were tested for cytotoxicity against four human tumor cell lines (A549, SK-OV-3, SK-MEL-2, and HCT-15) in vitro using a Sulforhodamin B bioassay.