• 제목/요약/키워드: flavonol

검색결과 204건 처리시간 0.032초

Effect of Fungal Elicitor and Heavy Metals on the Production of Flavonol Glycosides in Cell Cultures of Ginkgo biloba

  • KIM, MIN SOO;CHUL KIM;DO HYUN JO;YEON WOO RYU
    • Journal of Microbiology and Biotechnology
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    • 제9권5호
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    • pp.661-667
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    • 1999
  • The effect of fungal elicitor and heavy metal salts on the production of flavonol glycosides in cell cultures of Ginkgo biloba was investigated. Among the fungi tested, Trichoderma longibrachiatum ATCC 52326 was found to be the most efficient in the production of flavonol glycosides. Kaempferol production from the elicited callus increased ten-fold as compared to the unelicited callus, while quercetin concentration of elicited cells was nine-fold higher than that of uneliceited cells in suspension cultures. The maximum quercetin concentration of 0.362㎎/l was obtained in 1.25㎎/l of the homogenate elicitor. Among the heavy metal salts tested, CuSO₄ showed a significant effect on quercetin accumulation, reaching to the concentration of 0.526 ㎎/l. Quercetin concentration increased to a maximum of l2-fold in response to CuSO₄ treatment as compared to that of untreated cells. The phenylalanine ammonia-lyase (PAL) activity and flavonol glycosides production simultaneously increased for 5 days of culture after fungal elicitor feeding, and their contents showed the same proportional patterns during the culture period. In contrast, PAL activity of cell cultures treated with CuSO₄ was almost constant during the culture period, although quercetin production increased remarkably.

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진달래꽃으로부터 분리된 플라보노이드 화합물의 항산화성에 관한 연구 (Antioxidative Activity of Flavonoids Isolated from Jindalrae Flowers (Rhododendron mucronulatum Turcz.))

  • 김미애;;정태영
    • Applied Biological Chemistry
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    • 제39권4호
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    • pp.320-326
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    • 1996
  • 우리나라에서 식용으로 이용되는 진달래꽃으로부터 7성분의 항산화성이 있는 플라보노이드 화합물이 분리 동정되었다. 이들 화합물의 구조는 IR, UV, FAB-MS, $^1H\;NMR$$^{13}C\;NMR$에 의해서 얻어진 분광학적인 결과에 근거하여 afzelin, ampelopsin, catechin, myricetin, myricitrin, quercetin 및 quercitrin인 것으로 밝혀졌다. 이들 화합물은 2개의 flavonol, 3개의 flavonol glycoside, 1개의 flavane 및 1개의 dihydroflavonol로 이루어졌다. 에틸에테르 및 초산에틸 구분에 존재하는 flavonol glycoside (14.4 g)는 polyamide C-200 관 크로마토피법, 분취용 박층크로마토그래피법, 재결정화법, sephadex LH-20 관 크로마토그래피법을 통해서 양쪽 구분으로부터 최종적으로 회수된 총 flavonoid량 (17.6g의 82%에 달하였다. 항산화성은 티오시안산철의 존재하에서 리놀레산의 에타놀용액 중에서 측정되었다. 항산화 효능성은 afzelin<$\alpha-tocopherol$

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Two New Flavonol Glycosides from the Aerial Parts of Lotus lalambensis Growing in Saudi Arabia

  • El-Youssef, Hanan M.;Murphy, Brian T.;Amer, Masouda E.;Al-Rehaily, Adnan J.;Abdel-Kader, Maged S.;Kingston, David G.I.
    • Natural Product Sciences
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    • 제14권2호
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    • pp.86-89
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    • 2008
  • Phytochemical study of the aerial parts of Lotus lalambensis Schweinf resulted in the isolation and identification of two new flavonol glycosides; kaempferol $3-O-(5"-acetyl)-apioside-7-O-{\alpha}-L-rhamnopyranoside$ (1) and kaempferol $3-O-{\alpha}-[{\beta}-D-xylosyl-(1""{\rightarrow} 2")-L-rhamnopyranoside]-7-O-{\alpha}-L-rhamnopyranoside$ (2). Structures were determined utilizing different physical, chemical, spectroscopic data including 2D-NMR experiments and HRFABMS.

Meliglabrin, A New Flavonol Derivative from the leaves of Melicope glabra (Blume) T.G. Hartley

  • Saputri, Ratih Dewi;Tjahjandarie, Tjitjik Srie;Tanjung, Mulyadi
    • Natural Product Sciences
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    • 제24권3호
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    • pp.155-158
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    • 2018
  • A new flavonol derivative, meliglabrin (1) along with three known flavonols, ternatin (2), meliternatin (3), and 5,4'-dihydroxy-3,7,3'-trimethoxyflavon (4) were isolated from the leaves of Melicope glabra (Blume) T.G. Hartley. Their structures were determined using extensive spectroscopic methods, including UV, IR, HRESIMS, 1D and 2D NMR. Compounds 1 - 4 were evaluated for their cytotoxicity against murine leukemia P-388 cells, compound 4 showed moderate activity.

Flavonol Glycosides of Maesa Lanceolata Leaves

  • Manguro, Lawrence O. Arot;Lemmen, Peter;Ugi, Ivar;Kraus, Wolfgang
    • Natural Product Sciences
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    • 제8권3호
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    • pp.77-82
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    • 2002
  • An investigation of the methanolic extract of Maesa lanceolata leaves has led to the isolation of four novel flavonol glycosides characterised as myricetin 3-0-2', 3', 4'-triacetylxylopyranoside (1), quercetin $3-O-{\beta}-3'$, $6'-diacetylglucopyranosyl-(1{\longrightarrow}4)-{\alpha}-2'$, 3'-diacetylrhamnopyranoside (2), myricetin $3-O-xylopyranosyl-(1{\to}3)-{\alpha}-rhamnopyranoside$ (3) and quercetin $3-O-{\beta}-ga1actopyranosyl-(1{\to}4)-{\alpha}-rhamnopyranoside-7-O-{\beta}-galactopyranoside$ (4). Also isolated from the same extract were known flavonols; quercetin (5), myricetin (6), quercetin 3-O-xylopyranoside (7), quercetin $3-O-{\alpha}-rhamnopyranoside$ (8), myricetin $3-O-{\alpha}-rhamnopyranoside$ (9), myricetin $3-O-{\beta}-galactopyranoside$ (10) and quercetin 3-O-rutinoside (11).

삼지구엽초(三枝九葉草) Flavonoid Glycoside의 계절적(季節的) 변동(變動) (Seasonal variation of flavonoid glycosides in Epimedium koreanum)

  • 강삼식;김주선
    • 생약학회지
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    • 제22권2호
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    • pp.85-90
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    • 1991
  • The seasonal variation of two flavonol glycosides, icariin and epimedoside A, in the aerial parts and underground parts of Epimedium koreanum from June through September was investigated. The icariin concentration was decreased with time in both parts. Epimedoside A concentration was fluctuated, being highest in June and lowest in July in the underground parts. In the aerial parts, however, it was almost same in concentration. Determinations were made of the occurrence of two new flavonol glycosides, 2‘-O-rbamnosyl ikarisoside A and 2’-O-rhamnosyl icarisid II in the aerial parts and their changes in concentration were similar to those in the underground parts, being highest in July in both parts.

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지리터리풀의 플라보놀배당체 (Flavonol Glycoside from the Aerial Part of Filipendula Formosa)

  • 황완균;함인혜;성환길;이무택
    • 약학회지
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    • 제43권1호
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    • pp.5-10
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    • 1999
  • As one of the serial studies on the specific and indigenous plants of Mt. Chiri the constituents of aerial part from filipendula formosa (Rosaceae) were investigated. From of the MeOH extract, five flavonol glycosides, kaempferol-3-O-$\beta$-D-galactopyranoside, querecetin-3-O-$\beta$-D-galactopyranoside, quercetin-3-O-$\alpha$-Lrhamopyranosyl (1 6)-$\beta$-D-galactopyranoside, kaempferol-3-O-$\alpha$-L-rhamnopyranosyl (1 6)-$\beta$-D-galactopyranoside and quercetin-7-O-$\beta$-D-glucopyranosy-3-O-$\beta$-D-galactopyranoside were isolated by column chromatographic separation using Amberlite XAD-2 and Sephadex LH-20, and identified physicochemical evidences (IR, FAB-Mass, $^1H,{\;}^{13}C-NMR$).

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CPAE 세포를 이용한 Kaempferol과 Quercetin의 산화스트레스 극복효과 (Protective Effects of Kaempferol and Quercetin on Oxidative Stress in CPAE Cell)

  • 박신영
    • 한국자원식물학회지
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    • 제21권5호
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    • pp.395-401
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    • 2008
  • Flavonoid는 거의 모든 야채와 과일에 함유된 주요한 구성 성분이며 flavonol은 flavonoid 그룹 중 하나로 우리가 식품으로 섭취하는 대표적인 성분으로는 kaempferol과 quercetin이 알려져 있다. kaempferol과 auercetin은 퇴행성질병의 예방에 효과가 있다고 알려져 있어 식품 첨가물로 사용되고 있다. 본 연구의 목적은 항산화제로도 알려진 kaempferol과 quercetin을 이용하여 다양한 농도에서의 소의 폐혈관내피 세포주에 대한 각각의 산화스트레스 보호효과와 두 가지 물질의 동시 처리 시에 나타날 수 있는 상승효과를 밝히기 위함이다. 1 mM의 $H_{2}O_{2}$를 처리하여 산화스트레스를 가한 세포나 가하지 아니한 세포에서나 모두 kaempferol과 quercetin의 처리로 세포의 활성도가 높았다. 그러나 특히 산화스트레스를 가한 세포에서 항산화물의 산화스트레스 극복효과가 현저하게 나타났다. 항산화물의 농도가 고농도의 경우 오히려 증가된 세포활성도가 저하되는 반응을 보여 너무 높은 농도의 처리는 오히려 항산화효과를 억제할 수 있음을 알 수 있었다. 일반적으로 우리가 섭취하는 식품에는 kaempferol과 quercetin이 함께 포함되어 있으므로 이 두 가지 물질을 일정 비율로 서로 섞은 다음 산화스트레스 처리와 함에 처리하여 조사한 결과 단독으로 처리한 결과와 달리 고농도 조건에서도 세포활성도가 아주 높게 나타났다. 이상의 결과에서 항산화물은 생체에서 일어날 수 있는 많은 산화스트레스 상태를 완화시킬 수 있으나 가장 우수한 효능을 나타낼 수 있는 적정 농도의 조사가 중요하며 특히 각각의 항산화물을 단독으로 사용하는 것 보다 함께 사용하는 것이 상승효과를 나타낼 수 있음을 알 수 있었다.

Flavonol Glycosides from the Leaves of Machilus thunbergii

  • Park, Jong-Cheol;Young, Han-Suk;Park, Hee-Juhn;Park, Soon-Chul
    • 생약학회지
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    • 제21권1호
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    • pp.60-63
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    • 1990
  • From the leaves of Machilus thunbergii Sieb. et Zucc. (Lauraceae) afzelin, guaiyaverin and rutin were isolated and identified by chemical and spectral analysis.

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섬오갈피나무잎의 성분 (I) (Constituents of Acanthopanax koreanum Leaves)

  • 정지연;한덕룡
    • 약학회지
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    • 제35권3호
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    • pp.240-244
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    • 1991
  • A new lupane triterpenoid saponin, 3, 11-dihydroxy-lupan-20-en-28-oic acid 28-o-$\alpha$-L-rhamnopyranosyl-(1$\rightarrow$4)-$\beta$-D-glucopyranosyl-(1$\rightarrow$6)-B-D-glucopyranosyl ester, have been isolated from the leaves of Acanthopanax koreanum Nakai (Araliaceae) together with one known flavonol glycoside, rutin. The structure were elucidated on the basis of spectral and chemical evidence.

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