• 제목/요약/키워드: chavicol

검색결과 10건 처리시간 0.019초

한국산 바질(Ocimum basilicum L.)의 휘발성 성분 (Volatile Components of Basil(Ocimum basilicum L.) cultivated in Korea)

  • 안대진
    • 한국식품영양학회지
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    • 제12권5호
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    • pp.513-517
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    • 1999
  • Theessential oils of anise darkopal lettuce and sweet basils cultivated in Korea were extracted by simulatneous steam distillation and extraction method and were analyzed by GC/MSD. Total 41 com-ponents were identified in essential oils including 11 alcohols, 6 carbonyls 19 hydrocarbons and 5 esters components. The major components were 1,8-cineole linalool $\alpha$-bergamotene $\beta$-elemene methyl chavicol, $\beta$-cubebene methyl cinnamate and eugenol. Darkopal lettuce and sweet basils were rich in linalool(30.1-36.5%) methyl chavicol(8.1-25.5%) and relatively poor in methyl cinnamate(0-2.71%) Anise basil was rich in linalool(28.5%) and methyl cinnamate(23.1%) However methyl chavicol which was known as one of the main components of bisil was not detected.

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식물조직배양에 의한 배초향유의 생산 (Production of Giant Hyssop Oil by Plant Tissue Culture)

  • 신순희;김혜경;지형준
    • 생약학회지
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    • 제22권2호
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    • pp.91-94
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    • 1991
  • Callus was derived from the seedlings of Agastache rugosa(Labiatae). The growth rate of callus and the production of essential oil were studied with the variation of culturing conditions. 2, 4-D 2ppm in the medium was more effective for the production of essential oil than NAA 2ppm. The growth rate of callus and the production of essential oil were inhibited by the illumination of the light. The essential oils from Agastache rugosa and the callus cultivated on the medium containing 2, 4-D 2 ppm and kinetin 0.2 ppm were analysed by TLC, gas chromatography and mass spectrometry. These two oils showed different compositions. The main component of the plant oil, methyl chavicol was not contained in the callus oil.

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수증기 증류법과 초임계유체 추출법으로 분리한 배초향의 정유성분 조성 비교 (Comparison of Essential Oil Composition Extracted from Agastache rugosa by Steam Distillation and Supercritical Fluid Extraction)

  • 김근수;김삼곤;김용하;김영회;이종철
    • 한국연초학회지
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    • 제23권1호
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    • pp.65-70
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    • 2001
  • In order to compare the extraction patterns of main components from the raw material between the extraction methods, the aerial parts (dried stem, leaves, and flowers) of Agastache rugosa were extracted by SDE simultaneous steam distillation & extraction) and SFE (supercritical fluid extraction). Volatile components of essential oil and extract were identified by GC and GC-MSD. The contents of essential oil extracted by SDE were 0.49% in aerial part of Agastache rugosa on dry basis. Major components were methyl chavicol(27.2%), isomenthone(24.6%), hexadecanoic acid(13.0%). menthone (5.5%) among 32 kinds of components confirmed in essential oil. On the other hand, the contents of SFE extracts revealed 3.21% on dry basis, 6 times higher than those of SDE. Major components were isomenthone(15.3%), hexadecanoic acid(13.7%), methyl chavicol(12.6%), benzoic acid(3.8%) among 33 kinds of components identified in extract.

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배초향의 정유성분조성 (Essential Oils in Aerial Parts of Agastache rugosa O. Kuntze.)

  • 이종철;최영현;김영회
    • 한국약용작물학회지
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    • 제2권2호
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    • pp.168-173
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    • 1994
  • 배초향의 지상부로 부터 수증기 증류법에 의해 정유성분을 분리한 다음 silica gel column chromatography에 의해 탄화수소화합물 분획과 함산소화합물 분확으로 나눈후 GC 및 GC-MS에 의해 각 분획의 성분조성을 분석한 결과는 다음과 같다. 1. 배초향의 정유함량은 건물증량으로 잎에서는 0.29%, 꽃에서는 0.38%였으나 줄기에서는 전혀 검출되지 않았다. 2. 잎의 정유에서 분리한 탄화수소화합물 분획에서 확인된 13종의 성분중 주성분은 ${\beta}-caryophyllene(59.3%)$, limonene(13.1%), ${\delta}adinene$ (10.7%) 이었고, 함산소화합물 분획에서 확인된 44종의 성분중 주성분은 methyl chavicol(79.1%), cis-3-(l-propenyl)phenol(4.5%) 등이었다. 3. 잎과 꽃의 정유성분 조성에서 양적으로 가장 많이 함유된 성분은 methylchavicol 이었고, limonene, trans-2-hexenal, 1-octen-3-one, 6,10,14-trimethylpentadecan-2-one 및 phytol등은 잎에서 특징적으로 검출된 반면 jasmone 및 p-methoxyacetophenone등은 양적으로 미량이지만 꽃에서 많이 검출되었다.

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정향 추출물로부터 항진균성 물질의 분리 및 동정 (Isolation and Identification of Antifungal Compounds from Eugenia caryophyllata Extracts)

  • 이진만;허상선
    • 한국응용과학기술학회지
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    • 제31권4호
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    • pp.740-747
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    • 2014
  • 식품부패미생물에 대한 정향추출물의 항진균력을 확인하고 유효성분을 분리한 후 그 구조를 확인하였다. 정향 추출물은 대표적인 항진균제인 메타중아황산칼륨 및 myconazole과 비슷한 항진균 활성을 나타내었다. 용매분획을 실시한 결과 hexane fraction이 가장 항진균활성이 높은 것으로 나타났다. 이 hexane 분획을 silica gel column chromatography를 통해 분리하여 항진균활성이 가장 큰 분획물인 JH-1, JH-2-1 및 JH-2-2을 분리하였다. 이들 화합물은 EI-MS 와 $^1H$-NMR, $^{13}C$-NMR 결과로부터 활성물질의 구조를 동정하였으며 그 결과 JH-1은 eugenol, JH-2-1은 eugenol acetate 그리고 JH-2-2은 chavicol인 것으로 확인하였다.

Characterization of Fennel Flavors by Solid Phase Trapping-Solvent Extraction and Gas Chromatography-Mass Spectrometry

  • Shin, Yeon-Jae;Jung, Mi-Jin;Kim, Nam-Sun;Kim, Kun;Lee, Dong-Sun
    • Bulletin of the Korean Chemical Society
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    • 제28권12호
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    • pp.2389-2395
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    • 2007
  • Headspace solid phase trapping solvent extraction (HS-SPTE) and GC-MS was applied for the characterization of volatile flavors from fennel, anise seed, star-anise, dill seed, fennel bean, and Ricard aperitif liquor. Tenax was used for HS-SPTE adsorption material. Recoveries, precision, linear dynamic ranges, and the limit of detection in the analytical method were validated. There were some similarities and distinct differences between fennel-like samples. The Korean and the Chinese fennels contained trans-anethole, (+)-limonene, anisealdehyde, methyl chavicol as major components. The volatile aroma components from star anise were characterised by rich trans-anethole, (+)-limonene, methyl chavicol, and anisaldehyde. Additionally, principal component analysis (PCA) has been used for characterizing or classifying eight different fennel-like samples according to origin or other features. A quite different pattern of dill seed was found due to the presence of apiol (dill).

미나리과 허브식물의 향기성분 (Essential Oil Composition of Umbelliferous Herbs)

  • 홍철운;김명곤;김철생;김남균
    • 한국식품영양학회지
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    • 제14권1호
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    • pp.10-14
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    • 2001
  • 온실에서 재배한 chervil (Anthricus cerefolium)과 coriander (Coriandrum sativum)의 잎, 줄기 및 종실로부터 SDE방법에 의해 향기성분을 분리한 다음 GC 및 GC-MS에 의해 향기성분을 분리 동정한 결과 49종의 성분을 확인하였다. Coriander의 경엽에서는 $\beta$-sesquiphellandrene (17.6%), germacrene B (7.7%), nerolidol (6.9%), selinene-4-ol (6.0%) 등이, Coria-nder의 종실로부터는 linalool, decanal (5.6%), ${\gamma}$-terpinene (3.8%), $\rho$-cymene 등이, chervil에서는 methyl chavicol, 1-allyl-2,4-dimethoxy benzene 등이 주요 향기성분으로 나타나 주로 terpene류 들에 의해 향기성분이 발현됨을 알 수 있었다.

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국내 재배 바질의 품종간 부위별 휘발성 성분 비교 (Comparison of Volatile Components in Organs of Ocimum basilicum L. cultivated in Korea)

  • 안대진;이재곤;김미주;이종철
    • 한국약용작물학회지
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    • 제9권2호
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    • pp.130-138
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    • 2001
  • 한국의 동일 지역에서 10개 품종의 바질을 재배한 식물체를 꽃, 잎, 줄기 부위별로 분류하고 이들을 동시증류추출장치 (SDE)를 이용하여 essential을 분리하였다. 분리된 정유성분을 GC/MSD로 동정하여 alcohol류 11종, carbonyl류 6종, hydrocarbon류 20종, ester 화합물 5종으로 총 42종의 화합물을 확인하였다. 주요 성분들은 linatool, methyl chavicol, eugenol, 1,8-cineole, trans-methyl cinnamate등이었다. Peak의 면적비 (%)에 의한 품종간, 식물체 부위별 휘발성 성분을 보면 바질의 주성분인 linalool의 함량은 꽃에는 $31.76{\sim}53.04%$가 있었으며, 잎중에는 linalool이 $21.75{\sim}35.83%$, 줄기에는 $3.53{\sim}22.36%$가 들어 있었다. 식물체 부위별로는 꽃에 가장 많았고 다음이 잎, 줄기의 순이었으며 glove 바질이 $22.4{\sim}53.0%$로 많았고, cinnamon 바질이 $21.7{\sim}32.0%$로 적은 것으로 나타났다. Methyl chavicol은 꽃에는 $0.23{\sim}24.14%$가 있었으며, 잎중에는 $0.41{\sim}32.96%$, 줄기에는 $0.00{\sim}2.16%$가 들어 있었고 식물체 부위별 함량은 잎에 가장 많았고 다음이 꽃, 줄기의 순이었다. Eugenol의 함량은 꽃에는 $4.10{\sim}21.24%$가 있었으며 , 잎중에는 $5.29{\sim}48.74%$가 함유되었고 figz 바질에 48.7%로 많았으며, 줄기에는 $7.59{\sim}32.09%$가 들어 있었고, 식물체 부위별의 eugenol함량은 잎에 가장 많았고 다음이 꽃, 줄기의 순이었다. trans-methyl cinnamate는 꽃에 $0.03{\sim}28.68%$가 있었으며, 잎중에는 $0.00{\sim}38.49%$, 줄기에는 cinnamon바질이 20.63%로 가장 많이 함유되어 있었다. 식물체 부위별의 함량은 cinnamon바질의 잎에 가장 많았고 다음이 꽃, 줄기의 순으로 나타났다. 꽃, 잎, 줄기의 부위별의 향기 성분을 비교하여 보면 꽃, 잎 부위에 비해 줄기 부위의 성분 수 및 함량이 매우 적은 것으로 나타났으며 꽃과 잎 부위는 성분들간에 약간의 차이는 있으나 전반적으로 유사한 경향을 나타내었다.

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아로마테라피용 배초향(Agastache rugosa) 줄기의 방향성 정유 성분 (Flavoral Essential Oil Components in the Stems of Agastache rugosa for Aromatherapy)

  • 김정미
    • 한국식생활문화학회지
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    • 제36권3호
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    • pp.317-324
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    • 2021
  • This study was carried out to investigate the flavoral essential oil components in the stems of Agastache rugosa. These components were analyzed using gas chromatography-mass selective detector (GC-MSD). The stems of Agastache rugosa were contained alcohols, aldehydes, ketones, fatty acid esters, and terpenoids. The peak area (%) of estragole was highest among its oil components and the next were pulegone and menthone. The terpenoid alcohols found were 1-octen-3-ol, chavicol, spatulenol, 3-hexen-1-ol, 2-cyclohexen-1-ol, methyl eugenol, and octaethyllene glycol. The stems also contained ketones such as pulegone, menthone, cis-isopulegone, 2-cyclohexene-1-one, 3-octanone, 1-cyclohexanone, isoindole-1-one, t-ionone, inden-2-one, as well as the aldehydes of 4-methoxycinnam and benzaldehyde. The following esters were also detected 1-isopulegone-3-yl acetate, caryophyllene oxide, acetate and benzendicarboxylic acid ester. The terpenoids in the stems were identified as caryophyllene, limonene, cyclohexasiloxane-D, germacrene-D, anethole, cadinene, muurolene, and bourbonene. Overall Agastache rugosa contained several functional oil components including phenylpropanoids and terpenoids as flavoral essential oil components for natural aromatherapy.

배초향 에센셜오일의 화학적 조성과 생리활성 특성 (Chemical Composition and Biological Activity of Essential Oil of Agastache rugosa (Fisch. & C. A. Mey.) O. Kuntze)

  • 홍민지;김주호;김희연;김민주;김성문
    • 한국약용작물학회지
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    • 제28권2호
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    • pp.95-110
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    • 2020
  • Background: In Korea, Agastache rugosa (Fisch. & C. A. Mey.) O. Kuntze is one of the well-known perennial plants belonging to Lamiaceae. This mint-fragranced plant has long been used for the treatment of abdominal pain, congestion, chills, and diarrhea since the Goryeo Dynasty. Although this plant has various medicinal properties, it is only used as a spice and for landscape purposes. Methods and Results: The objective of this paper was to review the chemical composition and biological properties of the essential oil of A. rugosa. Several studies reported that the essential oil contains more than 60 different chemical components of monoterpene and sesquiterpene hydrocarbons and oxygenated hydrocarbons. The major component is methyl chavicol (estragole), accounting for 64% - 88% of the oil. The chemical composition of this essential oil vaired widely according to the planting time, environmental conditions, planting distance, fertilizer application, and harvesting time. Conclusions: The essential oil of A. rugosa possesses various pharmacological properties such as antioxidant, antibacterial, anticancer, antiviral, nematicidal, antifungal, insecticidal, wrinkle improver, stress reliever, and Alzheimer's disease alleviator. Hence, the essential oil from A. rugosa could be used for the development of high value-added industrial products in the near future.