• Title/Summary/Keyword: Borneol

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Emission Rates of Biogenic Volatile Organic Compounds (BVOCs) from Various Tree Species in Korea (I) (국내 수종별 BVOCs 방출량 (1))

  • Chang, Hanna;Son, Jounga;Je, Sun Mi;Oh, Chang-Young;Cho, Minseok;Kim, Juwan;Kim, Jaehyeon;Choi, Won-Sil;Lee, Young-Kyu
    • Journal of Korean Society of Forest Science
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    • v.110 no.4
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    • pp.543-553
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    • 2021
  • This research focused on the investigation of isoprene and terpene emissions from 30 major urban tree species. We conducted sampling using a specific dynamic enclosure system between August and September 2020. Seedlings less than three years old were enclosed in a chamber consisting of a 400 L transparent Tedlar bag. The air-flows from the chamber's outlet were sampled using Tenax-filled sorbent tubes in the presence of standard conditions (temperature: 30℃, PAR: 1,000 μmol/m2/sec). A thermal desorption GC/MS system was used to analyze 38 BVOC compounds (isoprene, monoterpene, sesquiterpene, oxygenated monoterpene, and sesquiterpene). Isoprene emitters included Phyllostachys bambusoides, Quercus serrata, Daphniphyllum macropodum, and Buxus Koreana. Monoterpene emitters included Pinus rigida, Acer pictum subsp. mono, Larix kaempfer, Magnolia denudata, Metasequoia glyptostroboides, Pinus koraiensis, Pinus densiflora, and Abies holophylla. The monoterpene emission profiles were dominated by α-pinene, myrcene, limonene, β-pinen, and sabinene, while caryophyllene and farnesene were the prominent sesquiterpenes. Predominant oxygenated monoterpene compounds were also discovered as pulegone, borneol, menthol, eucalyptol, and nerol, while caryophyllene oxide were the prominent oxygenated sesquiterpenes. Sesquiterpenes and oxygenated sesquiterpenes had relatively lower contributions for all species.

Chemical Composition and Antibacterial Activity of Essential Oil from Artemisia feddei

  • Cha, Jeong-Dan;Jung, Eun-Kyung;Kil, Bong-Seop;Lee, Kyung-Yeol
    • Journal of Microbiology and Biotechnology
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    • v.17 no.12
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    • pp.2061-2065
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    • 2007
  • The chemical components of the essential oil from Artemisia feddei LEV et VNT. were analyzed using GC-MS. Ninety-nine compounds, accounting for 96.23% of the extracted essential oil, were identified. The main oil compounds were 1,8-cineole (16.86%), chamazulene (9.04%), ${\alpha}$-terpineol (8.18%), ${\alpha}$-phellandrene (5.78%), ${\alpha}$-thujone (5.51%), ${\alpha}$-terpinyl acetate (5.07%), borneol (5.08%), ${\beta}$-caryophyllene (4.71%), camphor (4.04%), and terpinen-4-ol (3.04%). The antimicrobial activity of the essential oil and some of its compounds was tested against 15 different genera of oral bacteria. The essential oil from A. feddei had a considerable inhibitory effect on all the obligate anaerobic bacteria tested (MICs, 0.025 to 0.05 mg/ml; MBCs, 0.025 to 0.1 mg/ml), whereas the major compounds demonstrated different degrees of growth inhibition.

Essential Oil Components of Leaves and Resins from Pinus densiflora and Pinus koraiensis (소나무와 잣나무의 잎과 수지에 함유된 정유 성분)

  • Song, Hong-Keun;Kim, Jae-Kwang
    • Journal of the Korean Wood Science and Technology
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    • v.22 no.3
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    • pp.59-67
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    • 1994
  • The essential oils of leaves and resins from P. densiflora and P. koraiensis were analyzed to identify their components. After each retention times of 45 known terpenoids were dertermined with a fixed analytical condition by GC the essential oil compounds of leaves and resins were identified by comparing their retention times with the retention times of known standards. To confirm these results the essential oil components of leaves from P. koraiensis were analized by 2 different GC/MS. According to these results, 36 terpenoids in essential oils of leaves from P. densiflora and P. koraiensis were identified and 15 terpenoids and 22 terpenoids were identified from P. koraiensis resin and P. densiflora resin, respectively. The major components which are more than 2% of total amaunt of volatile components were as follows: 1. The major terpenoids of leaves from red pine. ${\alpha}$-pinene, camphene, ${\beta}$-pinene, D-limonene, ${\beta}$-phellandrene, myrcene, terpinolene, ${\alpha}$-terpineol. 2. The major terpenoids of leaves from korean pine. ${\alpha}$-pinene, camphene, myrcene, D-limonene, 3-carene, terpinolene, bornyl acetate, ${\beta}$-caryophyllene, ${\alpha}$-terpineol, borneol, ${\delta}$-cardinene. 3. The major terpenoids of resin from red pine. ${\alpha}$-pinene, ${\beta}$-pinene, myrcene, ${\beta}$-phellandrene, linalool, linalyl acetate. 4. The major terpenoids of resin from korean pine. ${\alpha}$-pinene, ${\beta}$-pinene, D-limonene, ${\beta}$-caryophyllene, phytol.

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Phytotoxicity and Volatile Monoterpenes of Leaves from Artemisia capillaris and Artemisia iwayomogi Used as Korean Herbal Injin

  • Yun, Kyeong-Won
    • Journal of Ecology and Environment
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    • v.32 no.1
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    • pp.9-12
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    • 2009
  • Artemisia capillaris and Artemisia iwayomogi are weeds used as medicinal plants in Korea under the name "Injin". I collected leaves of A. capillaris and A. iwayomogi, examined them for phytotoxic effects from volatile substances and determined the composition of monoterpenes in the leaves. The effects of volatile substances from each species on seed germination and radicle elongation in each of the two Artemisia species were assessed. The volatile substances of A. capillaris did not negatively affect the seed germination of A. capillaris, but they did inhibit radicle elongation. Rates of seed germination of A. iwayomogi decreased when the seeds were exposed to high concentration of A. capillaris volatile substances. The inhibition of seed germination and radicle elongation by volatile substances from both Artemisia species was stronger for A. iwayomogi than for A. capillaris. I identified the monoterpenoids from the leaves with a gas chromatograph-mass spectrometer (GC-MS). The main constituents of A. capillaris were acenaphthylene (37.91%), $\beta$-pinene (12.08%), 4-carene (10.61%) and $\gamma$-curcumene (9.92%), while those of A. iwayomogi were germacrene-$\delta$ (32.15%), borneol (21.24%), camphor (20.45%) and trans-caryophyllene (7.75%).

Phytochemical Constituents of Amomum xanthioides

  • Choi, Jung-Wook;Kim, Ki-Hyun;Lee, Il-Kyun;Choi, Sang-Un;Lee, Kang-Ro
    • Natural Product Sciences
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    • v.15 no.1
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    • pp.44-49
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    • 2009
  • Seven monoterpenes, three sesquiterpenes, three phenolics and one flavonoid were isolated from the MeOH extract of Amomum xanthioides. Their structures were determined by spectroscopic methods to be caryophyllene oxide (1), bornyl acetate (2), nerolidol (3), spathulenol (4), (-)-borneol (5), (+)-5-endohydroxycamphor (6), vanillic acid (7), protocatechuic acid methyl ester (8), betulabuside A (9), (1R,4S,6R)-6-hydroxyfenchan-2-one-6-O-$\beta$-D-glucopyranoside (10), (1S,4R,6S)-6-hydroxybornan-2-one-6-O-$\beta$-D-glucopyranoside (11), (1R,2S,4S,5R)-angelicoidenol 2-O-$\beta$-D-glucopyranoside (12), 1-O-vanilloyl-$\beta$-D-glucopyranoside (13), and quercetin-3-rhamnopyranoside (14). Compounds 6-14 were isolated for the first time from this plant source. Compounds 3 and 4 exhibited moderate cytotoxicity against four human cancer cell lines in vitro using a SRB bioassay.

Effects of Storage Conditions on Essential Oil of Artemisia princeps Pampan. cv. ssajuari (ssajuarissuk) (저장조건에 따른 싸주아리쑥 정유의 휘발성 성분 변화)

  • Chung, Mi-Sook
    • Korean journal of food and cookery science
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    • v.26 no.6
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    • pp.840-847
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    • 2010
  • In this study, we identified the volatile compounds of Artemisia princeps Pampan. cv. ssajuari (ssajuarissuk) essential oils and analyzed changes in the contents of volatile compounds under four different storage conditions, such as exposure to air at $20^{\circ}C$ and $40^{\circ}C$. Sixty-five volatile compounds consisting of 6 monoterpene hydrocarbons, 23 oxygenated monoterpenes, 16 sesquiterpene hydrocarbons, 6 oxygenated sesquiterpenes, 1 diterpene, 6 benzene derivatives, and 7 non-isoprenoid compounds were identified on the basis of their mass spectra characteristics and retention indices from original ssajuarissuk essential oils. Identified compounds constituted 90.56% of the total peak area. Borneol (10.29%) was the most abundant compound in the original ssajuarissuk essential oils, followed by 1,8-cineole (9.06%), viridiflorol (8.99%), spathulenol (8.73%), $\alpha$-thujone (5.28%), and camphor (4.39%). After six months storage at $40^{\circ}C$ with the cap opened for 3 min everyday, the total amount of volatile compounds in essential oil as determined by the percentage peak area decreased by 84.93%. The total levels of cis-sabinene hydrate, camphor, 4-terpineol, humulene oxide, $\beta$-caryophyllene oxide, and caryophyllene alcohol increased significantly. For ssajuarissuk essential oils stored under experimental conditions, changes in the contents of volatile compounds in essential oils were accelerated by temperature and contact with the atmosphere.

Composition and Anti-cholinesterase Activity of the Essential Oil Obtained from Korean Elsholtzia ciliata (한국산 향유로부터 얻은 정유의 조성과 콜린에스테라제 억제활성)

  • Song, Byong-Min;Choi, Jae Sue;Park, Hee-Juhn
    • Korean Journal of Pharmacognosy
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    • v.47 no.3
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    • pp.226-231
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    • 2016
  • The present GC-MS analysis elucidated the composition of the essential oil obtained from the herb of Elsholtzia ciliata(Lamiaceae). Overall, the content of monoterpenes was higher than that of sesquiterpenes. Monoterpenes rich in this oil were carvone (peak area, 26.180%), camphor (2.304%), borneol (9.974%), dihydrocarveol (3.296%), ${\alpha}$-citral (=geranial, 4.025%), geranic acid (2.961%), while sesquiterpenes occupying relatively higher percentage were ${\alpha}$-humulene (0.918%), (-)-spathulenol (0.974%), ${\alpha}$-caryophyllene oxide (2.014%), globulol (1.362%), ${\beta}$-caryophyllene oxide (0.750%). The components characterizing this oil were 1-octen-3-ol, acetophenone, and butylated hydroxytoluene. The $IC_{50}$ of this oil on acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) were $42.37{\mu}g/ml$ and $121.34{\mu}g/ml$, respectively, suggesting that the essential oil of E. ciliata may be active on the memory loss of patients suffering from Alzheimer's disease.

Qualitative, Quantitative Analysis and Chiral Characterization of the Essential Oils of Juniperus phoenicea L. and Juniperus oxycedrus L.

  • Dahmane, Dahmane;Dahmane, Fahima Abdellatif;Dob, Tahar;Chelghoum, Chaabane
    • Natural Product Sciences
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    • v.26 no.1
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    • pp.97-107
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    • 2020
  • Isolation of oils from leaves of Juniperus phoenicea and Juniperus oxycedrus was obtained by steam distillation extraction method. The compositions of essential oils (EOs) were studied by means of GC-MS and GC-FID, using the internal standard method and relative response factors. Around ninety eight compounds were determined in total, representing 98.25 g/100 g of EO of J. phoenicea and 98.48 g/100 g of EO of J. oxycedrus, respectively. The volatile leaf oils were dominated by the terpenic hydrocarbon fractions (79.87 g/100 g) and (61.27 g/100 g) characterized by high contents of α-pinene (64.6 g/100 g) and (54.0 g/100 g) in J. phoenicea and J. oxycedrus, respectively, as the main component. Also, the enantiomeric distribution of α-pinene, sabinene, camphene, δ-3-carene, β-pinene, limonene, linalool, terpinen-4-ol, bornyl acetate, and borneol in both oils is presented for the first time.

자원식물의 이용현황과 전망 - 기능성 정유성분을 중심으로 -

  • Jeong Hae Gon;Bang Jin Gi;Seong Nak Sul;Kim Seong Min;Ryu Su No
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2003.05a
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    • pp.10-16
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    • 2003
  • Natural resource plants have been useful and helpful materials for human to against diseases and Prevention since ancient Egyptian and Roman times. However, according to recent survey, its habitat and indigenous are continuously decreased and almost extinct some valuable species, as Adonis vernalis, Digitalis lanata etc., especially in Eastern Europe and east Asian countries due to radical political and social reforms. ESCOP and FAO have already initiated to protect the endangered species for conservation, protection and propagation technology but it is not easy tasks without global concerning. Most natural resource plants have volatile components in essential oils and its consumption and demanding is increased every year, which contained certain compounds have no side effects and good properties for biological activities. Essential oils of natural resource plants are also well known for medical purposes, such as Central Nervous System (CNS, linalool), anticancer (d-limonene, perillyl alcohol, etc.), microbial and fungicidal activities (menthol, borneol, etc). Essential oil also used for natural therapy to prevent and increase immune systems instead of chemical synthesis drugs. With this, researchers of natural resource plants are ultimately faced to develop and optimal technology for increasing the Korean farmer's income by high added-value herbal products in present and future.

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Changes in the Volatile Compounds of Artemisia princeps var. orientalis Essential Oils During Storage

  • Chung, Mi-Sook
    • Food Science and Biotechnology
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    • v.18 no.2
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    • pp.481-487
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    • 2009
  • The compositional changes of wormwood (Artemisia princeps var. orientalis) essential oils were studied under 4 different storage conditions i.e., being exposed to air at 20 and $40^{\circ}C$. Sixty-four volatile compounds consisting of 24 terpene hydrocarbons, 18 alcohols, 11 ketones, 6 esters, 1 aldehyde, 2 hydrocarbons, and 2 oxides were identified on the basis of their mass spectra characteristics and retention indices in original wormwood essential oils. Identified compounds constituted 80.53% of the total peak area. Borneol (12.13%) was the most abundant compound, followed by $\alpha$-thujone (8.66%), T-cadinol (6.67%), and 1,8-cineole (6.21%) in original wormwood essential oils. Under the condition of $40^{\circ}C$ of temperature with the cap being opened for 3 min everyday respectively during 6 months of storage, the total amount of functional groups in essential oil determined by peak area percent were decreased by 79.45%, at most. The total level of monoterpene hydrocarbons decreased markedly in the aerobic condition and high temperatures. Whereas the total level of esters increased significantly. Wormwood essential oils were stored in experimental conditions, with the changes in the volatile compounds of essential oils being accelerated by high temperatures and contact with the atmosphere.