Search results for "caryophyllene"

showing 10 items of 45 documents

Comparative Evaluation of the Essential Oil of the New Ukrainian Lavandula angustifolia and Lavandula x intermedia Cultivars Grown on the Same Plots

2022

New cultivars of lavender adapted to arid steppe conditions were developed by the Institute of Rice of Ukrainian National Academy of Agrarian Sciences (NAAS). This work is a part of the characterization process of the new cultivars. The chemical composition of the essential oil of the seven new Lavandula angustifolia and eight new Lavandula x intermedia cultivars was investigated and compared. In total, 71 different compounds were identified. Linalool and linalool acetate were the main components in both species in ranges of 26.14–57.07% and 9.08–24.45%, respectively. They were followed by terpinen-4-ol (2.16–22.44%), lavandulyl acetate (2.12–10.23%), and lavandulol (1.30–3.14) in the case …

Lavandulalinaloolcompositionlavandincaryophyllene oxideGC–MSlavenderessential oilMolecules
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Volatile constituents of flowering twig oil

2004

Summary The chemical constituents of the volatile oil of mature flowering twigs of wild Hyptis swaveolens growing widely in northern India were analyzed by gas chromatography–mass spectrometry. Forty one compounds consisting of 77.75% of the oil were identified. The major constituents of the oil were sabinene (14.18%), β-caryophyllene (12.52%), caryophyllene oxide (10.50%), abietatriene (6.42%), terpinen-4-ol (4.88%), limonene (4.42%), cis -sabinene hydrate (3.52%), spathulenol (3.14%), α-terpinolene (2.75%), β-pinene (2.42%), p -cymen-8-ol (1.76%), trans -sabinene hydrate (1.33%) and abietadiene (1.01%).

LimonenebiologyHyptisSabinenePlant Sciencebiology.organism_classificationTwigSpathulenolchemistry.chemical_compoundRutaceaeComplementary and alternative medicinechemistryCaryophyllene oxideBotanyHydrateInternational Journal of Aromatherapy
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Activity against Microorganisms Affecting Cellulosic Objects of the Volatile Constituents of Leonotis nepetaefolia from Nicaragua

2014

The chemical composition of the essential oil from aerial parts of L. nepetaefolia (L.) R. Br. collected in Nicaragua was evaluated by GC and GC-MS. The main components were ( Z)-phytol (22.8%), caryophyllene oxide (18.9%) and hexahydrofarnesylacetone (9.0%). The antibacterial activity against several Gram + and Gram - bacteria, including Bacillus cereus and B. subtilis, both infesting historical cellulosic material, was also determined. B. cereus, B. subtilis and Staphylococcus epidermis were the most affected by the action of the oil.

MicroorganismBacillus cereusNicaraguaMicrobial Sensitivity TestsPlant ScienceGram-Positive Bacterialaw.inventionBacillus cereusPhytollawVolatile componentGram-Negative BacteriaDrug DiscoveryOils VolatileFood scienceEssential oilPolycyclic SesquiterpenesPharmacologyLamiaceaebiologyTerpenesChemistryfungiLeonotis nepetaefoliadisinfestation of museum objects.General MedicineHexahydrofarnesylacetonebiology.organism_classification(Z)-PhytolAnti-Bacterial AgentsComplementary and alternative medicineCereusCaryophyllene oxideLamiaceaeAntibacterial activitySesquiterpenesBacteriaBacillus subtilisLeonotis
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A novel caryophyllene type sesquiterpene lactone from Asparagus falcatus (Linn.); Structure elucidation and anti-angiogenic activity on HUVECs

2011

Abstract In this study the novel caryophyllene type sesquiterpene lactone (aspfalcolide) has been isolated from the leaves of Asparagus falcatus (Linn.) and characterized by IR, 1D NMR, 2D NMR, EI–MS, HR–ESI–MS and X-ray single crystal diffraction analysis. The aspfalcolide crystallizes in the orthorhombic space group P212121 with a = 6.37360(10), b = 7.6890(2), c = 27.3281(6) A, α = β = γ = 90° and Z = 4. One intermolecular O–H⋯O hydrogen bond enforces these natural molecules to form infinite chains through the crystal. Aspfalcolide was screened for its anti-angiogenic activity in human umbilical vein endothelial cells (HUVECs) and the result showed the remarkable inhibitory effect of aspf…

Models MolecularVascular Endothelial Growth Factor AStereochemistryMolecular ConformationAngiogenesis InhibitorsSesquiterpene lactoneUmbilical veinLactoneschemistry.chemical_compoundCell MovementDrug DiscoveryHuman Umbilical Vein Endothelial CellsHumansta116Cell ProliferationAsparagus falcatusPolycyclic SesquiterpenesPharmacologychemistry.chemical_classificationTube formationbiologyHydrogen bondCaryophylleneOrganic ChemistryGeneral Medicinebiology.organism_classificationchemistryOrthorhombic crystal systemAsparagus PlantSesquiterpenesTwo-dimensional nuclear magnetic resonance spectroscopyEuropean Journal of Medicinal Chemistry
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Volatile constituents of Stachys palaestina L. (Palestine woundwort) growing in Lebanon

2014

The hydrodistillation of the aerial parts of Stachys palaestina L. collected in Lebanon in the Kadisha Valley, yielded 0.1% (w/w) of essential oil. GC and GC-MS analyses enabled the identification of 87 compounds representing 90.8% of the total oil. Hexadecanoic acid (10%), hexahydrofarnesyl acetone (6.9%), eugenol (4.3%) and (E)-caryophyllene (4.3%) were the main components. On the whole, the oil was constituted mainly of sesquiterpenes (37.7%), among which sesquiterpene hydrocarbons (20.7%) slightly prevailed over oxygenated sesquiterpenes (17.0%). This is the first report on the chemical composition of S. palaestina essential oil.

Palmitic AcidPlant ScienceSesquiterpeneBiochemistryhexahydrofarnesylacetoneAnalytical Chemistrylaw.invention(E)-caryophyllenechemistry.chemical_compoundlawessential oilBotanyEugenolAcetoneOils VolatileStachys palaestinaPalestineLebanonChemical compositionEssential oileugenolPolycyclic SesquiterpenesbiologyTerpenesOrganic ChemistryStachysPlant Components Aerialbiology.organism_classificationhexadecanoic acidEugenolchemistryStachysSesquiterpenes
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Volatile Components of Centaurea Bracteata and C. Pannonica subsp. Pannonica growing wild in Croatia

2010

This paper reports on the volatile components of oils from the aerial parts (CBA) and roots (CBR) of Centaurea bracteata Scop. and aerial parts of C. pannonica (Heuffel) Simonkai subsp. pannonica (CPA), two Asteraceae growing wild in Croatia. The volatile components, obtained by hydrodistillation, were determined by GC-MS analysis. The yields (w/w) of the dried oils were 0.10% (CBA), 0.22% (CBR) and 0.09% (CPA), respectively. A total of 91 compounds were identified accounting for 91.1%, 93.3% and 87.9% of the total oil for CBA, CBR and CPA, respectively. All the samples were characterized mainly by hydrocarbons (7.1-34.1%), fatty acids (9.7-45.9%), and oxygenated sesquiterpenes (15.2-16.6%…

PharmacologyCentaurea bracteatabiologyNonacosanePlant compositionPlant ScienceGeneral MedicineAsteraceaebiology.organism_classificationHorticulturechemistry.chemical_compoundComplementary and alternative medicinechemistryCaryophyllene oxideEnvironmental chemistryDrug DiscoveryGas chromatography–mass spectrometryChemical compositionNatural Product Communications
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Components from the Essential oil of Centaurea aeolica Guss. and C-diluta Aiton from Sicily, Italy

2015

Volatile components from florets, leaves and stems and branches of Centaurea aeolica Guss. harvested in Lipari, Sicily, Italy, were analysed by gas phase chomatography (GC) and gas chomatography mass spectrometry (GC-MS). The main constituents were β-eudesmol, caryophyllene oxide, ( E )-12-norcaryophyll-5-en-2-one and hexahydrofarnesylacetone in flowers, hexahydrofarnesylacetone, 2-methyloctadecane and tricosane in the leaves and hexadecanoic acid , caryophyllene oxide and β-eudesmol in the stems and branches . The analysis of the essential oil of the aerial parts of Centaurea diluta Aiton gave mainly fatty acids and derivatives, the main ones being hexadecanoic acid and (Z,Z)-9,12-octadeca…

PharmacologyDrug Discovery3003 Pharmaceutical ScienceOrganic Chemistryβ-eudesmolPlant ScienceHexahydrofarnesylacetoneβ-eudesmollcsh:QK1-989lcsh:Chemistrylcsh:QD241-441lcsh:QD1-999lcsh:Organic chemistryCaryophyllene oxideCentaurea dilutavolatile componentslcsh:BotanyVolatile componentCentaurea aeolicaGC-MSHexadecanoic acid
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Elsholtzia blandaBenth: New Citral-rich Chemotypes from India

2012

The essential oils of the previously un-investigated aerial parts of Elsholtzia blanda were analyzed by GC and GC/MS. The yields of the oil were found to be 0.93 and 1.70% on fresh weight basis. A total of 25 compounds, representing 82.8% and 87.9% of the oil, were identified. The main compounds were geranial (43.5%–48.8%), neral (31.7%–34.7%), E-isocitral (1.2%–0.1%), and caryophyllene oxide (1.6%–0.7%). These two cultivars have the potential to compete with commercial citral oils.

PharmacologyElsholtzia blandabiologyChemotypeChemistryFresh weightbiology.organism_classificationCitrallaw.inventionHorticulturechemistry.chemical_compoundComplementary and alternative medicineCaryophyllene oxidelawBotanyLamiaceaeCultivarEssential oilJournal of Herbs, Spices & Medicinal Plants
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Analysis of Essential Oils from Scutellaria orientalis ssp. alpina and S. utriculata by GC and GC-MS

2011

The chemical composition of the essential oils obtained from aerial parts of Scutellaria orientalis L. ssp. alpina (Boiss.) O. Schwarz and S. utriculata Labill. growing wild in Lebanon, were analyzed by GC and GC-MS. In S. orientalis ssp. alpina, strongly characterized by sesquiterpenes (41.2%) and particularly sesquiterpene hydrocarbons (31.7%), hexahydrofarnesylacetone (11.7%) was recognized as the main constituent, together with hexadecanoic acid (7.6%), caryophyllene (7.4%), caryophyllene oxide (6.8%), 4-vinylguaiacol (5.4%) and germacrene D (5.4%). S. utriculata oil was instead constituted above all by monoterpenes (42.2%), particularly oxygen containing monoterpenes (39.9%), and in t…

PharmacologyScutellaria orientalisCaryophyllenePlant ScienceGeneral MedicineSesquiterpenechemistry.chemical_compoundComplementary and alternative medicineLinaloolchemistryDrug DiscoveryBotanyGuaiacolGas chromatography–mass spectrometryChemical compositionGeraniolNatural Product Communications
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Volatile components of aerial parts of Centaurea nigrescens an C. stenolepis growing wild in the Balkans

2010

The volatile constituents of the aerial parts of Centaurea nigrescens Willd, collected in Romania and of two samples of C. stenolepis A. Kerner from Bulgaria and Romania were obtained by hydrodistillation and analyzed. The main components of C. stenolepis were caryophyllene oxide (6.9-15.6%), hexahydrofarnesyl acetone (6.5-4.4%), heptacosane (6.0-4.9%) and p-vinyl guiacol (4.3-5.0%). The main components of C. nigrescens were caryophyllene oxide (9.9%), β-eudesmol (9.5%), spathulenol (7.6%), heptacosane (6.1%) and p-vinyl guiacol (5.5%). The chemotaxonomic significance with respect to their co-location in Sections Lepteranthus and Nigrescentes, respectively, is discussed.

PharmacologybiologyCentaurea stenolepisCentaurea nigrescens Centaurea stenolepis Asteraceae volatile componentscaryophyllene oxide hexahydrofarnesyl acetone beta-eudesmol spathulenol p-vinyl guaiacolCentaureaPlant ScienceGeneral MedicineSettore CHIM/06 - Chimica OrganicaAsteraceaePlant Components Aerialbiology.organism_classificationSpathulenolComplementary and alternative medicineCaryophyllene oxideDrug DiscoveryBotanyCentaurea nigrescensOils VolatilePlant OilsSettore BIO/15 - Biologia FarmaceuticaStenolepisBeta-eudesmol
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