Search results for "sesquiterpenes"

showing 10 items of 110 documents

Chemical composition of the essential oils of three endemic species of Anthemis sect. Hiorthia (DC.) R.Fern. growing wild in Sicily and chemotaxonomi…

2014

The chemical composition of the essential oils isolated from the aerial parts of Anthemis pignattiorum Guarino, Raimondo & Domina and A. ismelia Lojac. and the aerial parts and flowers of Anthemis cupaniana Tod. ex Nyman , three endemic Sicilian species belonging to the section Hiorthia, was determined by GC-FID and GC/MS analyses. (Z)-Muurola-4(14),5-diene (27.3%) was recognized as the main constituent of the A. pignattiorum essential oil, together with isospathulenol (10.6%), sabinene (7.7%), and artemisyl acetate (6.8%), while in the oil obtained from the aerial parts of A. ismelia , geranyl propionate (8.8%), bornyl acetate (7.9%), β-thujone (7.8%), neryl propionate (6.5%), and t-muurol…

SabineneAnthemis specieBioengineeringFlowersBiologyBiochemistryEssential oillaw.inventionSettore BIO/01 - Botanica Generalechemistry.chemical_compoundlawBotanyCluster analysis (CA)Oils VolatileCluster AnalysisAnthemisEndemismMolecular BiologyChemical compositionAnthemis cupanianaSicilyEssential oilBicyclic MonoterpenesTaxonomychemistry.chemical_classificationTerpenesChemotaxisSettore BIO/02 - Botanica Sistematicafungifood and beveragesGeneral ChemistryGeneral MedicineSettore CHIM/06 - Chimica OrganicaAnthemis pignattiorumPlant Components Aerialbiology.organism_classificationchemistryAthemis ismeliaBornyl acetatePropionateMonoterpenesMolecular MedicineFernAnthemisSesquiterpenes
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Inhibitory Activity and Chemical Characterization ofDaucus carotasubsp.maximusEssential Oils

2017

The essential oils (EOs) of green seeds from Daucus carota subsp. maximus growing wild in Pantelleria Island (Sicily, Italy) were characterized. EOs were extracted by steam distillation, examined for their inhibitory properties against food-borne Gram-positive and Gram-negative bacteria and analyzed for the chemical composition by gas chromatography (GC) and mass spectrometry (MS). Undiluted EOs showed a large inhibition spectrum against Gram-positive strains and also vs. Acinetobacter spp. and Stenotrophomonas maltophilia. The minimum inhibition concentration (MIC) was in the range 1.25 – 2.50 μl/ml for the most sensitive strains. The chemical analysis indicated that D. carota subsp…

Sesquiterpene0301 basic medicineSettore AGR/05 - Assestamento Forestale E SelvicolturaMonoterpeneChemical compositionMonoterpeneSettore MED/42 - Igiene Generale E Applicata01 natural sciencesBiochemistryEssential oilCarotollaw.inventionchemistry.chemical_compoundlawFood scienceChemical compositionInhibitory activitiebiologyChemistry (all)General MedicineAnti-Bacterial AgentsDaucus carotaStenotrophomonas maltophiliaSeedsMolecular MedicineSesquiterpenes030106 microbiologyBioengineeringPyrogallolGram-Positive BacteriaSesquiterpeneSteam distillation03 medical and health sciencesAnti-Bacterial AgentGram-Negative BacteriaBotanyChemical composition; Daucus carota; Essential oils; Foodborne bacteria; Inhibitory activities; Anti-Bacterial Agents; Daucus carota; Gram-Negative Bacteria; Gram-Positive Bacteria; Monoterpenes; Oils Volatile; Pyrogallol; Seeds; Sesquiterpenes; Bioengineering; Chemistry (all); Biochemistry; Molecular Medicine; Molecular BiologyOils VolatileMolecular BiologySeed010405 organic chemistryGeneral ChemistryFoodborne bacteriabiology.organism_classification0104 chemical sciencesMonocyclic SesquiterpeneschemistryMonoterpenesGas chromatographySettore AGR/16 - Microbiologia AgrariaDaucus carotaChemistry & Biodiversity
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Chemical composition of the essential oil of Moluccella spinosa L. (Lamiaceae) collected wild in Sicily and its activity on microorganisms affecting …

2015

In this study the chemical composition of the essential oil from aerial parts of Moluccella spinosa L. collected in Sicily was evaluated by GC and GC-MS. The main components of M. spinosa L. were α-pinene (26.6%), caryophyllene oxide (16.8%) and β-caryophyllene (8.6%). A comparison with other studied oils of genus Moluccella is made. Antibacterial and antifungal activities against some microorganisms infesting historical textiles were also determined.

SesquiterpeneAntifungal AgentsTextileMoluccellaMicroorganismcaryophyllene oxideMoluccella spinosaMonoterpenePlant ScienceMicrobial Sensitivity TestsPlant OilBiochemistryAnalytical Chemistrylaw.inventionGenuslawAnti-Bacterial AgentBotanyOils VolatileAntifungal AgentPlant OilsMoluccella spinosaChemical compositionSicilyEssential oilBicyclic MonoterpenesPolycyclic SesquiterpenesLamiaceaebiologyMicrobial Sensitivity TestMedicine (all)Textilesβ-caryophylleneOrganic ChemistryPlant Components Aerialbiology.organism_classificationantibacterial and antifungal activityα-pineneAnti-Bacterial Agentsvolatile componentCaryophyllene oxideMonoterpenesLamiaceaeSesquiterpenesNatural product research
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Chemical composition of the essential oils of Centaurea tomentella Hand.-Mazz. and C. haussknechtii Boiss. (Asteraceae) collected wild in Turkey and …

2018

In the present study the chemical composition of the essential oils from aerial parts of Centaurea tomentella Hand.-Mazz. and C. haussknechtii Boiss. collected in Turkey was evaluated by GC and GC-MS. The main components of C. tomentella L. were hexadecanoic acid (19.7%), caryophyllene oxide (6.6%) and spathulenol (4.8%) whereas C. haussknechtii was rich in hexadecanoic acid (26.2%), (Z,Z)-9,12-octadecadienoic acid (19.3%), heptacosane (5.3%) and nonacosane (5.1%). Antibacterial and antifungal activities against some microorganisms infesting historical art craft, were also determined.

SesquiterpeneAntifungal AgentsTurkeyMicroorganismPharmacology toxicologycaryophyllene oxideAlkaneCentaureaPlant ScienceMicrobial Sensitivity Tests01 natural sciencesBiochemistryGas Chromatography-Mass SpectrometryAnalytical ChemistryBotanyAnti-Bacterial AgentAlkaneshexadecanoic acidOils VolatileAntifungal Agentantibacterial and Antifungal activityChemical compositionPolycyclic SesquiterpenesbiologyCentaurea tomentellaPolycyclic Sesquiterpene010405 organic chemistryMicrobial Sensitivity TestOrganic ChemistryCentaurea tomentellaSettore CHIM/06 - Chimica OrganicaAsteraceaebiology.organism_classification0104 chemical sciencesAnti-Bacterial Agents010404 medicinal & biomolecular chemistryvolatile componentCaryophyllene oxideCentaureaGas chromatography–mass spectrometry(ZZ)-912-octadecadienoic acidCentaurea haussknechtiiSesquiterpenesArtNatural product research
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Composition of the essential oil of allium neapolitanum cirillo growing wild in sicily and its activity on microorganisms affecting historical art cr…

2015

Essential oil of the aerial parts of Allium neapolitanum Cirillo collected in Sicily were analyzed by gas-chromatography-flame-ionization detection and gas-chromatography-mass spectrometry. Nineteen compounds were identified in the oil and the main components were found to be (E)-chrysanthenyl acetate (28.1%), (Z)-chrysanthenyl acetate (23.8%), (E)-β-farnesene (9.6%), dimethyl trisulfide (9.6%), camphor (7.4%), methyl allyl disulfide (6.8%) and 1-methyl-3-allyl trisulfide (5.8%). The essential oil showed good antimicrobial activity against 11 strains of test microorganisms, including several species infesting historical material.

SesquiterpeneGeneral Chemical EngineeringAllyl compoundMonoterpeneAntimicrobial activityPlant OilEssential oillaw.inventionCamphorchemistry.chemical_compoundlaw(E)-chrysanthenyl acetateChemical Engineering (all)DisulfidesFood scienceMedicinal plantsSicilyFlame IonizationbiologyChemistry (all)food and beveragesGeneral MedicineAntimicrobialAllyl CompoundsArtifactAlliumArtifactsSesquiterpenesArt(Z)-chrysanthenyl acetateSulfideAllium neapolitanumSulfidesGas Chromatography-Mass SpectrometryAlliumBridged Bicyclo CompoundsDisulfideDrug Resistance FungalBotanyDrug Resistance BacterialOils VolatilePlant OilsAllium neapolitanumEssential oilBacteriaFungiGeneral ChemistryPlant Components Aerialbiology.organism_classificationCamphorchemistryMonoterpenesBridged Bicyclo CompoundDimethyl trisulfideAllyl Compound
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Chemical composition of the essential oil of Jacobaea maritima (L.) PelserMeijden and Jacobaea maritima subsp. bicolor (Willd.) B. Nord.Greuter (Aste…

2015

In this study, the chemical compositions of the essential oils from aerial parts (JmA) and radices (JmR) of Jacobaea maritima (L.) Pelser & Meijden, collected in Croatia, and of Jacobaea maritima subsp. bicolor (Willd.) B. Nord. & Greuter, collected in Sicily, were evaluated by using gas chromatography and gas chromatography–mass spectrometry. The main components of the essential oil from J. maritima, both in JmA and JmR, were pentacosane (15.7%), heptacosane (13.1%) and nonacosane (8.1%) whereas the essential oil from J. maritima subsp. bicolor was characterised by the presence of hexadecanoic acid (14.6%), caryophyllene oxide (9.3%) and hexahydrofarnesylacetone (6.5%). The comparison of t…

SesquiterpeneJacobaea maritimaCroatiaNonacosanecaryophyllene oxideAlkanePalmitic AcidJacobaea maritima subsp. bicolorPlant ScienceAsteraceaePlant OilBiochemistryGas Chromatography-Mass Spectrometrylaw.inventionAnalytical Chemistrychemistry.chemical_compoundhydrocarbonGenuslawBotanyAlkaneshexadecanoic acidOils VolatilePlant OilsChemical compositionSicilyEssential oilPolycyclic SesquiterpenesbiologyJacobaeaOrganic ChemistryJacobaea maritimaAsteraceaebiology.organism_classificationJacobaea maritima; Jacobaea maritima subsp. bicolor; Asteraceae; volatile components; hydrocarbons; hexadecanoic acid; caryophyllene oxidevolatile componentchemistryCaryophyllene oxidebacteriaSesquiterpenesNatural product research
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Chemical composition of volatile and fixed oils from of Salvia argentea L. (Lamiaceae) growing wild in Sicily.

2015

The chemical compositions of the essential oil and of the non-polar extracts (petroleum ether, dichloromethane) of the aerial parts (flowers, leaves and stems) of Salvia argentea L. were determined by GC-FID and gas chromatography–mass spectrometry analysis. 14-Hydroxy-α-humulene (40.1%) was recognised as the main constituents of the essential oil of S. argentea, together with 1,3,8-p-menthatriene (12.1%), globulol (7.4%) and β-sesquiphellandrene (5.8%). Tritriacontane (9.9% and 14.1%), heptacosane (8.4% and 10.5%), hentriacontane (8.3% and 10.9%), tetradecanal (8.4% and 10.2%) and methyldotriacontane (7.9% and 7.6%) were recognised as the main constituents of the extracts in petroleum …

SesquiterpeneLinolenic AcidsPlant ScienceSalvia argentea01 natural sciencesBiochemistrylaw.inventionAnalytical ChemistryFatty Acids Monounsaturatedchemistry.chemical_compoundlawfixed oilPetroleum etherSettore BIO/15 - Biologia FarmaceuticaSalviaSicilyHentriacontanebiologyTraditional medicineChemistryvolatile componentPetroleumFlowerParaffinLinolenic AcidPlant LeaveSesquiterpenesLinolenic acidFlowersSalviaGas Chromatography-Mass Spectrometry14-hydroxy-α-humulenePlant ExtractBotanyOils VolatileEssential oilLamiaceae010405 organic chemistryPlant ExtractsOrganic ChemistrySettore CHIM/06 - Chimica Organicabiology.organism_classification0104 chemical sciencesPlant Leaves010404 medicinal & biomolecular chemistrySalvia argenteaSettore BIO/03 - Botanica Ambientale E ApplicataLamiaceaefatty acidGas chromatography–mass spectrometryNatural product research
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The synergistic effect of SAHA and parthenolide in MDA-MB231 breast cancer cells

2014

Abstract: The sesquiterpene lactone Parthenolide (PN) exerted a cytotoxic effect on MDA-MB231 cells, a triple-negative breast cancer (TNBC) cell line, but its effectiveness was scarce when employed at low doses. This represents an obstacle for a therapeutic utilization of PN. In order to overcome this difficulty we associated to PN the suberoylanilide hydroxamic acid (SAHA), an histone deacetylase inhibitor. Our results show that SAHA synergistically sensitized MDA-MB231 cells to the cytotoxic effect of PN. It is noteworthy that treatment with PN alone stimulated the survival pathway Akt/mTOR and the consequent nuclear translocation of Nrf2, while treatment with SAHA alone induced autophagi…

SesquiterpenePhysiologyClinical BiochemistryDown-RegulationApoptosisBreast NeoplasmsApoptosis; Autophagy; Breast Neoplasms; Cell Line Tumor; Down-Regulation; Drug Synergism; Female; Histone Deacetylase Inhibitors; Humans; Hydroxamic Acids; NF-kappa B; Sesquiterpenes; Clinical Biochemistry; Cell Biology; Physiology; Medicine (all)Hydroxamic AcidsHydroxamic AcidSettore BIO/10 - BiochimicaCell Line TumorHistone Deacetylase InhibitorAutophagyHumansBiologyVorinostatMedicine (all)NF-kappa BApoptosiDrug SynergismCell BiologyHistone Deacetylase InhibitorsFemaleHuman medicineSesquiterpenesBreast NeoplasmHumanJournal of cellular physiology
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Ethnobotany, Phytochemistry, Biological, and Nutritional Properties of Genus Crepis—A Review

2022

The genus Crepis L., included within the Asteraceae family, has a very wide distribution, expanding throughout the northern hemisphere, including Europe, northern Africa, and temperate Asia. This genus has a fundamental value from biodynamic and ecological perspectives, with the different species often being chosen for soil conservation, for environmental sustainability, and for their attraction towards pollinating species. Furthermore, various species of Crepis have been used in the popular medicine of several countries as medicinal herbs and food since ancient times. In most cases, the species is consumed either in the form of a decoction, or as a salad, and is used for its cardiovascular…

Settore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeBiological propertiesCrepis sspEcologyGuiaianesSecondary metabolitesEthnopharmacologyPlant ScienceAsteraceaeSesquiterpenesEcology Evolution Behavior and SystematicsPlants
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Identification of aroma compaunds of Vitis Vinifera L. flowers by SPME GC-MS analysis

2014

Using a gas chromatographic method (GC-MS-analysis), it was possible to determine the volatile constituent of an odorous flower from Vitis vinifera varieties growing in Sicily. More than 50 compounds were identified and the technique allowed us to determine that sesquiterpenes, as well as monoterpenes such as limonene and cymene, were the principal components. The odour-profiles allowed us to distinguish between variety groups or even single varieties.

Settore AGR/03 - Arboricoltura Generale E Coltivazioni Arboreegrapevine flowering sesquiterpenes monoterpenesSettore AGR/13 - Chimica Agraria
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