Search results for "Plant Components"

showing 10 items of 42 documents

Volatile constituents of the aerial parts of white salsify (Tragopogon porrifolius L., Asteraceae).

2010

Tragopogon porrifolius L. grows as a vegetable in southern Italy and all parts of it are edible. In the present study the volatile components of the aerial part are described. Gas chromatography and gas chromatography-mass spectrometry analysis showed the presence of 38 components in all. On the whole, the volatile fraction was constituted mainly by carbonylic compounds (24.6%), phenols (21.5%) and fatty acids and esters (19.7%). The most abundant compounds were 4-vinyl guaiacol (19.0%), hexadecanoic acid (17.9%), hexahydrofarnesylacetone (15.8%) and hentriacontane (10.7%).

Chromatography GasPalmitic AcidPlant ScienceAsteraceaeBiochemistryGas Chromatography-Mass SpectrometryAnalytical ChemistryTragopogonPalmitic acidchemistry.chemical_compoundBotanyPhenolsHentriacontaneTragopogon porrifolius Asteraceae white salsify Volatile constituents 4-vinyl guaiacol hexadecanoic acid hexahydrofarnesylacetonebiologyTerpenesOrganic ChemistryGuaiacolSettore CHIM/06 - Chimica OrganicaAsteraceaePlant Components Aerialbiology.organism_classificationchemistryGuaiacolGas chromatographyGas chromatography–mass spectrometryVolatilizationNatural product research
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Steroidal saponins from the aerial parts of Cordyline fruticosa L. var. strawberries.

2019

A new sulfated steroidal derivative (fruticogenin A: 1-sulfo-australigenin-3-sodium sulphate, 1) and three new steroidal saponins named fruticoside K (3-sulfo-spirostan-25(27)-ene-1β,3β-diol-1-O-[α-L-rhamnopyranosyl-(1 → 4)-β-D-fucopyranoside], 2), fruticoside L (3-sulfo-spirostan-25(27)-ene-1β,3β,6α-triol-1-O-[α-L-rhamnopyranosyl-(1 → 4)-β-D-fucopyranoside], 3) and fruticoside M (spirostan-25(27)-ene-1β,3α-diol-1-O-[α-L-rhamnopyranosyl-(1 → 2)-α-L-rhamnopyranoside], 4) were isolated from the aerial parts of Cordyline fruticosa L. var. strawberries. Their structures were established on the basis of 1D and 2D NMR data, mass spectrometry and chemical methods. Compounds 2 and 4 exhibited weak …

Cordyline fruticosaCordylineStereochemistryPhytochemicalsBreast AdenocarcinomaMass spectrometrychemistry.chemical_compoundSulfationColon carcinomaCell Line TumorDrug DiscoveryHumansCameroonCytotoxicityPharmacologybiologyMolecular StructurePhytosterolsGeneral MedicinePlant Components AerialSaponinsbiology.organism_classificationAntineoplastic Agents PhytogenicchemistryTwo-dimensional nuclear magnetic resonance spectroscopyDerivative (chemistry)Fitoterapia
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Chemical composition and biological activity of Salvia verbenaca essential oil

2011

Salvia verbenaca L. (syn. S. minore) is a perennial herb known in the traditional medicine of Sicily as “spaccapetri” and is used to resolve cases of kidney stones, chewing the fresh leaves or in decoction. The chemical composition of the essential oil obtained from aerial parts of S. verbenaca collected in Piano Battaglia (Sicily) on July 2009, was analyzed by GC and GC-MS. The oil was strongly characterized by fatty acids (39.5%) and carbonylic compounds (21.2%), with hexadecanoic acid (23.1%), ( Z)-9-octadecenoic acid (11.1%) and benzaldehyde (7.3%) as the main constituents. The in vitro activity of the essential oil against some microorganisms in comparison with chloramphenicol by the …

Gram-positive bacteriaCarboxylic AcidsDecoctionMicrobial Sensitivity TestsPlant ScienceSalviaGram-Positive BacteriaGas Chromatography-Mass Spectrometrylaw.inventionfoodlaw(Z)-9-octadecenoic acidGram-Negative BacteriaDrug DiscoveryPlant OilsVolatile componeSettore BIO/15 - Biologia FarmaceuticaSalviaFood scienceSicilyChemical compositionEssential oilPharmacologyβ-phellandrene (Z)-9-octadecenoic acid Antibacterial activity Benzaldehyde Hexadecanoic acid Lamiaceae Salvia verbenaca Volatile componeLamiaceaeSalvia verbenacabiologyChemistryFatty AcidsVolatile componentsSettore CHIM/06 - Chimica OrganicaGeneral MedicineBenzaldehydePlant Components Aerialbiology.organism_classificationfood.foodAnti-Bacterial AgentsComplementary and alternative medicineβ-phellandreneSalvia verbenacaAntibacterial activityGas chromatography–mass spectrometryHexadecanoic acidBacteria
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Chemical composition of the essential oil from the aerial parts of Ononis reclinata L. (Fabaceae) grown wild in Sicily

2016

In the present study, the chemical composition of the essential oil from aerial parts of Ononis reclinata L., a species not previously investigated, collected in Sicily was evaluated by GC and Gas chromatography-Mass spectrometry. The main components of O. reclinata were menthone (43.6%), isopimpinellin (38.4%) and pulegone (11.2%). The comparison with other studied oils of genus Ononis showed a peculiar and characteristic profile.

IsopimpinellinChromatography GasmenthoneFlowersPlant ScienceBiology01 natural sciencesBiochemistryPlant StemGas Chromatography-Mass SpectrometryAnalytical Chemistrylaw.inventionchemistry.chemical_compoundGenuslawOnonisBotanyOils VolatileOnoniSicilyChemical compositionEssential oilpulegoneOnonis reclinataPlant Stems010405 organic chemistryOrganic ChemistryFabaceaeFabaceaeisopimpinellinPlant Components Aerialbiology.organism_classificationMenthone0104 chemical sciencesPlant Leavesvolatile component010404 medicinal & biomolecular chemistrychemistryChromatography GaFlowerOnonisPlant LeavePulegoneNatural Product Research
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Chemical composition and biological activities of Artemisia judaica essential oil from southern desert of Jordan

2016

Abstract Ethnopharmacologic relevance Artemisia judaica L. (Arabic name: Beithran ), is a medicinal and aromatic plant growing in the valley bottoms of desert areas, particularly in the southern desert of Jordan nearest to the Jordan-Saudi Arabia borders and in Wadi Araba in the Southern Badia. In Jordan, A. judaica is widely used in traditional medicine being recommended by aboriginal Bedouins in the North Badia region of Jordan as calmative. Furthermore, it is used for the treatment of stomach ache, heart diseases, sexual weakness, diabetes, gastro-intestinal disorders and external wounding. Additionally, other folk medicines of the Arabic region commonly use this aromatic plant for the t…

Lipopolysaccharides0301 basic medicineAntifungal AgentsDPPHAnti-Inflammatory AgentsGerm tube01 natural scienceslaw.inventionMicechemistry.chemical_compoundCamphorlawCandida albicansDrug DiscoveryCandida albicansbiologyTraditional medicineHep G2 CellsCorpus albicansDesert ClimatePiperitoneCell SurvivalMicrobial Sensitivity TestsNitric OxideGas Chromatography-Mass SpectrometryArtemisia judaica03 medical and health sciencesOils VolatileAnimalsHumansPlant OilsEssential oilPharmacologyJordanPlants MedicinalDose-Response Relationship DrugPlant ExtractsMacrophagesMacrophage ActivationPlant Components Aerialbiology.organism_classification0104 chemical sciences010404 medicinal & biomolecular chemistryRAW 264.7 Cells030104 developmental biologyArtemisiachemistryBiofilmsCryptococcus neoformansPhytotherapyJournal of Ethnopharmacology
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Crystal Structures and Cytotoxicity of ent-Kaurane-Type Diterpenoids from Two Aspilia Species

2018

A phytochemical investigation of the roots of Aspilia pluriseta led to the isolation of ent-kaurane-type diterpenoids and additional phytochemicals (1⁻23). The structures of the isolated compounds were elucidated based on Nuclear Magnetic Resonance (NMR) spectroscopic and mass spectrometric analyses. The absolute configurations of seven of the ent-kaurane-type diterpenoids (3⁻6, 6b, 7 and 8) were determined by single crystal X-ray diffraction studies. Eleven of the compounds were also isolated from the roots and the aerial parts of Aspilia mossambicensis. The literature NMR assignments for compounds 1 and 5 were revised. In a cytotoxicity assay, 12α-methoxy-ent-kaur-9(11),1…

Lung Neoplasms<i>Aspilia mossambicensis</i>Pharmaceutical ScienceCrystal structureAspilia plurisetaAsteraceaePlant Roots01 natural sciencesAnalytical Chemistryent-kaurane diterpenoid.Drug DiscoveryAspilia mossambicensisCytotoxicityEnt kauraneta116Organisk kemiMolecular StructurebiologyChemistryLiver NeoplasmsHep G2 CellsMass spectrometricterpeenitPhytochemicalChemistry (miscellaneous)solunsalpaajatMolecular MedicinecytotoxicityasterikasvitDiterpenes KauraneAspilia<i>ent</i>-kaurane diterpenoidCarcinoma HepatocellularCell SurvivalStereochemistry010402 general chemistryta3111Articlelcsh:QD241-441lcsh:Organic chemistryHumans<i>Aspilia pluriseta</i>Physical and Theoretical ChemistryIC50x-ray crystallography010405 organic chemistrycytostatic drugsOrganic Chemistryta1182Adenocarcinoma Bronchiolo-AlveolarPlant Components AerialAsteraceaebiology.organism_classificationluonnonaineetX-ray crystal structurenaturally occurring substances0104 chemical sciencesA549 Cellsent-kaurane diterpenoidröntgenkristallografiaterpenesMolecules
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Phytochemical analysis ofAchillea ligusticaAll. from Lipari Island (Aeolian Islands)

2016

A complete chemical investigation of Achillea ligustica All. growing at Lipari (Aeolian Island, Sicily) has been carried out. Seventeen metabolites have been isolated and characterised from dichloromethane and methanol extracts of flowers and aerial parts, and GC/MS analyses of petroleum ether extracts was carried out, revealing a composition in sesquiterpenoids similar to those reported for populations from Greece, Sicily and Algeria, showing the presence of (3RS,6RS)-2,6-dimethyl-1,7-octadiene-3,6-diol (1), 2,6-dimethyl-octa-3(E),7-diene-2,6-diol (2), iso-seco-tanapartholide (3) from DCM fraction. In addition from the methanolic extract of the aerial parts, peculiar flavonoid glucuronides…

Magnetic Resonance SpectroscopyAchilleaAchillea ligusticaPhytochemicalsFlavonoidPlant Science01 natural sciencesBiochemistryAnalytical Chemistrychemistry.chemical_compoundterpenoidsachillea ligustica; asteraceae; chemotaxonomy; flavonoids; phytochemistry; terpenoidsPetroleum etherSettore BIO/15 - Biologia FarmaceuticaApigeninSicilyIslandschemistry.chemical_classificationMolecular Structureachillea ligusticaAchilleaPhytochemicalFlowerChemotaxonomyQuercetinterpenoidfood.ingredientFlowersPhytochemicalBiologyGas Chromatography-Mass SpectrometryIslandPlant ExtractfoodBotanyasteraceaePlant Extracts010405 organic chemistryOrganic ChemistrySettore CHIM/06 - Chimica OrganicaPlant Components AerialAsteraceaebiology.organism_classificationTerpenoid0104 chemical scienceschemotaxonomy010404 medicinal & biomolecular chemistrychemistryflavonoidsFlavonoidphytochemistryNatural Product Research
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Phytochemical and pharmacological studies on the acetonic extract of Marrubium globosum ssp. libanoticum

2006

A new natural labdane diterpene, marrulibanoside, was isolated from the acetonic extract of aerial parts of M. globosum Montbr. et Auch. ex Benth. ssp. libanoticum Boiss. (Lamiaceae). Its structure was determined by spectroscopic methods such as 1D and 2D NMR and mass spectrometry. Pharmacological studies have shown that the extract of M. globosum exerts anti-inflammatory effects in the rat paw oedema induced by carrageenin resulting in reduced paw swelling. This activity, which seems due to marrulibanoside, is a consequence of iNOS and COX-2 activities inhibition.

MaleBlotting WesternPharmaceutical ScienceNitric Oxide Synthase Type IIPharmacognosyLABDANE DITERPENOIDSCarrageenanDinoprostoneAnalytical Chemistrylaw.inventionLabdanechemistry.chemical_compoundMicelawDrug DiscoveryBotanyVULGAREAnimalsEdemaRats WistarPharmacologybiologyTraditional medicinePlant ExtractsOrganic ChemistryAnti-Inflammatory Agents Non-SteroidalCYLLENEUMPlant Components Aerialbiology.organism_classificationCarrageenanRatsComplementary and alternative medicinechemistryPhytochemicalMacrophages PeritonealMolecular MedicineLamiaceaeVELUTINUMDiterpenePhytotherapyMarrubiumMarrubiumPhytotherapy
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Antiulcer activity of Cyperus alternifolius in relation to its UPLC-MS metabolite fingerprint: A mechanistic study

2019

Abstract Background Gastric ulcer is one of the main prevalent gastrointestinal multi-etiological disorders with many associated complications and adverse effects. Our aim was to develop safer antiulcer therapies based on methanol or ethyl acetate extracts of tubers and aerial parts from Cyperus alternifolius. Methods Gastric ulceration was experimentally generated by administration of single oral doses of indomethacin (30 mg/kg) to fasted rats. The animals received methanol or ethyl acetate extracts of C. alternifolius tuber and methanol or ethyl acetate extracts of aerial parts at two dose levels (50 or 100 mg/kg). Ranitidine (50 mg/kg) was used as standard anti-ulcer drug. After 4 h, the…

Malemedicine.drug_classAntiulcer drugMetaboliteIndomethacinPhytochemicalsAnti-Inflammatory AgentsEthyl acetatePharmaceutical ScienceAcetatesAnti-inflammatoryRanitidine03 medical and health scienceschemistry.chemical_compound0302 clinical medicineTandem Mass SpectrometryDrug DiscoverymedicineMetabolomeAnimalsMetabolomicsStomach UlcerCyperusRats WistarAcetic Acid030304 developmental biologyPharmacology0303 health sciencesTraditional medicinebiologyPlant ExtractsChemistryMethanolPlant Components AerialAnti-Ulcer Agentsbiology.organism_classificationRatsCyperus alternifoliusPlant TubersComplementary and alternative medicinePhytochemicalGastric Mucosa030220 oncology & carcinogenesisMetabolomeMolecular MedicineChromatography Liquidmedicine.drugPhytomedicine
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Volatile constituents of the aerial parts of Pulicaria sicula (L.) Moris growing wild in Sicily: Chemotaxonomic volatile markers of the genus Pulicar…

2015

Abstract The chemical composition of the essential oil isolated from the aerial parts of Pulicaria sicula (L.) Moris was characterized by GC-FID and GC/MS analyses. The oil was particularly rich in oxygenated terpenoids. Among the oxygenated monoterpenes (content of 44.5%), the most abundant were borneol (23.7%), bornyl acetate (6.5%), and isothymol isobutyrate (6.2%). Caryophyllene oxide (10.2%), caryophylladienol I (4.3%), and caryophylla-3,8(13)-dien-5β-ol (4.4%) were identified as the main constituents among the oxygenated sesquiterpenes. Furthermore, a complete literature review on the composition of the essential oils of all the Pulicaria taxa studied so far was performed and a princi…

MonoterpenePrincipal-component analysis (PCA)BioengineeringBiochemistryGas Chromatography-Mass SpectrometryEssential oilPulicarialaw.inventionBorneolchemistry.chemical_compoundGenuslawBotanyOils VolatileSettore BIO/15 - Biologia FarmaceuticaSicilyChemical compositionMolecular BiologyEssential oilPrincipal Component AnalysisMolecular StructurebiologyChemistry (all)General ChemistryGeneral MedicinePlant Components Aerialbiology.organism_classificationPulicariaTerpenoidChemotaxonomychemistryPulicaria siculaChemotaxonomyGC/MS AnalysiMolecular MedicineComposition (visual arts)
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