Search results for "Essential oils"

showing 10 items of 119 documents

Phytochemical Analysis and Cytotoxicity Towards Multidrug-Resistant Leukemia Cells of Essential Oils Derived from Lebanese Medicinal Plants

2012

Juniperus excelsa fruit essential oil as well as J. oxycedrus, Cedrus libani, and Pinus pinea wood essential oils have been obtained with yields between 2.2 ± 0.3 % to 3.4 ± 0.5 % and analyzed by gas chromatography. Sesquiterpenes mainly characterized C. libani and J. oxycedrus essential oils, while in P. pinea and J. excelsa, monoterpenes were the most abundant compounds. In J. oxycedrus, cis-calamenene (7.8 %), cuparene (3.8 %), and cis-thujopsenal (2.0 %) have been detected for the first time. The cytotoxic activity of these essential oils against drug-sensitive CCRF-CEM and multidrug-resistant P-glycoprotein-expressing CEM/ADR5000 leukemia cells has been investigated (IC₅₀ values: 29.46…

Cupressaceaegas chromatographyPharmaceutical ScienceAnalytical Chemistrylaw.inventionlawDrug DiscoveryTumor Cells CulturedLebanonMedicinal plantsLeukemiabiologyTraditional medicinePinaceaeWoodDrug Resistance MultiplePhytochemicalJuniperus excelsaPinaceaeMolecular MedicineSesquiterpenesJuniperus oxycedruscancer; essential oils; gas chromatography; multidrug resistance; Juniperus excelsa; Juniperus oxycedrus; Cupressaceae; Cedrus libani; Pinus pinea; PinaceaeNOmultidrug resistanceBotanyOils VolatileHumanscancerCedrusessential oilsEssential oilCedrus libaniPharmacologyPlants MedicinalOrganic ChemistryCupressaceaePinusbiology.organism_classificationCedrus libaniAntineoplastic Agents PhytogenicComplementary and alternative medicineDrug Resistance NeoplasmFruitJuniperusMonoterpenesPinus pineaJuniperus excelsaJuniperus oxycedrusPhytotherapyPlanta Medica
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Herbicidal Activity of Peumus boldus and Drimys winterii Essential Oils from Chile

2011

[EN] The essential oil composition of Peumus boldus and Drimys winterii was analyzed by means of capillary GC-FID and GC-MS. More than 96% of the total oil components (43 and 54 compounds, respectively) were identified, with ascaridole (51.17 ± 9.51), p-cymene (16.31 ± 2.52) and 1,8-cineole (14.45 ± 2.99) as the main compounds in P. boldus and ¿-eudesmol (21.65 ± 0.41), followed of elemol (12.03 ± 0.34) and terpinen-4-ol (11.56 ± 1.06) in D. winterii. The herbicidal activity was tested against Amaranthus hybridus and Portulaca oleracea. P. boldus essential oil was the most phytotoxic against both weeds, inhibiting seed germination and seedling growth at all concentrations assayed (0.125-1 ¿…

DrimysChromatography GasAmaranthus hybridusBOTANICAPharmaceutical ScienceGerminationPortulacaEssential oilArticleAnalytical Chemistrylaw.inventionlcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistrylawDrug DiscoveryBotanyOils VolatilePhysical and Theoretical ChemistryChileSeedling growthEssential oilBIOLOGIA VEGETALGas chromatographybiologyMass spectrometryHerbicidesOrganic Chemistrybiology.organism_classificationDrimysChemistrychemistryIsolation and purificationChemistry (miscellaneous)GerminationSeedlingEssential oilsPhytotoxicityPeumusMonoterpenesMolecular MedicinePhytotoxicityHerbicideAscaridoleessential oils; phytotoxicity; germination; seedling growth; monoterpenesPeumus boldus
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A possible use of selected essential oils and Citrosept to inhibit the growth of Fusarium solani Mart. (Sacc.)

2016

Laboratory experiments have been carried out to determine the effects of lemon, cedar, pine and thyme oils as well as Citrocept on the growth of Fusarium solani Mart. (Sacc.) mycelium isolated from stored potato tubers. The biotic property of essential oils and Citrocept in inhibiting the linear growth of F. solani was assessed with the use of poisoned culture media, whereas the fungistatic property was determined by calculating, with the use of Abbott formula, the percentage indicating how many fungal colonies were inhibited from growth. A complete inhibition of the pathogen’s growth was observed in the presence of thyme oil at a concentration of 0.2% to 2% as well as in the presence of le…

Essential OilsFungistatic EffectsFusarium solaniAdvances in Microbiology
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Exploring the chemical diversity of essential oils in Armenian markets: a comprehensive analysis of composition profiles

2023

Due to its location at the convergence of multiple biogeographical regions, Armenia experiences significant variations in climate and soil conditions, resulting in a diverse range of plant chemotypes. However, there has been a lack of recent reports on the biological activity of plants found in Armenia's flora. There are few with well-described essential oil profiles, despite the vast biodiversity of Armenian flora. This study aimed to analyse the chemical composition of essential oils used by the population and found in the Armenian market. Unfortunately, only essential oils of foreign origin can be found, like Russia. Three essential oils of Lavandula angustifolia, Abies sibirica, and Ros…

Essential oils GC-MS GC-FID Lavandula angustifolia Abies sibirica Rosmarinus officinalisEssential oilsLavandula angustifolia[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyRosmarinus officinalisGC-MSGC-FIDAbies sibirica
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Fungistatic activity of essential oils of Laurus nobilis, Mentha X Piperita and Ruta graveolens against Rhizoctonia solani Kunn and Sclerotinia scler…

2004

no

Essential oils Fungistatic activity Rhyzoctonia solani Sclerotinia sclerotiorum
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Secondary metabolites from Pinus mugo Turra subsp. mugo growing in the Majella National Park (Central Apennines, Italy).

2013

In this study, we examined the composition regarding secondary metabolites of P. mugo Turra ssp. mugo growing in the protected area of Majella National Park, which is the southernmost station of the habitat of this species. Both the nonpolar and polar fractions were considered. In particular, the essential-oil composition showed a high variety of compounds, and 109 compounds were detected, and 101 were identified, among which abietane-type compounds have a taxonomic relevance. Abietanes were also isolated from the polar fraction, together with an acylated flavonol and a remarkably high amount of shikimic acid.

FlavonolsBioengineeringBiochemistryEssential oilPinus mugoBotanyOils Volatileessential oilsMolecular BiologyEcosystembiologyNational parkChemistryPinus mugoflavonols; diterpenes; essential oils; abietanes; pinus mugoGeneral ChemistryGeneral MedicineSettore CHIM/06 - Chimica Organicabiology.organism_classificationPinusPinus <genus>ItalyAbietanesMolecular MedicineAbietaneDiterpenesDiterpeneFlavonolChemistrybiodiversity
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Nanoencapsulation of promising bioactive compounds to improve their absorption, stability, functionality and the appearance of the final food products

2021

The design of functional foods has grown recently as an answer to rising consumers’ concerns and demands for natural, nutritional and healthy food products. Nanoencapsulation is a technique based on enclosing a bioactive compound (BAC) in liquid, solid or gaseous states within a matrix or inert material for preserving the coated substance (food or flavor molecules/ingredients). Nanoencapsulation can improve stability of BACs, improving the regulation of their release at physiologically active sites. Regarding materials for food and nutraceutical applications, the most used are carbohydrate-, protein- or lipid-based alternatives such as chitosan, peptide–chitosan and β-lactoglobulin nanopart…

Food Handling030309 nutrition & dietetics3309 Tecnología de Los Alimentoscoating materials ; antioxidants ; antimicrobials ; probiotics and prebiotics ; essential oils ; nano-technologyPharmaceutical ScienceReviewengineering.materialantimicrobialsAnalytical Chemistrylcsh:QD241-441Chitosan03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyNutraceuticallcsh:Organic chemistryFunctional FoodDrug DiscoveryHumans3309.13 Conservación de AlimentosFood sciencePhysical and Theoretical Chemistryessential oilsFlavorMinerals0303 health sciencesnanotechnologyProbioticscoating materialsOrganic Chemistryfood and beveragesVitamins04 agricultural and veterinary sciences040401 food scienceprobiotics and prebioticsBioactive compoundantioxidantsPrebioticschemistryFoodChemistry (miscellaneous)Food productsDietary SupplementsEmulsionengineeringMolecular MedicineBiopolymerFood quality
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Solar radiation as a prospective energy source for green and economic processes in the food industry: From waste biomass valorization to dehydration,…

2019

International audience; Solar energy has recently attracted the attention of both industry and academia, to be used as a source of clean energy for green production of various products such as food-related commodities. This review aims to explore the applicability of this green energy source for extraction of valuable components (e.g., bioactive compounds and essential oils) from plant materials and waste biomass, dehydration of plant materials, water recovery through desalination, decontamination, cooking, and baking of agri-food products. According to the literature, concentrated solar power systems (CSP) have been successfully employed for bioactive compounds (e.g. essential oils) extrac…

Food industry020209 energyStrategy and Management[SDV]Life Sciences [q-bio]BiomassValorization02 engineering and technology7. Clean energyDesalinationIndustrial and Manufacturing EngineeringBioactive compounds12. Responsible consumptionSolar energyConcentrated solar power[SDV.IDA]Life Sciences [q-bio]/Food engineering0202 electrical engineering electronic engineering information engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringDecontamination0505 lawGeneral Environmental ScienceWaste managementRenewable Energy Sustainability and the Environmentbusiness.industryDesalination05 social sciencesfood and beveragesWaterHuman decontaminationSolar energyRenewable energyWaste biomass13. Climate actionEssential oils050501 criminologyEnvironmental scienceEnergy sourcebusiness
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Essential Oils in Limiting the Development of Various Origins of Phytopathogenic Fusarium Isolates from Wheat Kernels

2022

The aim of the study was to determine the relationship between the chemical composition of eight commercial essential oils (EsO) (grapefruit, lemongrass, tea tree (TTO), thyme, verbena, cajeput, Litsea cubeba and garlic) and their fungistatic activity in relation to four species of Fusarium from the Polish population (F. avenaceum FAPL, F. culmorum FCPL, F. graminearum FGPL and F. oxysporum FOPL) and five from the German population (F. culmorum FC1D, F. culmorum FC2D, F. graminearum FG1D, F. graminearum FG2D and F. poae FP0D). In addition, the identification of EsO as potential biofungicides. Phytopathogenic fungi obtained from infected wheat kernels. The species identification of Fusarium …

Fusarium sppessential oilsgrowth rate index
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Effectiveness of the Influence of Selected Essential Oils on the Growth of Parasitic Fusarium Isolated from Wheat Kernels from Central Europe

2021

The aim of the study was to determine the effectiveness of selected seven commercial essential oils (EsO) (grapefruit, lemongrass, tea tree (TTO), thyme, verbena, cajeput, and Litsea cubeba) on isolates of common Central European parasitic fungal species of Fusarium obtained from infected wheat kernels, and to evaluate the oils as potential natural fungicides. The study was conducted in 2 stages. At each stage, the fungicidal activity of EsO (with concentrations of 0.025

FusariumAntifungal AgentsPharmaceutical ScienceOrganic chemistryMicrobial Sensitivity TestsCitralArticle<i>Fusarium</i> isolates from the German and Polish populationAnalytical ChemistryFusarium isolates from the German and Polish populationchemistry.chemical_compoundQD241-441FusariumDrug DiscoveryOils VolatilePhysical and Theoretical Chemistryessential oilsMyceliumTriticumTea treeThyme oilbiologyPlant ExtractsLitsea cubebafood and beveragesbiology.organism_classificationFungicideEuropeHorticulturechemistryChemistry (miscellaneous)Verbenathe mycelial growth rate indexMolecular MedicineEdible GrainMolecules
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