Search results for " Essential Oils"

showing 10 items of 56 documents

A study on the essential oil Ferulago campestris. How much does exstraction method influence the oil composition?

2010

The essential oil of different parts of Ferulago campestris (Bess.) collected in Sicily has been extracted by microwave-assisted hydrodistillation (MAHD) and by classic hydrodistillation (HD). A comparative qualitative- quantitative study on the composition of the oils was carried out. A total of 100 compounds were identified in the oils obtained by MAHD, whereas 88 compounds characterized the HD oils. The most prominent components were, in all different parts of F. campestris and in both extraction methods, 2,4,5- trimethylbenzaldehyde and 2,4,6-trimethylbenzaldehyde isomers; the latter was not previously found. The attempt to evaluate where the oil components are located in all parts of t…

Apiaceae / Essential oils / Ferulago campestris / Kinetic of microwave extraction / Microwaves hydrodistillationIsomerismKinetic of microwave extractionMicrowaves hydrodistillationOils VolatilePlant OilsSettore CHIM/06 - Chimica OrganicaMicrowavesEssential oilDistillationApiaceaeFerulago campestri
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Effects of Citrus essential oils on weed emergence and on soil microorganisms

2017

Weed invasion is a major problem for agricultural productivity since causes economic and environmental damages. Weed control can be achieved through chemical, mechanical, biological and cultural means. Although synthetic herbicides are effective for weed control, they have a negative impact on soil and the environment. Therefore, it is important to develop alternative means that are in the meanwhile effective and ecofriendly. EOs are commonly used for bactericidal, virucidal, fungicidal, antiparasitical, insecticidal, medicinal and cosmetic applications. Citrus EOs are the most widely used in the world for many purposes. Moreover, some studies have recently investigated their potential as h…

Citrus essential oils weed emergenceSettore AGR/13 - Chimica Agraria
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Antilisterial effect of citrus essential oils and their performance inedible film formulations

2016

[EN] The antimicrobial activity of eight essential oils (EOs) extracted from the fruit peel of Citrus genotypes (orange, mandarin and lemon) was evaluated against 76 strains of Listeria monocytogenes, previously isolated from different food matrices. EOs showing the most (EO L2 and EO L8) and least (EO O3 and EO M7) effective inhibition activities were chemically characterized by gas chromatography coupled with mass spectrometry (GC/MS) to compare their composition. EO L2 and EO L8 were chosen to determine the MIC and to evaluate the cell viability of the most sensitive strains (L. monocytogenes LM35 and LM69) after 1, 2, 4 and 6 h of exposure. The effectiveness of chitosan (CH) and methylc…

CitrusTECNOLOGIA DE ALIMENTOSSettore AGR/13 - Chimica AgrariaCitruOrange (colour)medicine.disease_causeMass spectrometryBiopreservationEssential oilEdible coatingChitosanchemistry.chemical_compound0404 agricultural biotechnologyBiopreservation; Citrus; Edible coating; Essential oils; GC/MS; Listeria monocytogenes; Food Science; BiotechnologyListeria monocytogenesmedicineListeria monocytogeneChromatographybiologyGC/MSMICROBIOLOGIA04 agricultural and veterinary sciencesSettore AGR/15 - Scienze E Tecnologie AlimentariAntimicrobialbiology.organism_classification040401 food scienceListeria monocytogeneschemistryEssential oilsListeriaGas chromatographyFood ScienceBiotechnologySettore AGR/16 - Microbiologia Agraria
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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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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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Comparison between Different Techniques for Volatiles Analyses in Coriander (Coriandrum sativum L.)

2011

Although many papers have been devoted to the study of Coriander fruits aromatic pattern, many differences show up according not only to the provenience of seeds, but also to the analytical methods chosen. In our work, samples from one Coriander small-seeded biotype has been analysed, verifying the differences between (1) the oil extracted by means of a Soxhlet apparatus (2) the same oil sampled by means of HS-SPME and (3) the HS-SPME on the roughly ground seeds, all analysed by direct injection in the GC-MS. The volatile composition detected by means of HS-SPME on oil resembles tightly that performed on Soxhlet extract. With respect to the direct injection, the HS-SPME shows a higher sensi…

HorticultureAromatic features volatile composition seeds HS-SPME GC-MS essential oils.SativumbiologyCoriandrumaromatic features volatile composition seeds HS-SPME GC-MS essential oilsSettore AGR/13 - Chimica AgrariaHorticulturebiology.organism_classificationSettore AGR/02 - Agronomia E Coltivazioni Erbacee
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Identification of highly effective antitrypanosomal compounds in essential oils from the Apiaceae family

2018

The Apiaceae family encompasses aromatic plants of economic importance employed in foodstuffs, beverages, perfumery, pharmaceuticals and cosmetics. Apiaceae are rich sources of essential oils because of the wealth of secretory structures (ducts and vittae) they are endowed with. The Apiaceae essential oils are available on an industrial level because of the wide cultivation and disposability of the bulky material from which they are extracted as well as their relatively cheap price. In the fight against protozoal infections, essential oils may represent new therapeutic options. In the present work, we focused on a panel of nine Apiaceae species (Siler montamon, Sison amomum, Echinophora spi…

Human African trypanosomiasiAlkeneApiaceae; BALB/3T3; Essential oils; Human African trypanosomiasis; Trypanosoma brucei; 3T3 Cells; Alkenes; Animals; Apiaceae; Benzyl Compounds; Cyclohexenes; Dioxolanes; Inhibitory Concentration 50; Mice; Monoterpenes; Oils Volatile; Plant Oils; Pyrogallol; Terpenes; Trypanosoma brucei brucei; Trypanosomiasis; Pollution; Public Health Environmental and Occupational Health; Health Toxicology and MutagenesisHealth Toxicology and Mutagenesis[SDV]Life Sciences [q-bio]VolatileMonoterpeneAllylbenzene DerivativesPlant Oil01 natural sciencesCosmeticsEssential oilTerpenechemistry.chemical_compoundMiceTrypanosoma bruceiBALB/3T3media_commonBicyclic Monoterpenes2. Zero hungerbiologyTraditional medicineChemistryBenzyl CompoundsDioxolanesGeneral Medicine3T3 CellsPollutionHealthEssential oilsTerpeneIdentification (biology)Public HealthDioxolaneCyclohexenesmedia_common.quotation_subjectAcyclic MonoterpenesApiaceae; BALB/3T3; Essential oils; Human African trypanosomiasis; Trypanosoma brucei; 3T3 Cells; Alkenes; Animals; Apiaceae; Benzyl Compounds; Cyclohexenes; Dioxolanes; Inhibitory Concentration 50; Limonene; Mice; Monoterpenes; Oils Volatile; Plant Oils; Pyrogallol; Terpenes; Trypanosoma brucei brucei; TrypanosomiasisTrypanosoma brucei bruceiCyclohexane MonoterpenesTrypanosoma bruceiAlkenesPyrogallolInhibitory Concentration 50TrypanosomiasisBenzyl CompoundsCyclohexenesOils VolatileCyclohexeneAnimalsPlant OilsToxicology and Mutagenesis3T3 CellApiaceaeAnimal010405 organic chemistryTerpenesEnvironmental and Occupational HealthHuman African trypanosomiasisPublic Health Environmental and Occupational Healthbiology.organism_classification0104 chemical sciences010404 medicinal & biomolecular chemistryPyrogallolMonoterpenesCymenesBenzyl CompoundOilsLimoneneApiaceae
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Nanotechnology for Natural Medicine: Formulation of Neem Oil Loaded Phospholipid Vesicles Modified with Argan Oil as a Strategy to Protect the Skin f…

2021

Neem oil, a plant-derived product rich in bioactives, has been incorporated in liposomes and hyalurosomes modified by adding argan oil and so called argan-liposomes and argan-hyaluro-somes. Argan oil has also been added to the vesicles because of its regenerative and protective effects on skin. In the light of this, vesicles were specifically tailored to protect the skin from oxidative stress and treat lesions. Argan-liposomes were the smallest vesicles (~113 nm); the addition of sodium hyaluronate led to an increase in vesicle size (~143 nm) but it significantly improved vesicle stability during storage. In vitro studies confirmed the free radical scavenging activity of formula-tions, irre…

Keratinocytes0301 basic medicineEstrèsliposomeskeratinocytesfood.ingredientHyalurosomesPhysiologyClinical BiochemistryArgan oil02 engineering and technologyRM1-950medicine.disease_causeStressBiochemistryArticle03 medical and health scienceschemistry.chemical_compoundfoodfibroblastsmedicineHydrogen peroxideMolecular BiologyLiposomeNeem oilOlis essencialsViscosityVesicleCell BiologyFibroblasts021001 nanoscience & nanotechnologyIn vitroSkin diseases030104 developmental biologychemistryMalalties de la pellskin diseasesOxidative stressEssences and essential oilsLiposomesviscosityBiophysicshyalurosomesTherapeutics. Pharmacology0210 nano-technologyWound healingOxidative stressAntioxidants
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Formulation of liposomes loading lentisk oil to ameliorate topical delivery, attenuate oxidative stress damage and improve cell migration in scratch …

2021

[EN] Pistacia lentiscus L. is a sclerophyllous shrub capable of growing under harsh climatic conditions especially in the Mediterranean Basin. Different products can be obtained from this plant, such as essential oil, mastic gum or even fixed oil. The last is well known for its flavor which is mainly exploited in the food industry. Additionally, it has been traditionally used in the treatment of skin diseases, but, at the moment, any suitable formulation for skin delivery has been formulated and its biological effects was not deeply confirmed. Given that, in the present study, the lentisk oil has been formulated in liposomes at different concentrations (10, 20, 30 mg/ml) and their physicoch…

KeratinocytesSwineAdministration Topicalmedicine.disease_causelaw.inventionchemistry.chemical_compoundMiceSkin absorptionlawCell MovementScratch assayLecithinsMaterials TestingFood scienceHydrogen peroxideWound healingScratch assayFlavorLiposomeSkin permeation studiesbiologyVesiclePellGeneral MedicineOxidantsPistaciaKeratinocytes &amp; fibroblastsPistacia lentiscusFarmacologiaKeratinocytes & fibroblastsDrug CompoundingWound healingRM1-950Cell LinemedicineOils VolatileAnimalsHumansAbsorció cutàniaParticle SizeEssential oilPharmacologyOlis essencialsPenetration (firestop)Hydrogen Peroxidebiology.organism_classificationConfocal microscopyOxidative StresschemistryEssences and essential oilsPistacia lentiscusLiposomesSkin permeation studies confocal microscopyTherapeutics. PharmacologySoybeansOxidative stress
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