Search results for "ESSENTIAL OIL"

showing 10 items of 443 documents

Chemical Composition and Antimicrobial Activity of the Essential Oil from Flowers of Eryngium triquetrum (Apiaceae) Collected Wild in Sicily

2016

The chemical composition of the essential oil from flowers of Eringium triquetrum Vahl. collected in Sicily was evaluated by GC and GC-MS. The main components were pulegone (50.6%), piperitenone (30.5%) and menthone (7.0%). Comparison of this oil with other studied oils of Eringium species is discussed. The oil showed good antibacterial and antifungal activities against some microorganisms that infest historical art works.

EryngiumFlowersPlant Science01 natural scienceslaw.inventionchemistry.chemical_compoundAnti-Infective AgentslawPulegoneVolatile componentDrug DiscoveryBotanyOils VolatilePlant OilsEryngium triquetrumPiperitenoneSettore BIO/15 - Biologia FarmaceuticaSicilyChemical compositionEssential oilPharmacologyApiaceaeBacteriabiology010405 organic chemistryMenthone.Drug Discovery3003 Pharmaceutical ScienceFungiSettore CHIM/06 - Chimica OrganicaGeneral MedicineComplementary and Alternative Medicine2708 Dermatologybiology.organism_classificationAntimicrobialEryngium triquetrumMenthone0104 chemical sciences010404 medicinal & biomolecular chemistryComplementary and alternative medicinechemistryTriquetrumPulegoneApiaceaeNatural Product Communications
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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

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Essential oils Fungistatic activity Rhyzoctonia solani Sclerotinia sclerotiorum
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Chemistry and functional properties in prevention of neurodegenerative disorders of five Cistus species essential oils.

2013

The chemical composition of Cistus creticus, Cistus salvifolius, Cistus libanotis, Cistus monspeliensis and Cistus villosus essential oils has been examined by GC and GC–MS analysis. Height-nine constituents were identified in C. salvifolius oil, sixty in C. creticus, fifty-six in C. libanotis, fifty-four in C. villosus, forty-five in C. monspeliensis. Although the five species belong to the same genus, the composition showed interesting differences. Essential oils were screened also for their potential antioxidant effects (by DPPH, ABTS, FRAP and b-carotene bleaching test) and their acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) inhibitory activity, useful for prevention and …

Fish ProteinsTunisiaDPPHCistuCistus libanotisToxicologyEssential oilAntioxidantslaw.inventionchemistry.chemical_compoundNutraceuticalAntioxidant activitylawCistusBotanyOils VolatileAnimalsGC–MSSettore BIO/15 - Biologia FarmaceuticaCistus monspeliensisHorsesEssential oilNootropic AgentsABTSbiologyTraditional medicineChemistryCistusSettore CHIM/06 - Chimica OrganicaGeneral MedicineFree Radical Scavengersbiology.organism_classificationFlavoring AgentsPlant LeavesCistus creticusNeuroprotective AgentsItalyButyrylcholinesteraseDietary SupplementsElectrophorusEthnopharmacologyAcetylcholinesteraseCholinesterase inhibitory activityCholinesterase InhibitorsMedicine TraditionalGC-MSFood ScienceFood and chemical toxicology : an international journal published for the British Industrial Biological Research Association
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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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Chemical Constituents and Biological Properties of Genus Doronicum (Asteraceae)

2021

The genus Doronicum, belonging to tribe Senecioneae (Fam. Asteraceae), is found mainly in the Asia, Europe and North Africa. This genus of plant has always been used in traditional medicinal treatments due to the many biological properties shown such as killing parasitic worms and for relieving constipation, as well as to improve heart health, to alleviate pain and inflammation, to treat insect bites, etc. According to the World Flora the genus Doronicum contains 39 subordinate taxa.[1-3] The purpose of this article, which covers data published from 1970 to 2021 with more than 110 articles, aims to carry out a complete and critical review of the Doronicum genus, examining traditional uses a…

Florabiological propertieBioengineeringAsteraceaeTribe (biology)BiochemistryAntioxidantsessential oilGenusBiological propertyHumansethnopharmacologyMolecular BiologyPyrrolizidine AlkaloidsbiologyTraditional medicineMolecular StructureChemistrysecondary metabolitesAnti-Inflammatory Agents Non-SteroidalGeneral ChemistryGeneral MedicineSenecioneaeAsteraceaebiology.organism_classificationAntineoplastic Agents PhytogenicAnti-Bacterial AgentsDoronicum ssp. (Asteraceae)Chemical constituentsMolecular MedicineDoronicum
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Chemical composition of the essential oil from different vegetative parts of Foeniculum vulgare subsp. piperitum (Ucria) Coutinho (Umbelliferae) grow…

2021

In the present study, the chemical compositions of the essential oils from roots, stems, leaves and fruits of Foeniculum vulgare subsp. piperitum collected in Sicily were evaluated by GC and GC-MS. The main components of the roots were terpinolene (33.15%), gamma-terpinene (12.18%) and fenchyl acetate (11.23%). Stems and leaves were very rich in alpha-phellandrene (36.85% and 41.59%, respectively) and beta-phellandrene (19.68% and 25.79%, respectively), whereas the main components of fruits were terpinolene (20.10%) and limonene (17.84%)These results were compared with those of the EOs of the same vegetative parts of Foeniculum vulgare subsp. vulgare, collected in the same station and in th…

FoeniculumPlant ScienceFoeniculum vulgare subsp. vulgareBiologySubspecies01 natural sciencesBiochemistryAnalytical Chemistrylaw.inventionchemistry.chemical_compoundlawβ phellandreneChemical compositionEssential oilLimoneneterpinoleneApiaceae010405 organic chemistryOrganic Chemistrybiology.organism_classification0104 chemical sciences010404 medicinal & biomolecular chemistryHorticultureFoeniculum vulgare subsp. piperitumchemistryvolatile componentsβ-phellandreneα-phellandreneEstragoleApiaceaeNatural Product Research
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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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Role of Natural Essential Oils in Sustainable Agriculture and Food Preservation

2014

Food PreservativeslawAgroforestrybusiness.industrySustainable agricultureFood preservationBusinessEssential oilNatural (archaeology)law.inventionBiotechnologyJournal of Scientific Research and Reports
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