0000000001090608

AUTHOR

Luana Riccobono

showing 14 related works from this author

Characterization and conservation of Clinopodium raimondoi Spadaro, A.S. Faqi & Mazzola germplasm in the Parco della Favorita of Palermo city (Si…

2017

In urban areas, the parks represent an important source of plant biodiversity. The Parco della Favorita is the largest green area in Palermo city (Sicily, Italy). Clinopodium raimondoi Spadaro, A.S. Faqi & Mazzola is an aromatic plant species which has a range of uses in Sicilian traditional culture. The essential oil of this species is rich in terpene components and its aroma is similar to that of mint. The aim of this study was to enhance the germplasm of C. raimondoi in the Parco della Favorita. A collection-field was set up within the park. The main biometric and productive parameters of the species were determined and gas chromatographic analyses were carried out to determine the quali…

0106 biological sciencesGermplasmurban park urban plant biodiversity wild plant species aromatic uses030503 health policy & servicesHorticultureBiologyClinopodiumbiology.organism_classification01 natural sciencesArchaeologySettore AGR/02 - Agronomia E Coltivazioni Erbacee03 medical and health sciences0305 other medical science010606 plant biology & botanyActa Horticulturae
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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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Chemical composition of the essential oil from Thapsia garganica L. (Apiaceae) grown wild in Sicily and its antimicrobial activity.

2015

In this study, the chemical composition of the essential oil from flowers and leaves of Thapsia garganica L. collected in Sicily was evaluated by GC and GC-MS. The main components of T. garganica flower oil (T.f.) were chamazulene (58.3%), humulene oxide II (9.0%), tricosane (8.2%) and pentacosane (8.2%). Also the oil from leaves (T.l.) was characterised by high content of chamazulene (49.2%). Other abundant metabolites were 1,4-dimethylazulene (18.5%), (E)-phytol (6.3%) and neophytadiene (5.1%). The comparison with other studied oils of genus Thapsia is discussed. Antimicrobial activity against several micro-organisms, including some ones infesting historical art craft, was also determined.

Anti-Infective AgentAntifungal Agentshumulene oxide IIPlant Science01 natural sciencesThapsia garganicaBiochemistrylaw.inventionAnalytical Chemistrychemistry.chemical_compoundAnti-Infective AgentslawAntifungal AgentSettore BIO/15 - Biologia FarmaceuticaChemical compositionSicilyThapsia1-dimethylazulenebiologyHumuleneChemistryMicrobial Sensitivity TestchamazuleneAntimicrobialThapsia (plant)Anti-Bacterial Agentsvolatile componentFlowerPlant LeaveThapsia garganicaFlowersMicrobial Sensitivity TestsGas Chromatography-Mass SpectrometryBotanyAnti-Bacterial AgentOils VolatileEssential oilApiaceaeantimicrobial activityBacteria010405 organic chemistryChamazuleneOrganic ChemistryFungiSettore CHIM/06 - Chimica Organicabiology.organism_classification0104 chemical sciencesPlant Leaves010404 medicinal & biomolecular chemistryApiaceaeNatural product research
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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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Comparative chemical composition and bioactivity of leaves essential oils from nine Sicilian accessions of Myrtus communis L.

2019

In this study, the essential oils obtained from the leaves of Myrtus communis L. stored in a collection orchard located at the experimental station ‘Orleans’ of the Department of Agricultural and Forest Sciences of the University of Palermo (Italy) were investigated. The essential oils, analysed by gas chromatography–mass spectrometry, revealed the presence of α-pinene, 1,8-cineole, linalool, limonene and myrtenyl acetate as dominant constituents. The neuroprotective effects of M. communis essential oils were investigated by analysing the antioxidant properties and cholinesterases (acetylcholinesterase, AChE, and butyrylcholinesterase, BChE) inhibitory activity. Essential oils from Scopello…

leaveMyrtus communis010405 organic chemistrychemical profileantioxidant activityGeneral ChemistryBiology01 natural scienceslanguage.human_language0104 chemical sciencescholinesterase inhibitory activityMyrtus communis010404 medicinal & biomolecular chemistryHorticulturelanguageMyrtus communis L.OrchardChemical compositionSicilianJournal of Essential Oil 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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Chemical composition of the essential oil of Centaurea grinensis Reuter and Centaurea apiculata Ledeb: Growing wild in Croatia and Bulgaria, respecti…

2016

AbstractIn the present study, the chemical composition of the essential oils from aerial parts of Centaurea grinensis Reuter (K) collected at Žuta Lova, near Senj (Croatia), and aerial parts (L1) and flowers (L2) of C. apiculata Ledeb. collected near Rebro village, near Breznik town, Znepole Region (Bulgaria), both belonging to subgenus Lopholoma (Cass.) Dobrocz, was evaluated by GC and GC-MS. The main components of K were 4-vinyl guaiacol (21.5%), hexadecanoic acid (16.2%), acetophenone (12.5%). Caryophyllene oxide (15.8%) together with sphathulenol (14.5%) and humulene epoxide II (9.4%) were recognized as the main constituent of both the aerial part (L1) and flowers (L2) of C. apiculata. …

subgenus Lopholomacaryophyllene oxidePlant ScienceBiology01 natural scienceslaw.invention4-vinyl guaiacolchemistry.chemical_compoundPlant scienceCentaurea grinensilawBotanyChemical compositionEcology Evolution Behavior and SystematicsEssential oilHumuleneCentaurea apiculata010405 organic chemistrybiology.organism_classificationEcology Evolution Behavior and Systematic0104 chemical sciences010404 medicinal & biomolecular chemistrychemistryCaryophyllene oxideCentaureaSubgenusPCA analysi
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Chemical composition and biological activity of the essential oil of Ballota hispanica (L.) Benth. growing wild in Sicily

2015

Ballota L. comprises several relevant species largely used for their excellent therapeutic properties. Ballota hispanica (L.) Benth. is widely used in herbal medicine, and it is sold in herbalist shops for its sedative and antispasmodic properties. Considering its traditional medicinal use and the lack of scientific studies on the volatile components of this species as well as on its biological activities, in this study the chemical composition of the essential oil from aerial parts of B. hispanica, collected in Sicily, was evaluated by gas chromatography and gas chromatography–mass spectrometry. α-Elemol was the most abundant component of the oil (10.9%), followed by α-ylangene (8.5%),…

α-elemolPlant Sciencefree radical scavenging activityBiology01 natural scienceslaw.inventionlawBotanymedicineMedicinal plantsChemical compositionEcology Evolution Behavior and SystematicsEssential oilantimicrobial activity010405 organic chemistryBiological activityAntimicrobialbiology.organism_classificationEcology Evolution Behavior and Systematic0104 chemical sciences010404 medicinal & biomolecular chemistryBallota hispanicaα-ylangeneComposition (visual arts)AntispasmodicBallotamedicine.drugPlant Biosystems - An International Journal Dealing with all Aspects of Plant Biology
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Chemical composition and antimicrobial activity of the essential oils of some species of Anthemis sect. Anthemis (Asteraceae) from Sicily

2017

The chemical composition of the essential oils isolated from the aerial parts of Anthemis arvensis L. subsp. arvensis, Anthemis cretica subsp. messanensis (Brullo) Giardina & Raimondo and from flowers and leaves of Anthemis cretica subsp. columnae (Ten.) Frezén were determinated by GC–FID and GC–MS analyses. Torreyol (85.4%) was recognised as the main constituent of the Anthemis arvensis subsp. arvensis essential oil, while in the essential oils of Anthemis cretica subsp. messanensis, collected on the rock and cultivated in Hortus Botanicus Panormitanus, (E)-chrysanthenyl acetate (28.8 and 24.2% resp.), 14-hydroxy-α-humulene (8.1 and 5.3% resp.), santolina triene (8 and 5.8% resp.) and …

Drug Evaluation PreclinicalRaimondoAnthemis arvensisFlowersMicrobial Sensitivity TestsPlant Science01 natural sciencesBiochemistryGas Chromatography-Mass Spectrometryessential oillaw.inventionAnalytical Chemistrychemistry.chemical_compoundBridged Bicyclo CompoundsAnti-Infective Agentsantibacterial activitylawSantolinaBotanyOils VolatileAnthemisSettore BIO/15 - Biologia FarmaceuticaChemical compositionSicilyAnthemis arvensis L. subsp. arvensiEssential oiltorreyolBicyclic MonoterpenesPolycyclic Sesquiterpenesalpha-PineneEucalyptolbiology010405 organic chemistryOrganic ChemistryAnthemis cretica subsp. columnae (Ten.) FrezénAsteraceaebiology.organism_classificationCyclohexanols0104 chemical sciencesPlant Leaves010404 medicinal & biomolecular chemistryEucalyptolchemistryMonoterpenesAnthemis cretica subsp. messanensis (Brullo) Giardina &ampAnthemisSesquiterpenes
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Chemical composition of the essential oil of the local endemics Centaurea davidovii and C. parilica (Asteraceae, sect. Lepteranthus) from Bulgaria

2014

In the present study the chemical compositions of the essential oils from aerial parts of Centaurea davidovii Urum. and C. parilica Stoj. & Stef., both endemic to Bulgaria, were evaluated by GC and GC-MS. The main components of C. davidovii were β-eudesmol (13.9%), spathulenol (13.3%), caryophyllene oxide (10.1%) and ( Z)-phytol (5.4%). The main components of C parilica were hexadecanoic acid (39.2%), ( Z, Z)-9,12-octadecadienoic acid (11.9%), caryophyllene oxide (6.8%) and spathulenol (6.6%). In order to compare the essential oils composition of these taxa and of related species a PCA analysis was carried out.

CentaureaC. davidoviiPlant Scienceβ-eudesmolessential oilSpathulenollaw.inventionlawDrug DiscoveryBotanyhexadecanoic acidspathulenolOils VolatileCentaurea specieSettore BIO/15 - Biologia FarmaceuticaC. parilicaBulgariaEndemismChemical compositionessential oilsEssential oilPharmacologybiologyPlant ExtractsGeneral MedicineSettore CHIM/06 - Chimica OrganicaCentaurea davidoviiAsteraceaebiology.organism_classificationComplementary and alternative medicineCaryophyllene oxideCentaureaCentaurea parilica
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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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Chemical composition of the essential oil from Pulicaria vulgaris var. graeca (Sch.-Bip.) Fiori (Asteraceae) growing wild in Sicily and its antimicro…

2015

In this study the chemical composition of the essential oil from aerial parts of Pulicaria vulgaris var. graeca (Sch.-Bip.) Fiori collected in Sicily was evaluated by GC and GC–MS. The main components of P. vulgaris var. graeca oil were hexadecanoic acid (21.7%), β-caryophyllene (14.3%) and geranyl propionate (8.2%). The comparison with other studied oils of genus Pulicaria is discussed. Antibacterial activity against several bacteria, including some ones infesting historical art craft, was also determined.

geranyl propionatePlant ScienceFlowersMicrobial Sensitivity TestsBiologyAsteraceae01 natural sciencesBiochemistryPlant StemGas Chromatography-Mass Spectrometrylaw.inventionAnalytical ChemistryPulicariaantibacterial activityGenuslawBotanyAnti-Bacterial Agenthexadecanoic acidOils VolatilePulicaria vulgaris var. graecaChemical compositionSicilyEssential oilchemistry.chemical_classificationBacteriaPlant Stems010405 organic chemistryMicrobial Sensitivity Testβ-caryophylleneOrganic ChemistryAsteraceaeAntimicrobialbiology.organism_classificationPulicaria0104 chemical sciencesAnti-Bacterial AgentsPlant Leaves010404 medicinal & biomolecular chemistryvolatile componentchemistryFlowerPropionateAntibacterial activityPlant LeaveNatural product research
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Metabolites from Mediterranean plant: characterization and trasformation. chemotaxonomic assessmentand biological activity

2016

Questo progetto di ricerca ha lo scopo di ampliare le conoscenze di alcune piante appartenenti alla flora Mediterranea. Le piante da studiare sono state scelte in seguito ad un’attenta analisi bibliografica tra specie poco sudiate. La scelta è quindi ricaduta su nove specie appartenenti al genere Anthemis, due specie appartenenti al genere Pulicaria e sulle specie di Tetraclinis articulata, Salvia argentea, Ajuga tenorei, Ballota hispanica, Moluccella Spinosa e Thapsia garganica. Di esse sono stati preparati ed identificati i componenti degli oli essenziali e successivamente effettuati su di essi i saggi antibatterici. Dagli estratti delle specie di Tetraclinis articulata e Ajuga tenorei so…

piante mediterranee oli essenziali Tetraclinis articulata Ajuga tenorei Thapsia garganica Salvia argentea Pulicaria Moluccella spinosa Ballota hispanica anhemis.
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Chemical composition of salvia argentea L. (laminaceae)

2014

laminaceae s. argentea acido ursolicoSettore CHIM/06 - Chimica Organica
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