Search results for "pharmacology"

showing 10 items of 8885 documents

Trail-following pheromones in basal termites, with special reference to Mastotermes darwiniensis

2007

0098-0331 (Print) Journal Article; In the framework of an evolutionary study, trail pheromones have been studied in the most basal extant termite, Mastotermes darwiniensis (Mastotermitidae), and two other basal termites, the Termopsidae Porotermes adamsoni (Porotermitinae) and Stolotermes victoriensis (Stolotermitinae). Although workers of M. darwiniensis do not walk in single file while exploring a new environment under experimental conditions and are unable to follow artificial trails in 'open field' experiments, they do secrete a trail-following pheromone from their sternal glands. This unique behavior might reflect a primitive function of communication of the sternal gland. The major co…

0106 biological sciencesFatty Acids/chemistry/pharmacologyPHYLOGENYIsoptera/*physiologyTermopsidaeCHEMICAL COMMUNICATIONZoologyKalotermitidaeIsopteraTrail pheromoneMotor Activity010603 evolutionary biology01 natural sciencesBiochemistryPheromonesDose-Response RelationshipMastotermes darwiniensis[SDV.IDA]Life Sciences [q-bio]/Food engineering(E)-2610-TRIMETHYL-59-UNDECADIEN-1-OLAnimals[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringFORAGING BEHAVIORSTOLOTERMES VICTOTRIENSISEcology Evolution Behavior and SystematicsSTERNAL GLANDBehaviorbiologyBehavior AnimalDose-Response Relationship DrugEcologyFatty AcidsPOROTERMES ADAMSONIGeneral Medicinebiology.organism_classification010602 entomologyTermitidaeSex pheromonePheromonePheromones/chemistry/*pharmacologyDrugAnimal/*drug effects/physiologyRhinotermitidaeMotor Activity/*drug effects/physiology
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Chemical composition, herbicidal and antifungal activity of Satureja cuneifolia essential oils from Spain

2016

The chemical composition of essential oils from Satureja cuneifolia growing in east Spain was analyzed by GC, GC/MS. Forty-five compounds accounting for 99.1% of the total oil were identified. Camphor (47.6%), followed by camphene (13.6%) were the main compounds. Their herbicidal and antifungal activity was tested in vitro against three weeds (Amaranthus hybridus, Portulaca oleracea and Conyza canadensis) and eleven common pathogenic or saprophytic fungi (Phytophthora citrophthora, P. palmivora, Pythium litorale, Verticillium dahlia, Rhizoctonia solani, Penicillium hirsutum, Colletotrichum gloeosporioides, Phaeoacremonium aleophilum, Phaemoniella chlamydospora, Cylindrocarpon liriodendri a…

0106 biological sciencesHerbicidal activityAntifungal AgentsPhytophthora citrophthoraAmaranthus hybridusBOTANICAPlant WeedsGerminationPlant Science01 natural sciencesEssential oillaw.inventionRhizoctonia solanichemistry.chemical_compoundlawDrug DiscoveryOils VolatileAntifungal activityEssential oilSatureja cuneifoliaPharmacologyCylindrocarponBIOLOGIA VEGETALbiologyHerbicidesPlant ExtractsSaturejaFungiGeneral MedicineVerticilliumbiology.organism_classification0104 chemical sciencesPhaeoacremonium aleophilum010404 medicinal & biomolecular chemistryHorticultureComplementary and alternative medicinechemistrySpainCamphene010606 plant biology & botany
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Can Indirect Herbicide Exposure Modify the Response of the Colorado Potato Beetle to an Organophosphate Insecticide?

2018

AbstractOrganisms live in complex multivariate environments. In agroecosystems, this complexity is often human-induced as pest individuals can be exposed to many xenobiotics simultaneously. Predicting the effects of multiple stressors can be problematic, as two or more stressors can have interactive effects. Our objective was to investigate whether indirect glyphosate-based herbicide (GBH) exposure of the host plant has interactive effects in combination with an insecticide (azinphos-methyl) on an invasive pest Colorado potato beetle (Leptinotarsa decemlineata Say). We tested the effects of GBH and insecticide on the survival, insecticide target genes expression (acetylcholinesterase genes)…

0106 biological sciencesInsecticidesCarbamateColoradomedicine.medical_treatmentGlutathione reductase010501 environmental sciencesPharmacology010603 evolutionary biology01 natural sciencesSuperoxide dismutasechemistry.chemical_compoundmedicineAnimalsGlutathione TransferaseSolanum tuberosum0105 earth and related environmental scienceschemistry.chemical_classificationEcologybiologyHerbicidesGlutathione peroxidaseOrganophosphateColorado potato beetlefood and beveragesGeneral MedicineGlutathionebiology.organism_classificationOrganophosphatesColeopterachemistryInsect Sciencebiology.proteinAzinphos-methylJournal of Economic Entomology
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Innovative alternative technologies to extract carotenoids from microalgae and seaweeds

2016

Marine microalgae and seaweeds (microalgae) represent a sustainable source of various bioactive natural carotenoids, including β-carotene, lutein, astaxanthin, zeaxanthin, violaxanthin and fucoxanthin. Recently, the large-scale production of carotenoids from algal sources has gained significant interest with respect to commercial and industrial applications for health, nutrition, and cosmetic applications. Although conventional processing technologies, based on solvent extraction, offer a simple approach to isolating carotenoids, they suffer several, inherent limitations, including low efficiency (extraction yield), selectivity (purity), high solvent consumption, and long treatment times, w…

0106 biological sciencesMarine microalgae; Seaweeds; Carotenoids; Nonconventional extraction; Electrotechnologies; Pulsed electric field-assisted extraction; Supercritical fluid extraction; Green processing; Microwave-assisted extraction; Marine drugsPharmaceutical ScienceReviewAlgues marines01 natural scienceschemistry.chemical_compound0404 agricultural biotechnologyAstaxanthin010608 biotechnologyDrug DiscoveryMicroalgaeHumansgreen processingSolvent extractionMicrowavesnonconventional extractionPharmacology Toxicology and Pharmaceutics (miscellaneous)Carotenoidlcsh:QH301-705.5chemistry.chemical_classificationHaematococcus pluvialismarine microalgaebiologybusiness.industryelectrotechnologiespulsed electric field-assisted extractionSupercritical fluid extractioncarotenoidsChromatography Supercritical Fluid04 agricultural and veterinary sciencesmicrowave-assisted extractionbiology.organism_classificationSeaweed040401 food scienceBiotechnologyHot water extractionseaweedsmarine drugschemistrylcsh:Biology (General)SolventsBiochemical engineeringsupercritical fluid extractionbusinessBiotechnology
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Biochemical characterization of cassiopea andromeda (Forsskål, 1775), another red sea jellyfish in the western mediterranean sea

2021

Increasing frequency of native jellyfish proliferations and massive appearance of non-indigenous jellyfish species recently concur to impact Mediterranean coastal ecosystems and human activities at sea. Nonetheless, jellyfish biomass may represent an exploitable novel resource to coastal communities, with reference to its potential use in the pharmaceutical, nutritional, and nutraceutical Blue Growth sectors. The zooxanthellate jellyfish Cassiopea andromeda, Forsskål, 1775 (Cnidaria, Rhizostomeae) entered the Levant Sea through the Suez Canal and spread towards the Western Mediterranean to reach Malta, Tunisia, and recently also the Italian coasts. Here we report on the biochemical characte…

0106 biological sciencesMediterranean climateCnidariacollagenAquatic OrganismsJellyfishScyphozoaPharmaceutical Scienceantioxidant activityalien species01 natural sciencesBioactive marine compoundMediterranean seaDrug DiscoverySuez canalAlien species; Antioxidant activity; Antioxidants; Bioactive marine compounds; Collagen; Fatty acids; Jellyfish; Nutraceuticals; Zooxanthellate jellyfish; Animals; Antioxidants; Aquatic Organisms; Ecosystem; Mediterranean Sea; Dietary Supplements; ScyphozoaBiology (General)Pharmacology Toxicology and Pharmaceutics (miscellaneous)nutraceuticals0303 health sciencesAquatic Organismjellyfishzooxanthellate jellyfishAlien species Antioxidant activity Antioxidants Bioactive marine compounds Collagen Fatty acids Jellyfish Nutraceuticals Zooxanthellate jellyfish Animals Antioxidants Aquatic Organisms Ecosystem Mediterranean Sea Dietary Supplements ScyphozoaantioxidantsZooxanthellaeCollagenNutraceuticalAntioxidantCassiopea andromedaQH301-705.5Biologyfatty acids03 medical and health sciencesNutraceuticalAntioxidant activitybiology.animalBotanyMediterranean SeaAnimalsZooxanthellate jellyfish14. Life underwaterAlien specieEcosystem030304 developmental biologyDietary Supplementbioactive marine compoundsAnimal010604 marine biology & hydrobiologybiology.organism_classificationFatty acidDietary SupplementsJellyfish
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Volatile Components from Aerial Parts of Centaurea diffusa and C. micrantha ssp. melanosticta and Their Biocidal Activity on Microorganisms Affecting…

2018

The chemical composition of the essential oils from aerial parts of two taxa of Centaurea belonging to subgenus Acrolophus, Centaurea diffusa Lam. and C. micrantha Hoff. ssp. melanosticta (Lange) Dostàl, respectively collected in Croatia and Spain, were evaluated by GC and GC-MS. The main components of C. diffusa were hexadecanoic acid (31.1%), ( Z,Z)-9,12-octadecadienoic acid (10.7%) and damascenone isomers (6.4%), whereas hexahydrofarnesyl acetone (27.8%), hexadecanoic acid (8.3%) and caryophyllene oxide (6.4%) were the most abundant components of C. micrantha ssp. melanosticta. The oils showed good antibacterial and antifungal activities against some microorganisms that infest historica…

0106 biological sciencesPharmacologybiology010405 organic chemistryMicroorganismAcrolophusMicranthaPlant ScienceGeneral MedicineAsteraceaebiology.organism_classification010603 evolutionary biology01 natural sciencesCentaurea diffusa0104 chemical sciencesTaxonComplementary and alternative medicineCentaureaDrug DiscoveryBotanySubgenusNatural Product Communications
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Guaianolides from the Aerial Parts of Centaurea Hololeuca

2006

Seven guaianolides were isolated from the acetone extract of the aerial parts of Centaurea hololeuca Boiss. The antifeedant activity of the natural compounds (1–7) and of four chloro derivatives (8–11), synthesized from repin (1) and janerin (3) were tested against larvae of Spodoptera littoralis. Cebellin J (6) and chlorojanerin (11) showed significant antifeedant activity at 100 ppm, whereas at this concentration cebellin G (4) and 15-deschloro-15-hydroxychlorojanerin (7) stimulated feeding. Cebellin G (4) stimulated larvae of S. littoralis to feed at low concentration, but deterred feeding at high concentrations. The addition of chlorine to repin (1) resulted in an increase in antifeeda…

0106 biological sciencesPharmacologybiologyChemistryPlant ScienceGeneral Medicinebiology.organism_classification010603 evolutionary biology01 natural sciencesComplementary and alternative medicineCentaureaDrug DiscoveryBotany010606 plant biology & botanyNatural Product Communications
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Mycotheca of Edible and Medicinal Mushrooms at Herbarium SAF as a Potential Source of Nutraceuticals and Cultivated Mushrooms

2018

Basidiomycetes strains (n = 39) belonging to 9 genera in 8 families are kept in the mycotheca of the Department of Agricultural, Food and Forest Sciences at the University of Palermo (Palermo, Italy). All of the strains are medicinal mushrooms, and some are of great commercial and nutraceutical interest.

0106 biological sciencesPharmacologybusiness.industryBasidiomycota010604 marine biology & hydrobiologyAgricultureBiology010603 evolutionary biology01 natural sciencesApplied Microbiology and BiotechnologyNutraceuticalHerbariumItalyAgricultureDietary SupplementsDrug DiscoveryBotanyHumansPotential sourceFruiting Bodies FungalbusinessInternational Journal of Medicinal Mushrooms
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An overview of natural antimicrobials role in food

2017

The present paper aims to review the natural food preservatives with antimicrobial properties emphasizing their importance for the future of food manufacturing and consumers' health. The extraction procedures applied to natural antimicrobials will be considered, followed by the description of some natural preservatives' antimicrobial mechanism of action, including (i) membrane rupture with ATP-ase activity inhibition, (ii) leakage of essential biomolecules from the cell, (iii) disruption of the proton motive force and (iiii) enzyme inactivation. Moreover, a provenance-based classification of natural antimicrobials is discussed by considering the sources of origin for the major natural prese…

0106 biological sciencesPreservativeFood industryAntimicrobial peptidesMicrobial Sensitivity Tests01 natural sciences0404 agricultural biotechnologyMicrobial resistanceAnti-Infective AgentsParasitic Sensitivity Tests010608 biotechnologyDrug DiscoveryAgrártudományokAnimalsHumansParasitesPharmacologyBiological ProductsBacteriaÉlelmiszertudományokChemistrybusiness.industryActivity inhibitionOrganic ChemistryFungi04 agricultural and veterinary sciencesGeneral MedicineAntimicrobialFood safetyBiopreservation040401 food scienceBiotechnologyFood PreservativesbusinessEuropean Journal of Medicinal Chemistry
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Parasite-induced behavioral change: mechanisms.

2010

Animal behavior and parasitism are more tightly linked than commonly thought. One of the most astonishing phenomena in host–parasite antagonistic interactions is ‘host manipulation,’ that is, the ability of a parasite to alter the behavior of its host in ways that appear to increase parasite fitness at the expense of host fitness. The mechanisms by which a parasite hijacks the behavior of its host have been explored using ethopharmacological and immunocytochemical approaches or carrying out a large-scale proteomic study on manipulated host’s brain. These few mechanistic studies have confirmed both the complexity of host manipulation by parasites and the importance of understanding the molec…

0106 biological sciencesSerotonin[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyProteomeParasitismBiologyBioinformatics010603 evolutionary biology01 natural sciencesRodentsTranscriptome03 medical and health sciences[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisParasite hosting[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyAnimal behavior030304 developmental biology0303 health sciences[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyHost (biology)Phenotype3. Good healthCrustaceansNeuromodulatorInsectsParasiteEvolutionary biologyProteome[SDE.BE]Environmental Sciences/Biodiversity and EcologyEthopharmacologyTranscriptome[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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