Search results for "Factory"

showing 10 items of 490 documents

Intraspecific Communication Through Chemical Signals in Female Mice: Reinforcing Properties of Involatile Male Sexual Pheromones

2006

In rodents, social and reproductive behaviors critically depend on chemical signals, including sexual pheromones that have been suggested (but not demonstrated) to be rewarding. In this work, we analyze this issue by studying the chemoinvestigatory behavior of adult female mice (without experience with male-derived chemicals) toward 1) the synthetic odorant citralva, 2) bedding soiled by different conspecifics (females, males, and castrated males), and 3) volatiles derived from bedding soiled by males and castrated males (confronted in 2-choice tests). We also study whether these chemical signals are able to induce conditioned place preference, a reliable test for rewarding properties of st…

MaleOlfactory systemVomeronasal organPhysiologyZoologyolfactory systemplace preferenceBiologyIntraspecific competitionvomeronasal systemMiceBehavioral Neurosciencesexual behaviorPhysiology (medical)Conditioning PsychologicalNitrilesAnimalsAnimal communicationSex AttractantsHabituationrewardCommunicationbusiness.industryBedding and LinensStimulation ChemicalSensory SystemsConditioned place preferenceAnimal CommunicationSex pheromoneOdorantsPheromoneFemaleVolatilizationbusinessChemical Senses
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Brain processing of the mammary pheromone in newborn rabbits.

2011

International audience; Chemosignals strongly contribute to social interactions in mammals, including mother-young relationships. In the European rabbit, a volatile compound emitted by lactating females in milk, the 2-methylbut-2-enal, has been isolated. Carrying the properties of a pheromone, in particular the spontaneous ability to release critical sucking-related movements in newborns, it has been called the mammary pheromone (MP). Lesion of the vomeronasal organ and preliminary 2-deoxyglucose data suggested that the MP could be processed by the main olfactory system. However, the neuronal substrate that sustains the MP-induced response of neonates remained unknown. Here, we evaluated Fo…

MaleOlfactory systemVomeronasal organ[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMESH: NeuronsMESH: RabbitsPheromonesMESH : PheromonesMESH: Animals NewbornThirstMESH: Vomeronasal OrganBehavioral Neuroscience0302 clinical medicinePiriform cortexMESH : HabenulaMESH : FemaleMESH: AnimalsMESH : Olfactory BulbNeurons0303 health sciencesMESH: PheromonesLamina terminalisMESH: Proto-Oncogene Proteins c-fosMESH : Animals NewbornOlfactory PathwaysOlfactory BulbHabenulamedicine.anatomical_structureMESH: HabenulaPheromoneFemaleRabbitsVomeronasal Organmedicine.symptomProto-Oncogene Proteins c-fosMESH: Olfactory Bulbmedicine.medical_specialtyMESH : HypothalamusMESH : Vomeronasal OrganMESH : MaleHypothalamusBiologyMESH : Neurons03 medical and health sciencesInternal medicinemedicineAnimalsMESH : Rabbits030304 developmental biologyHabenulaMESH : Olfactory PathwaysNewbornMESH: HypothalamusMESH: MaleOlfactory bulbEndocrinologyMESH : Proto-Oncogene Proteins c-fosAnimals NewbornMESH : AnimalsMESH: Female[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryMESH: Olfactory Pathways
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Parvalbumin-containing interneurons do not innervate granule cells in the olfactory bulb

2001

Combining pre-embedding parvalbumin immunostaining and post-embedding immunogold detection of GABA in the olfactory bulb, we investigated whether the parvalbumin-containing GABAergic interneurons of the external plexiform layer exclusively innervate principal cells, or whether they also establish inhibitory synapses upon GABAergic local neurons such as granule cells. Our results demonstrate that the parvalbumin-containing cells do not contact GABAergic interneurons in the neuropil of the external plexiform layer. On the contrary, their postsynaptic elements were always non-GABAergic principal cells. Although classically it has been accepted that the interneurons of the external plexiform la…

MaleOlfactory systemgenetic structuresInterneuronInhibitory postsynaptic potentialInterneuronsPostsynaptic potentialNeural PathwaysNeuropilmedicineAnimalsRats WistarMicroscopy Immunoelectrongamma-Aminobutyric Acidbiologymusculoskeletal neural and ocular physiologyGeneral NeuroscienceOlfactory BulbRatsOlfactory bulbSmellParvalbuminsmedicine.anatomical_structurenervous systemSynapsesbiology.proteinGABAergicNeuroscienceParvalbuminNeuroreport
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Decreasing prevalence of specific anosmia to non-steroid odorants from childhood to adolescence

2020

International audience; Specific anosmia is defined as the inability to detect a particular odorant, despite a normal olfactory function. Previous studies reported sex-related difference in detection threshold to steroid odorants, like androstenone or androstadienone during adolescence, and boys showed an increased detection threshold with age. However, such investigations have not been performed for non-steroid odorants. Hence, the current study investigated sex- and age-related effects on the prevalence of specific anosmia in children/adolescents aged 5-14 years (n = 800) to non-steroid odorants. The detection thresholds of three non-steroid odorants (bacdanol, methylsalicylate, and 3-hyd…

MaleOlfactory systemmedicine.medical_specialtyAdolescentAnosmiamedicine.medical_treatmentExperimental and Cognitive PsychologyOlfactionBiologySteroid03 medical and health sciencesBehavioral Neurosciencechemistry.chemical_compound0302 clinical medicinechildrenInternal medicinePrevalencemedicineHumanssex0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyChildnon-steroidOlfactory receptorDetection threshold05 social sciencesAndrostadienoneAndrostenonespecific anosmiaSpecific anosmiaSmellmedicine.anatomical_structureEndocrinologyagechemistryChild PreschoolSensory ThresholdsOdorants[SCCO.PSYC]Cognitive science/PsychologySteroids[SDV.AEN]Life Sciences [q-bio]/Food and Nutritionpsychological phenomena and processes030217 neurology & neurosurgeryolfactionPhysiology & Behavior
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An olfactory receptor for food-derived odours promotes male courtship in Drosophila.

2011

International audience; Many animals attract mating partners through the release of volatile sex pheromones, which can convey information on the species, gender and receptivity of the sender to induce innate courtship and mating behaviours by the receiver. Male Drosophila melanogaster fruitflies display stereotyped reproductive behaviours towards females, and these behaviours are controlled by the neural circuitry expressing male-specific isoforms of the transcription factor Fruitless (FRU(M)). However, the volatile pheromone ligands, receptors and olfactory sensory neurons (OSNs) that promote male courtship have not been identified in this important model organism. Here we describe a novel…

MaleOviposition[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMESH : GenotypeMESH : OvipositionCourtshipMESH: GenotypeSexual Behavior Animal0302 clinical medicineMESH : Drosophila melanogasterMESH: AnimalsMESH : FemaleMatingSex AttractantsMESH: Sexual Behavior AnimalMESH: Ovipositionmedia_commonPhenylacetates0303 health scienceseducation.field_of_studyMultidisciplinaryMESH: Receptors Ionotropic GlutamateMESH : Receptors Ionotropic GlutamateAnatomyMESH: AcetaldehydeMESH : OdorsCell biologymedicine.anatomical_structureDrosophila melanogasterMESH: Sex AttractantsSex pheromonebehavior and behavior mechanismsPheromonefruitlessFemaleDrosophila melanogasterMESH : FoodMESH: FruitMESH: FoodGenotypemedia_common.quotation_subjectMESH : MalePopulationMESH: CourtshipMESH : AcetaldehydeAcetaldehydeMESH : FruitBiologyReceptors Ionotropic GlutamateOlfactory Receptor NeuronsMESH: Drosophila melanogaster03 medical and health sciencesmedicineAnimalseducationMESH : Sexual Behavior Animal030304 developmental biologyMESH : Sex AttractantsOlfactory receptorMESH: OdorsMESH: PhenylacetatesMESH : CourtshipfungiCourtshipMESH : PhenylacetatesMESH: Olfactory Receptor Neuronsbiology.organism_classificationMESH: MaleFoodFruitOdorantsMESH : Olfactory Receptor NeuronsMESH : AnimalsMESH: Female[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgery
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Effects of manganese injected into rat nostrils: implications for in vivo functional study of olfaction using MEMRI.

2011

WOS: 000298212500007; International audience; Manganese-enhanced magnetic resonance imaging (MEMRI) is a powerful tool for visualizing neuronal pathways and mapping brain activity modulation. A potential drawback of MEMRI lies in the toxic effects of manganese (Mn), which also depend on its administration route. The aim of this study was to analyze the effects of Mn doses injected into the nostrils of rats on both olfactory perception and MRI contrast enhancement. For this purpose, doses in the range 0-8 μmol MnCl(2) were tested. Behavioral items were quantified with and without odor stimulation during the first 2 h following Mn injection. The MRI study was performed after 16 h of intermitt…

MalePathologyBrain activity and meditation[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionContrast MediaStimulationPharmacologyMESH : Behavior AnimalMEMRI Manganese030218 nuclear medicine & medical imagingMESH: Magnetic Resonance Imaging0302 clinical medicineMESH: SmellMESH: Behavior AnimalMESH: AnimalsMESH: Administration IntranasalMESH : Olfactory Bulbmedicine.diagnostic_testBehavior AnimalChemistryMESH : RatsMagnetic Resonance ImagingOlfactory BulbSmellDoseToxicityMESH: Image EnhancementMESH: Olfactory Bulbmedicine.medical_specialtyMESH: RatsMESH : MaleBiomedical EngineeringBiophysicsMESH: ManganeseOlfactionMESH : Rats Wistar03 medical and health sciencesPrimary olfactory cortexIn vivoMESH : Magnetic Resonance ImagingMESH: Contrast MediamedicineAnimalsRadiology Nuclear Medicine and imagingRats WistarAdministration IntranasalMESH : Contrast MediaBehaviorManganeseToxicityMESH : Administration IntranasalMagnetic resonance imagingMESH: Rats WistarImage EnhancementOlfactionMESH: MaleRatsOdorRatMESH : SmellMESH : Image EnhancementMESH : AnimalsMESH : Manganese[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgery
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Fixation conditions affect the intensity but not the pattern of NADPH-diaphorase staining as a marker for neuronal nitric oxide synthase in rat olfac…

1994

NADPH-diaphorase (NADPH-d) is commonly used as a histochemical marker for the neuronal form of the enzyme nitric oxide synthase (NOS). A recent biochemical study showed that in broken-cell preparations NADPH-d activity did not fully represent NOS and that NOS-unrelated NADPH-d activity was suppressed during fixation. Because it is unknown whether fixation also affects NOS-associated NADPH-d activity, we investigated the effects of various widely used fixatives on NADPH-d staining in relation to NOS immunoreactivity, obtained with polyclonal antibodies, in rat olfactory bulb. We found that the intensity of NADPH-d staining associated with NOS, as well as that unrelated to NOS, depends on fi…

MalePathologymedicine.medical_specialtyTissue FixationHistologyLysineSensitivity and SpecificityStainImmunoenzyme TechniquesRats Sprague-DawleymedicineAnimalsFixativeNeuronschemistry.chemical_classificationStaining and LabelingbiologyChemistryNADPH DehydrogenaseOlfactory BulbMolecular biologyRatsOlfactory bulbStainingNitric oxide synthaseEnzymePolyclonal antibodiesbiology.proteinAmino Acid OxidoreductasesNitric Oxide SynthaseAnatomyBiomarkersJournal of Histochemistry & Cytochemistry
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A binary genetic approach to characterize TRPM5 cells in mice

2015

International audience; Transient receptor potential channel subfamily M member 5 (TRPM5) is an important downstream signaling component in a subset of taste receptor cells making it a potential target for taste modulation. Interestingly, TRPM5 has been detected in extra-oral tissues; however, the function of extra-gustatory TRPM5-expressing cells is less well understood. To facilitate visualization and manipulation of TRPM5-expressing cells in mice, we generated a Cre knock-in TRPM5 allele by homologous recombination. We then used the novel TRPM5-IRES-Cre mouse strain to report TRPM5 expression by activating a tau GFP transgene. To confirm faithful coexpression of tau GFP and TRPM5 we gene…

MalePhysiologytaste papillaegene targetingBehavioral NeuroscienceMice0302 clinical medicineTaste receptor[SDV.IDA]Life Sciences [q-bio]/Food engineeringGene Knock-In TechniquesIn Situ Hybridization Fluorescence0303 health sciencestaste budsiresGene targetingrosa26ImmunohistochemistrySensory SystemsCell biologyknock inmedicine.anatomical_structuretrpm5taste receptor cellsFemaleGenotypeTransgeneCre recombinaseTRPM Cation ChannelsMice TransgenicBiologyAntibodiestgfpseptal organ of masera03 medical and health sciencesOlfactory MucosaTonguemicrovillar cellsPhysiology (medical)Gene knockinmedicineAnimals[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringTRPM5cre recombinaseAlleles030304 developmental biologyPalateMice Inbred C57BLvomeronasal organolfactory epitheliumgastrointestinal tractHomologous recombinationOlfactory epithelium030217 neurology & neurosurgery
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Characterization of rat glutathione transferases in olfactory epithelium and mucus

2019

International audience; The olfactory epithelium is continuously exposed to exogenous chemicals, including odorants. During the past decade, the enzymes surrounding the olfactory receptors have been shown to make an important contribution to the process of olfaction. Mammalian xenobiotic metabolizing enzymes, such as cytochrome P450, esterases and glutathione transferases (GSTs), have been shown to participate in odorant clearance from the olfactory receptor environment, consequently contributing to the maintenance of sensitivity toward odorants. GSTs have previously been shown to be involved in numerous physiological processes, including detoxification, steroid hormone biosynthesis, and am…

MaleProteomicsPhysiologyScienceMaterials ScienceEnzyme MetabolismRespiratory SystemResearch and Analysis MethodsBiochemistryOlfactory Receptor NeuronsOlfactory Mucosa[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyMedicine and Health SciencesGlutathione ChromatographyAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyAmino Acid SequenceRats Wistar[SDV.MHEP.OS]Life Sciences [q-bio]/Human health and pathology/Sensory OrgansEnzyme ChemistryMaterialsImmunohistochemistry TechniquesGlutathione TransferaseAffinity ChromatographyChromatographic TechniquesQRBiology and Life SciencesProteinsGlutathioneImmunohistochemistryBody FluidsEnzymesRatsHistochemistry and Cytochemistry TechniquesMucusNasal Mucosa[SDV.MHEP.OS] Life Sciences [q-bio]/Human health and pathology/Sensory OrgansAmino Acid Specific ChromatographyPhysical SciencesOdorantsEnzymologyImmunologic TechniquesMedicineAnatomyPeptidesResearch Article
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Chronic restraint stress and chronic corticosterone treatment modulate differentially the expression of molecules related to structural plasticity in…

2004

Stress and stress-related hormones induce structural changes in neurons of the adult CNS. Neurons in the hippocampus, the amygdala and the prefrontal cortex undergo neurite remodeling after chronic stress. In the hippocampus some of these effects can be mimicked with chronic administration of adrenal steroids. These changes in neuronal structure may be mediated by certain molecules related to plastic events such as the polysialylated form of the neural cell adhesion molecule (PSA-NCAM). The expression of PSA-NCAM persists in the adult hippocampus and it is up-regulated after chronic stress. The piriform cortex also displays considerable levels of PSA-NCAM during adulthood and indirect evide…

MaleRestraint Physicalmedicine.medical_specialtyDoublecortin ProteinHippocampusNeural Cell Adhesion Molecule L1AmygdalaRats Sprague-Dawleychemistry.chemical_compoundCorticosteroneStress PhysiologicalInternal medicinePiriform cortexmedicineAnimalsChronic stressOlfactory memoryPrefrontal cortexCerebral CortexNeuronal PlasticitybiologyGeneral NeuroscienceDoublecortinRatsmedicine.anatomical_structureEndocrinologynervous systemchemistryGene Expression RegulationChronic Diseasebiology.proteinSialic AcidsCorticosteroneNeuroscienceNeuroscience
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