Search results for "Endocannabinoid"

showing 10 items of 179 documents

Inhibition by Anandamide and Synthetic Cannabimimetics of the Release of [3H]d-Aspartate and [3H]GABA from Synaptosomes Isolated from the Rat Hippoca…

2004

Cannabinoids (CB) can act as retrograde synaptic mediators of depolarization-induced suppression of inhibition or excitation in hippocampus. This mechanism may underlie the impairment of some cognitive processes produced by these compounds, including short-term memory formation in the hippocampus. In this study, we investigated several compounds known to interact with CB receptors, evaluating their effects on K +-evoked release of [ 3H]d-aspartate ([ 3H]d-ASP) and [ 3H]GABA from superfused synaptosomes isolated from the rat hippocampus. [ 3H]d-ASP and [ 3H]GABA release were inhibited to different degrees by the synthetic cannabinoids WIN 55,212-2; CP 55,940, and arachidonyl-2′- chloroethyla…

MaleCannabinoid receptorSettore BIO/14 - FARMACOLOGIAPolyunsaturated Alkamidesmedicine.medical_treatmentHippocampusArachidonic AcidsPharmacologyHippocampal formationDepolarization-induced suppression of inhibitionHippocampusBiochemistryCellular and Molecular Neurosciencechemistry.chemical_compoundglutamate releasemedicineAnimalsRats WistarCannabinoidgamma-Aminobutyric AcidCannabinoid Receptor AgonistsAspartic AcidCannabinoidsChemistryGeneral MedicineAnandamideCyclohexanolsgaba releaseEndocannabinoid systemRatsKineticsnervous systemBiochemistryAnimals Arachidonic Acids Aspartic Acid Calcium Cannabinoids Capsaicin Cyclohexanols gamma-Aminobutyric Acid Hippocampus Kinetics Polyunsaturated Alkamides Potassium Rats Receptors Cannabinoid SynaptosomesPotassiumCalciumlipids (amino acids peptides and proteins)CannabinoidCapsaicinCapsazepineEndocannabinoidsSynaptosomesNeurochemical Research
researchProduct

A runner’s high depends on cannabinoid receptors in mice

2015

Exercise is rewarding, and long-distance runners have described a runner's high as a sudden pleasant feeling of euphoria, anxiolysis, sedation, and analgesia. A popular belief has been that endogenous endorphins mediate these beneficial effects. However, running exercise increases blood levels of both β-endorphin (an opioid) and anandamide (an endocannabinoid). Using a combination of pharmacologic, molecular genetic, and behavioral studies in mice, we demonstrate that cannabinoid receptors mediate acute anxiolysis and analgesia after running. We show that anxiolysis depends on intact cannabinoid receptor 1 (CB1) receptors on forebrain GABAergic neurons and pain reduction on activation of pe…

MaleCannabinoid receptormedicine.drug_classmedicine.medical_treatmentPharmacologyDepolarization-induced suppression of inhibitionRunningReceptor Cannabinoid CB2MiceReceptor Cannabinoid CB1Opioid receptorPhysical Conditioning AnimalmedicineCannabinoid receptor type 2AnimalsEndorphinsMultidisciplinaryBehavior AnimalBiological SciencesEndocannabinoid systemMice Inbred C57BLnervous systemOpioidlipids (amino acids peptides and proteins)CannabinoidPsychologyhuman activitiespsychological phenomena and processesmedicine.drug
researchProduct

Endocannabinoids mediate neuroprotection after transient focal cerebral ischemia.

2008

The endocannabinoids anandamide (AEA) and palmitoylethanolamide (PEA) act as endogenous protective factors of the brain, using different pathways of neuroprotection against neuronal damage. Although several in vivo and in vitro studies confirmed the neuroprotective efficacy of endocannabinoids, no experimental settings compare and explore the neuroprotective potential of AEA and PEA in an acute stroke model. In this study, we investigated the neuroprotective potential by infarct measurement after high (30 mg/kg body weight) and low dosage administration (10 mg/kg body weight) of the endocannabinoid PEA in 49 male Wistar rats. In additions we studied infarct volumes of 22 male Wistar rats re…

MaleCannabinoid receptormedicine.medical_treatmentIschemiaPharmacologyNeuroprotectionBrain ischemiachemistry.chemical_compoundCannabinoid Receptor ModulatorsMedicineAnimalsRats WistarMolecular BiologyStrokePalmitoylethanolamidebusiness.industryGeneral NeuroscienceBrainRecovery of Functionmedicine.diseaseEndocannabinoid systemRatsNeuroprotective AgentschemistryIschemic Attack TransientAnesthesialipids (amino acids peptides and proteins)Neurology (clinical)CannabinoidbusinessDevelopmental BiologyEndocannabinoidsBrain research
researchProduct

Peripheral and central CB1 cannabinoid receptors control stress-induced impairment of memory consolidation

2016

Stressful events can generate emotional memories linked to the traumatic incident, but they also can impair the formation of nonemotional memories. Although the impact of stress on emotional memories is well studied, much less is known about the influence of the emotional state on the formation of nonemotional memories. We used the novel object-recognition task as a model of nonemotional memory in mice to investigate the underlying mechanism of the deleterious effect of stress on memory consolidation. Systemic, hippocampal, and peripheral blockade of cannabinoid type-1 (CB1) receptors abolished the stress-induced memory impairment. Genetic deletion and rescue of CB1 receptors in specific ce…

MaleEstrès0301 basic medicineIndolesCannabinoid receptormedicine.medical_treatmentPopulationDopamine beta-HydroxylaseHippocampal formation03 medical and health sciences0302 clinical medicinePiperidinesReceptor Cannabinoid CB1Cannabinoides -- ReceptorsmedicineAnimalsMemory impairmentReceptoreducationMemory ConsolidationMice KnockoutNeuronsElectroshockMemory Disorderseducation.field_of_studyMultidisciplinaryBiological SciencesEndocannabinoid system3. Good health030104 developmental biologyHindlimb SuspensionPyrazolesMemory consolidationCannabinoidRimonabantPsychologyNeuroscienceAnisomycinStress Psychological030217 neurology & neurosurgeryMemòriaProceedings of the National Academy of Sciences
researchProduct

Loss of striatal type 1 cannabinoid receptors is a key pathogenic factor in Huntington's disease.

2010

Endocannabinoids act as neuromodulatory and neuroprotective cues by engaging type 1 cannabinoid receptors. These receptors are highly abundant in the basal ganglia and play a pivotal role in the control of motor behaviour. An early downregulation of type 1 cannabinoid receptors has been documented in the basal ganglia of patients with Huntington's disease and animal models. However, the pathophysiological impact of this loss of receptors in Huntington's disease is as yet unknown. Here, we generated a double-mutant mouse model that expresses human mutant huntingtin exon 1 in a type 1 cannabinoid receptor-null background, and found that receptor deletion aggravates the symptoms, neuropatholog…

MaleHuntingtinCannabinoid receptorCell Survivalmedicine.medical_treatmentBlotting WesternMice TransgenicBiologyMotor ActivityGrowth Hormone-Releasing HormoneMiceReceptor Cannabinoid CB1medicineCannabinoid receptor type 2AnimalsDronabinolReceptorBrain-derived neurotrophic factorNeuronsAnalysis of VarianceReverse Transcriptase Polymerase Chain ReactionEndocannabinoid systemMagnetic Resonance ImagingCorpus StriatumHuntington DiseaseRotarod Performance TestGPR18Neurology (clinical)CannabinoidNeuroscienceBrain : a journal of neurology
researchProduct

Fatty acid amide hydrolase controls mouse intestinal motility in vivo.

2005

Background & Aims: Fatty acid amide hydrolase (FAAH) catalyzes the hydrolysis both of the endocannabinoids (which are known to inhibit intestinal motility) and other bioactive amides (palmitoylethanolamide, oleamide, and oleoylethanolamide), which might affect intestinal motility. The physiologic role of FAAH in the gut is largely unexplored. In the present study, we evaluated the possible role of FAAH in regulating intestinal motility in mice in vivo. Methods: Motility was measured by evaluating the distribution of a fluorescent marker along the small intestine; FAAH messenger RNA (mRNA) levels were analyzed by reverse-transcription polymerase chain reaction (RT-PCR); endocannabinoid level…

MaleOleamideCannabinoid receptormedicine.drug_classMotilityPharmacologyBiologyAmidohydrolaseschemistry.chemical_compoundOleoylethanolamideMiceFatty acid amide hydrolaseIntestine SmallmedicineAnimalsIntestine LargeRNA MessengerGastrointestinal TransitPalmitoylethanolamideMice Inbred ICRHepatologyReverse Transcriptase Polymerase Chain ReactionGastroenterologyReceptor antagonistEndocannabinoid systemKineticsnervous systemBiochemistrychemistrylipids (amino acids peptides and proteins)Gastrointestinal Motilitypsychological phenomena and processesGastroenterology
researchProduct

The endocannabinoid system controls food intake via olfactory processes

2014

Comment in Sensory systems: the hungry sense. [Nat Rev Neurosci. 2014] Inhaling: endocannabinoids and food intake. [Nat Neurosci. 2014]; International audience; Hunger arouses sensory perception, eventually leading to an increase in food intake, but the underlying mechanisms remain poorly understood. We found that cannabinoid type-1 (CB1) receptors promote food intake in fasted mice by increasing odor detection. CB1 receptors were abundantly expressed on axon terminals of centrifugal cortical glutamatergic neurons that project to inhibitory granule cells of the main olfactory bulb (MOB). Local pharmacological and genetic manipulations revealed that endocannabinoids and exogenous cannabinoid…

MaleOlfactory systemMESH: Olfactory PerceptionCannabinoid receptorMESH: Feedback Physiological[SDV]Life Sciences [q-bio]medicine.medical_treatmentMESH: Cannabinoid Receptor AgonistsMESH: EndocannabinoidsMESH: Receptor Cannabinoid CB1Synaptic TransmissionMESH: Mice KnockoutMESH: EatingEatingMiceOlfactory bulbReceptor Cannabinoid CB1MESH: AnimalsFeedback PhysiologicalMice Knockoutmusculoskeletal neural and ocular physiologyGeneral Neurosciencedigestive oral and skin physiologyOlfactory PathwaysEndocannabinoid systemMESH: Feeding Behaviorlipids (amino acids peptides and proteins)psychological phenomena and processesMESH: Olfactory BulbBiologyInhibitory postsynaptic potentialGlutamatergicMESH: Mice Inbred C57BLMESH: Synaptic TransmissionmedicineAnimalsMESH: MiceCannabinoid Receptor AgonistsFeeding BehaviorOlfactory PerceptionMESH: MaleOlfactory bulbMice Inbred C57BLnervous systemOdorFeeding behaviourCannabinoid[SDV.AEN]Life Sciences [q-bio]/Food and NutritionNeuroscienceMESH: Olfactory PathwaysEndocannabinoidsNature Neuroscience
researchProduct

Biomarkers for Antidepressant Efficacy of Electroconvulsive Therapy: An Exploratory Cerebrospinal Fluid Study

2018

<b><i>Background:</i></b> No candidate biomarkers based on cerebrospinal fluid (CSF) have been identified as prognostic factors in patients with major depression treated with electroconvulsive therapy (ECT), yet. <b><i>Method:</i></b> Following different underlying hypotheses, we analysed baseline CSF levels of markers of neurodegeneration (tau proteins, β-amyloids and neurogranin), elements of the innate immune system (interleukin [IL]-6, neopterin, soluble CD14, soluble CD163, migration inhibitory factor and monocyte chemotactic protein 1), endocannabinoids, sphingolipids and Klotho before ECT in patients with depression (<i>n</i&gt…

MaleOncologymedicine.medical_treatmentchemistry.chemical_compound0302 clinical medicineCerebrospinal fluidElectroconvulsive therapyNeurogranincerebrospinal fluid [Sphingolipids]Electroconvulsive TherapyKlothoGlucuronidaseAged 80 and overtherapy [Depressive Disorder Major]NeopterinInterleukinMiddle AgedPsychiatry and Mental healthTreatment OutcomeNeuropsychology and Physiological Psychologycerebrospinal fluid [Biomarkers]cerebrospinal fluid [Glucuronidase]Biomarker (medicine)AntidepressantFemaleAdultmedicine.medical_specialtyklotho proteinYoung Adult03 medical and health sciencesInternal medicinemental disordersmedicineHumansddc:610Klotho ProteinsBiological Psychiatrycerebrospinal fluid [Nerve Degeneration]AgedDepressive Disorder MajorSphingolipidsbusiness.industrycerebrospinal fluid [Depressive Disorder Major]Immunity Innate030227 psychiatrychemistryNerve Degenerationcerebrospinal fluid [Endocannabinoids]businessBiomarkers030217 neurology & neurosurgeryEndocannabinoidsNeuropsychobiology
researchProduct

Presynaptic effects of anandamide and WIN55,212-2 on glutamatergic nerve endings isolated from rat hippocampus

2006

We examined the effects of the endocannabinoide-anandamide (AEA), the synthetic cannabinoid, WIN55,212-2, and the active phorbol ester, 4-beta-phorbol 12-myristate 13-acetate (4-beta-PMA), on the release of [(3)H]d-Aspartate ([(3)H]d-ASP) from rat hippocampal synaptosomes. Release was evoked with three different stimuli: (1) KCl-induced membrane depolarization, which activates voltage-dependent Ca(2+) channels and causes limited neurotransmitter exocytosis, presumably from ready-releasable vesicles docked in the active zone; (2) exposure to the Ca(2+) ionophore-A23187, which causes more extensive transmitter release, presumably from intracellular reserve vesicles; and (3) K(+) channel block…

MaleSettore BIO/14 - FARMACOLOGIAPolyunsaturated AlkamideshippocampusMorpholinesmedicine.medical_treatmentPresynaptic TerminalsArachidonic AcidsNaphthalenesExocytosisCellular and Molecular Neurosciencechemistry.chemical_compoundGlutamatesglutamate releasemedicineAnimalsanandamideActive zoneRats WistarNeurotransmitterCannabinoidCalcimycinProtein kinase CSynaptosomeArachidonic AcidChemistrysynaptosomesDepolarizationCell BiologyAnandamideHippocampal synaptosomeCalcium Channel BlockersBenzoxazinesRatsBiochemistryBiophysicsTetradecanoylphorbol AcetateCannabinoidCapsaicinEndocannabinoidsNeurochemistry International
researchProduct

Short-term adaptation of conditioned fear responses through endocannabinoid signaling in the central amygdala

2010

International audience; Both, the cannabinoid receptor type 1 (CB1) and the central nucleus of the amygdala (CeA) are known to play crucial roles in the processing of fear and anxiety, whereby they appear to be especially involved in the control of fear states. However, in contrast to many other brain regions including the cortical subregions of the amygdala, the existence of CB1 in the CeA remains enigmatic. Here we show that CB1 is expressed in the CeA of mice and that CB1 in the CeA mediates short-term synaptic plasticity, namely depolarization-induced suppression of excitation (DSE) and inhibition (DSI). Moreover, the CB1 antagonist AM251 increased both excitatory and inhibitory postsyn…

MaleTime FactorsAction PotentialsAnxietyExtinction PsychologicalGABA AntagonistsPropanolaminesMice0302 clinical medicinePiperidinesReceptor Cannabinoid CB1Adaptation PsychologicalConditioning PsychologicalMoodFear conditioningHabituationStress DisordersMice Knockout0303 health sciencesBehavior AnimalCentral nucleus of the amygdalaValineFearExtinctionAmygdalaPyridazinesPsychiatry and Mental healthmedicine.anatomical_structureOriginal ArticlePsychologypsychological phenomena and processesSignal TransductionSensory Receptor CellsNeurophysiologyIn Vitro TechniquesInhibitory postsynaptic potentialAmygdala03 medical and health sciencesQuinoxalinesCannabinoid Receptor ModulatorsmedicineAnimalsMaze Learning030304 developmental biologyPharmacologyFear processing in the brainLearning & MemoryCannabinoidsExtinction (psychology)Phosphinic AcidsElectric StimulationMice Inbred C57BLGene Expression Regulationnervous systemSynaptic plasticityPyrazolesNeuroscienceExcitatory Amino Acid Antagonists030217 neurology & neurosurgeryEndocannabinoidsConditioning
researchProduct