Search results for "cannabinoid receptor"

showing 10 items of 158 documents

A restricted population of CB1 cannabinoid receptors with neuroprotective activity.

2014

The CB1 cannabinoid receptor, the main molecular target of endocannabinoids and cannabis active components, is the most abundant G protein-coupled receptor in the mammalian brain. Of note, CB1 receptors are expressed at the synapses of two opposing (i.e., GABAergic/inhibitory and glutamatergic/excitatory) neuronal populations, so the activation of one and/or another receptor population may conceivably evoke different effects. Despite the widely reported neuroprotective activity of the CB1 receptor in animal models, the precise pathophysiological relevance of those two CB1 receptor pools in neurodegenerative processes is unknown. Here, we first induced excitotoxic damage in the mouse brain b…

MaleCannabinoid receptorPopulationNeurotoxinsExcitotoxicityGlutamic AcidBiologymedicine.disease_causeNeuroprotectionGlutamatergicMiceOrgan Culture TechniquesReceptor Cannabinoid CB1medicineAnimalsHumansGABAergic NeuronsReceptoreducationCaenorhabditis elegans ProteinsAgedCerebral CortexMice KnockoutNeuronseducation.field_of_studyMultidisciplinaryIntegrasesmusculoskeletal neural and ocular physiologyNeurodegenerative DiseasesBiological SciencesMiddle AgedReceptors GABA-AEndocannabinoid systemCorpus Striatumnervous systemGABAergiclipids (amino acids peptides and proteins)FemaleNeurosciencepsychological phenomena and processesEndocannabinoidsSynaptosomesProceedings of the National Academy of Sciences of the United States of America
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CB1 Cannabinoid Receptors and On-Demand Defense Against Excitotoxicity

2003

Abnormally high spiking activity can damage neurons. Signaling systems to protect neurons from the consequences of abnormal discharge activity have been postulated. We generated conditional mutant mice that lack expression of the cannabinoid receptor type 1 in principal forebrain neurons but not in adjacent inhibitory interneurons. In mutant mice,the excitotoxin kainic acid (KA) induced excessive seizures in vivo. The threshold to KA-induced neuronal excitation in vitro was severely reduced in hippocampal pyramidal neurons of mutants. KA administration rapidly raised hippocampal levels of anandamide and induced protective mechanisms in wild-type principal hippocampal neurons. These protecti…

MaleCannabinoid receptorReceptors Drugmedicine.medical_treatment2-ArachidonoylglycerolExcitotoxicityHippocampal formationmedicine.disease_causeHippocampusMicechemistry.chemical_compoundPiperidinesCannabinoid receptor type 1Excitatory Amino Acid AgonistsReceptors Cannabinoidgamma-Aminobutyric AcidMice KnockoutNeuronsKainic AcidMultidisciplinaryBrainEndocannabinoid systemNeuroprotective AgentsMitogen-Activated Protein KinasesRimonabantSignal Transductionmedicine.medical_specialtyKainic acidPolyunsaturated AlkamidesGlutamic AcidMice TransgenicArachidonic AcidsIn Vitro TechniquesBiologyGlyceridesProsencephalonInternal medicinemedicineAnimalsFuransGenes Immediate-EarlyEpilepsyCannabinoidsBrain-Derived Neurotrophic FactorExcitatory Postsynaptic PotentialsMice Inbred C57BLEndocrinologyGene Expression Regulationnervous systemchemistryMutationPyrazolesCannabinoidNeuroscienceEndocannabinoidsScience
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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
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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
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Cannabinoid modulation of hippocampal long-term memory is mediated by mTOR signaling.

2009

Cognitive impairment is one of the most important negative consequences associated with cannabis consumption. We found that CB1 cannabinoid receptor (CB1R) activation transiently modulated the mammalian target of rapamycin (mTOR)/p70S6K pathway and the protein synthesis machinery in the mouse hippocampus, which correlated with the amnesic properties of delta9-tetrahydrocannabinol (THC). In addition, non-amnesic doses of either the mTOR blocker rapamycin or the protein synthesis inhibitor anisomycin abrogated the amnesic-like effects of THC, pointing to a mechanism involving new protein synthesis. Moreover, using pharmacological and genetic tools, we found that THC long-term memory deficits …

MaleCannabinoid receptormedicine.medical_treatmentGlutamic AcidHippocampusReceptors N-Methyl-D-AspartateGlutamatergicchemistry.chemical_compoundMiceCognitionReceptor Cannabinoid CB1Memorymental disordersmedicineAnimalsDronabinolPI3K/AKT/mTOR pathwayAnisomycingamma-Aminobutyric AcidMice KnockoutNeuronsProtein Synthesis InhibitorsSirolimusMemory DisordersChemistryGeneral NeuroscienceTOR Serine-Threonine KinasesRibosomal Protein S6 Kinases 70-kDanervous systemKnockout mouseNMDA receptorPhosphorylationCannabinoidNeuroscienceProtein KinasesAnisomycinCentral Nervous System AgentsSignal TransductionNature neuroscience
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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
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Cannabidiol prevents priming- and stress-induced reinstatement of the conditioned place preference induced by cocaine in mice

2021

[Background]: Cocaine dependence is an important problem without any effective pharmacological treatment. Some preclinical studies have suggested that cannabidiol (CBD), a component of the Cannabis sativa plant, could be useful for the treatment of cocaine use disorders.

MaleConditioning ClassicalPharmacologyCocaine dependenceSocial DefeatSocial defeatCocaine-Related DisordersMice03 medical and health sciences0302 clinical medicineCannabinoid Receptor ModulatorsmedicineAnimalsCannabidiolPharmacology (medical)Dopamine transporterPharmacologyDopamine Plasma Membrane Transport ProteinsBehavior Animalbiologybusiness.industryVentral Tegmental Areafood and beveragesmedicine.diseasebiology.organism_classificationConditioned place preference030227 psychiatryVentral tegmental areaDisease Models AnimalPsychiatry and Mental healthmedicine.anatomical_structurebiology.proteinCannabisbusinessPriming (psychology)Cannabidiol030217 neurology & neurosurgerymedicine.drugJournal of Psychopharmacology
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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
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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
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Understanding Cannabinoid Psychoactivity with Mouse Genetic Models

2007

Marijuana and its main psychotropic ingredient Δ9-tetrahydrocannabinol (THC) exert a plethora of psychoactive effects through the activation of the neuronal cannabinoid receptor type 1 (CB1), which is expressed by different neuronal subpopulations in the central nervous system. The exact neuroanatomical substrates underlying each effect of THC are, however, not known. We tested locomotor, hypothermic, analgesic, and cataleptic effects of THC in conditional knockout mouse lines, which lack the expression of CB1 in different neuronal subpopulations, including principal brain neurons, GABAergic neurons (those that release γ aminobutyric acid), cortical glutamatergic neurons, and neurons expres…

MaleMESH: Body TemperatureCannabinoid receptormedicine.medical_treatmentGene ExpressionMESH: Receptor Cannabinoid CB1NeocortexMESH: gamma-Aminobutyric AcidMESH: CatalepsyPharmacologyHippocampusMESH: Mice KnockoutMESH: Corpus StriatumBody TemperatureMESH: Autonomic Nervous SystemMESH: NeocortexMice0302 clinical medicineReceptor Cannabinoid CB1MESH: Behavior AnimalCannabinoid receptor type 1MESH: AnimalsMESH: Gene SilencingDronabinolMESH: NociceptorsBiology (General)gamma-Aminobutyric AcidMice Knockout0303 health sciencesBehavior Animalmusculoskeletal neural and ocular physiologyGeneral NeuroscienceMESH: Pain ThresholdNociceptorsMESH: Glutamic AcidMESH: InterneuronsMESH: Motor Activity3. Good healthGABAergicMESH: TetrahydrocannabinolGeneral Agricultural and Biological SciencesResearch Articlemedicine.drugPain ThresholdMESH: Gene ExpressionMESH: Psychotropic DrugsQH301-705.5Glutamic AcidMotor ActivityBiologyAutonomic Nervous SystemGeneral Biochemistry Genetics and Molecular Biologygamma-Aminobutyric acid03 medical and health sciencesGlutamatergicDopamine receptor D1InterneuronsCannabinoid Receptor Modulatorsmental disorders[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologymedicineAnimalsGenetic Predisposition to Disease[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyGene SilencingTetrahydrocannabinolMESH: MiceAnesthesiology and Pain Management030304 developmental biologyPharmacologyCatalepsyPsychotropic DrugsModels GeneticGeneral Immunology and MicrobiologyCannabinoidsIllicit Drugsorganic chemicalsMESH: MaleCorpus StriatumPrimerDisease Models Animalnervous systemCannabinoidNervous System Diseases030217 neurology & neurosurgeryNeurosciencePLoS Biology
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