2011
Asenapine effects on cognitive and monoamine dysfunction elicited by subchronic phencyclidine administration
Elsworth JD, Groman SM, Jentsch JD, Valles R, Shahid M, Wong E, Marston H, Roth RH. Asenapine effects on cognitive and monoamine dysfunction elicited by subchronic phencyclidine administration. Neuropharmacology 2011, 62: 1442-1452. PMID: 21875607, PMCID: PMC3711239, DOI: 10.1016/j.neuropharm.2011.08.026.Peer-Reviewed Original ResearchConceptsBrain regionsExecutive functionCognitive dysfunctionPrefrontal cortexCognitive deficitsSubchronic phencyclidine administrationCognition-enhancing effectsDysregulation of neurotransmissionSame brain regionsReversal taskSpecific brain regionsPoor reversalAsenapine effectsOrbitofrontal cortexTrend levelSerotonin turnoverSerotonin utilizationControl monkeysFine motor functionPhencyclidine administrationMotor functionDeficitsDaily administrationNormal monkeysDiscrete brain regions
2005
Neural Stem Cells Implanted into MPTP-Treated Monkeys Increase the Size of Endogenous Tyrosine Hydroxylase-Positive Cells Found in the Striatum: A Return to Control Measures
Bjugstad K, Redmond D, Teng Y, Elsworth J, Roth R, Blanchard B, Snyder E, Sladek J. Neural Stem Cells Implanted into MPTP-Treated Monkeys Increase the Size of Endogenous Tyrosine Hydroxylase-Positive Cells Found in the Striatum: A Return to Control Measures. Cell Transplantation 2005, 14: 183-192. PMID: 15929553, DOI: 10.3727/000000005783983098.Peer-Reviewed Original ResearchConceptsTyrosine hydroxylase-positive cellsNeural stem cellsHydroxylase-positive cellsSubstantia nigraHuman neural stem cellsParkinson's diseaseHuman NSCsCaudate nucleusEffects of NSCsPresence of NSCsImplanted neural stem cellsRight substantia nigraUntreated control monkeysRight caudate nucleusCell populationsAfrican green monkeysEndogenous cell populationsStem cellsMPTP damageMPTP treatmentStriatal environmentNigrostriatal pathwayDopamine neuronsControl monkeysSelective dopaminergic
2004
Low CA1 Spine Synapse Density is Further Reduced by Castration in Male Non-human Primates
Leranth C, Prange-Kiel J, Frick KM, Horvath TL. Low CA1 Spine Synapse Density is Further Reduced by Castration in Male Non-human Primates. Cerebral Cortex 2004, 14: 503-510. PMID: 15054066, DOI: 10.1093/cercor/bhh012.Peer-Reviewed Original ResearchConceptsSpine synapse densitySynapse densityNon-human primatesSpine synapsesCA1 spine synapse densityPyramidal cell apical dendritesCA1 hippocampal areaCell apical dendritesCA1 stratum radiatumFemale non-human primatesMale non-human primatesMale primatesOrchidectomized animalsApical dendritesCA1 areaDendritic shaftsHippocampal areaStratum radiatumGonadal hormonesControl monkeysMale hippocampusGonadectomized animalsOvariectomized femalesAndrogen hormonesPrimate hippocampus
2001
An Effective AIDS Vaccine Based on Live Attenuated Vesicular Stomatitis Virus Recombinants
Rose N, Marx P, Luckay A, Nixon D, Moretto W, Donahoe S, Montefiori D, Roberts A, Buonocore L, Rose J. An Effective AIDS Vaccine Based on Live Attenuated Vesicular Stomatitis Virus Recombinants. Cell 2001, 106: 539-549. PMID: 11551502, DOI: 10.1016/s0092-8674(01)00482-2.Peer-Reviewed Original ResearchMeSH KeywordsAcquired Immunodeficiency SyndromeAIDS VaccinesAnimalsCD4 Lymphocyte CountCD4-Positive T-LymphocytesEnzyme-Linked Immunosorbent AssayGene Products, envGene Products, gagHIVHIV AntibodiesHumansImmunization, SecondaryMacaca mulattaMiceNeutralization TestsPilot ProjectsRecombinant Fusion ProteinsSAIDS VaccinesSimian Acquired Immunodeficiency SyndromeSimian immunodeficiency virusT-Lymphocytes, CytotoxicTime FactorsVaccines, AttenuatedVaccines, SyntheticVesicular stomatitis Indiana virusViral LoadVirus Shedding
1982
Clonidine suppression of noradrenergic hyperactivity during morphine withdrawal by clonidine: biochemical studies in rodents and primates.
Roth R, Elsworth J, Redmond D. Clonidine suppression of noradrenergic hyperactivity during morphine withdrawal by clonidine: biochemical studies in rodents and primates. The Journal Of Clinical Psychiatry 1982, 43: 42-6. PMID: 6806253.Peer-Reviewed Original ResearchConceptsBrain levelsMHPG accumulationNE turnoverNE neuronsLocus coeruleusNaloxone-insensitive mechanismAdministration of naloxoneMorphine-dependent animalsNE systemDose-dependent degreeNon-human primatesNE metabolismMorphine withdrawalOpiate withdrawalClonidine suppressionImpulse flowNoradrenergic hyperactivityClinical studiesCSF measuresControl monkeysClonidineElectrophysiological studiesMHPGBiochemical measuresPilot data
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