Cannabinoid receptor and WIN-55,212-2-stimulated [35S]GTP gamma S binding and cannabinoid receptor mRNA levels in the basal ganglia and the cerebellum of adult male rats chronically exposed to delta 9-tetrahydrocannabinol

scientific article published on October 1998

Cannabinoid receptor and WIN-55,212-2-stimulated [35S]GTP gamma S binding and cannabinoid receptor mRNA levels in the basal ganglia and the cerebellum of adult male rats chronically exposed to delta 9-tetrahydrocannabinol is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1007840673
P356DOI10.1385/JMN:11:2:109
P698PubMed publication ID10096037

P2093author name stringJ Romero
J A Ramos
F Berrendero
J J Fernández-Ruiz
L García-Gil
P2860cites workThe pharmacological activity of anandamide, a putative endogenous cannabinoid, in miceQ45087565
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Cannabinoid receptor down-regulation without alteration of the inhibitory effect of CP 55,940 on adenylyl cyclase in the cerebellum of CP 55,940-tolerant miceQ45098031
Selective vulnerability in Huntington's disease: preferential loss of cannabinoid receptors in lateral globus pallidus.Q45289172
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Atypical location of cannabinoid receptors in white matter areas during rat brain developmentQ48679760
Effects of chronic exposure to delta9-tetrahydrocannabinol on cannabinoid receptor binding and mRNA levels in several rat brain regionsQ48696308
Chronic exposure to delta 9-tetrahydrocannabinol fails to irreversibly alter brain cannabinoid receptorsQ48741838
Anandamide, an endogenous ligand of the cannabinoid receptor, induces hypomotility and hypothermia in vivo in rodents.Q52060269
Time-course of the effects of anandamide, the putative endogenous cannabinoid receptor ligand, on extrapyramidal function.Q54001516
Drugs which stimulate or facilitate central GABAergic transmission interact synergistically with delta-9-tetrahydrocannabinol to produce marked catalepsy in miceQ69852000
Physical withdrawal in rats tolerant to delta 9-tetrahydrocannabinol precipitated by a cannabinoid receptor antagonistQ70911264
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delta 9-Tetrahydrocannabinol and anandamide enhance the ability of muscimol to induce catalepsy in the globus pallidus of ratsQ72270865
Involvement of GABA(B) receptors in the motor inhibition produced by agonists of brain cannabinoid receptorsQ73554044
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Neuronal localization of cannabinoid receptors in the basal ganglia of the rat.Q34602111
The cannabinoid receptor: biochemical, anatomical and behavioral characterizationQ36605535
Distribution of neuronal cannabinoid receptor in the adult rat brain: a comparative receptor binding radioautography and in situ hybridization histochemistryQ38331458
Cannabinoid pharmacologyQ39741984
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The activation of cannabinoid receptors in striatonigral GABAergic neurons inhibited GABA uptake.Q42450193
Loss of cannabinoid receptor binding and messenger RNA levels and cannabinoid agonist-stimulated [35S]guanylyl-5'O-(thio)-triphosphate binding in the basal ganglia of aged rats.Q42454808
Effects of chronic treatment with delta9-tetrahydrocannabinol on cannabinoid-stimulated [35S]GTPgammaS autoradiography in rat brainQ42528679
Chronic cannabinoid administration alters cannabinoid receptor binding in rat brain: a quantitative autoradiographic studyQ42617028
Distribution of cannabinoid receptors in rat brain determined with aminoalkylindolesQ44970457
Cannabinoid precipitated withdrawal by the selective cannabinoid receptor antagonist, SR 141716A.Q45080631
P433issue2
P921main subjecttetrahydrocannabinolQ190067
cannabinoid receptorQ421237
cannabinoidsQ422936
CNR2Q17907844
P304page(s)109-119
P577publication date1998-10-01
P1433published inJournal of Molecular NeuroscienceQ15708870
P1476titleCannabinoid receptor and WIN-55,212-2-stimulated [35S]GTP gamma S binding and cannabinoid receptor mRNA levels in the basal ganglia and the cerebellum of adult male rats chronically exposed to delta 9-tetrahydrocannabinol
P478volume11

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cites work (P2860)
Q30359977Adolescent Δ(9)-Tetrahydrocannabinol Exposure Alters WIN55,212-2 Self-Administration in Adult Rats.
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Q34167852Sex differences in antinociceptive tolerance to delta-9-tetrahydrocannabinol in the rat
Q44148340Spontaneous network activity of cerebellar granule neurons: impairment by in vivo chronic cannabinoid administration.

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