Dopamine D2 receptors labeled with ( sup 3 H)raclopride in rat and rabbit brains. Equilibrium binding, kinetics, distribution and selectivity
Journal Article
·
· Journal of Pharmacology and Experimental Therapeutics; (USA)
OSTI ID:5265165
- Universite de Montreal, Quebec (Canada)
The binding properties of the substituted benzamide raclopride to dopamine D2 receptors were studied with membrane preparations from rat and rabbit neostriatum. An analysis of the association kinetics suggested a single binding site but the data from the dissociation experiments were better described by a two-site model. Examination of saturation curves at equilibrium revealed a single class of binding sites in the neostriatum from both species (rat: maximum binding capacity (Bmax) = 247 fmol/mg of protein; rabbit: Bmax = 337 fmol/mg of protein). In cortical regions known to possess a distinct dopaminergic innervation (piriform-entorhinal areas and cingulate cortex) the Bmax values ranged between 9 and 22 fmol/mg of protein. ({sup 3}H)Raclopride binding sites (less than 12 fmol/mg of protein) were also detectable in the dorsal and ventral hippocampus as well as in the somatosensory and visual cortices. The selectivity in the neostriatum was examined by competition experiments with dopaminergic drugs. The rank of potency of agonists and antagonists to displace ({sup 3}H)raclopride binding revealed its selectivity for the dopamine D2 receptor and was essentially the same for both species. Antagonist competition curves could be fitted to a single site but inhibition by agonists was better described assuming a two-site model. The stereospecificity of binding was demonstrated by the use of the enantiomer pairs. These results validate the utilization of the novel benzamide ({sup 3}H)raclopride as a selective marker of dopamine D2 receptors.
- OSTI ID:
- 5265165
- Journal Information:
- Journal of Pharmacology and Experimental Therapeutics; (USA), Journal Name: Journal of Pharmacology and Experimental Therapeutics; (USA) Vol. 250:2; ISSN 0022-3565; ISSN JPETA
- Country of Publication:
- United States
- Language:
- English
Similar Records
Dopamine D sub 2 receptors in the cerebral cortex: Distribution and pharmacological characterization with ( sup 3 H)raclopride
Olfactory deprivation increases dopamine D2 receptor density in the rat olfactory bulb
Regulation of dopamine D2 receptors in a novel cell line (SUP1)
Journal Article
·
Tue Aug 01 00:00:00 EDT 1989
· Proceedings of the National Academy of Sciences of the United States of America; (USA)
·
OSTI ID:7244609
Olfactory deprivation increases dopamine D2 receptor density in the rat olfactory bulb
Journal Article
·
Wed May 01 00:00:00 EDT 1991
· Synapse (New York); (United States)
·
OSTI ID:5266500
Regulation of dopamine D2 receptors in a novel cell line (SUP1)
Journal Article
·
Sun Mar 31 23:00:00 EST 1991
· Molecular Pharmacology; (USA)
·
OSTI ID:5672183
Related Subjects
550201* -- Biochemistry-- Tracer Techniques
59 BASIC BIOLOGICAL SCIENCES
AMINES
ANIMALS
AROMATICS
AUTONOMIC NERVOUS SYSTEM AGENTS
BIOCHEMICAL REACTION KINETICS
BIOLOGICAL MARKERS
BIOLOGICAL VARIABILITY
CARDIOTONICS
CARDIOVASCULAR AGENTS
CELL CONSTITUENTS
CELL MEMBRANES
DISTRIBUTION
DOPAMINE
DRUGS
GENETIC VARIABILITY
HYDROGEN COMPOUNDS
HYDROXY COMPOUNDS
ISOTOPE APPLICATIONS
KINETICS
MAMMALS
MEMBRANE PROTEINS
MEMBRANES
NEUROREGULATORS
ORGANIC COMPOUNDS
PHENOLS
POLYPHENOLS
PROTEINS
RABBITS
RATS
REACTION KINETICS
RECEPTORS
RODENTS
SPIPERONE
SYMPATHOMIMETICS
TISSUE DISTRIBUTION
TRACER TECHNIQUES
TRITIUM COMPOUNDS
VERTEBRATES
59 BASIC BIOLOGICAL SCIENCES
AMINES
ANIMALS
AROMATICS
AUTONOMIC NERVOUS SYSTEM AGENTS
BIOCHEMICAL REACTION KINETICS
BIOLOGICAL MARKERS
BIOLOGICAL VARIABILITY
CARDIOTONICS
CARDIOVASCULAR AGENTS
CELL CONSTITUENTS
CELL MEMBRANES
DISTRIBUTION
DOPAMINE
DRUGS
GENETIC VARIABILITY
HYDROGEN COMPOUNDS
HYDROXY COMPOUNDS
ISOTOPE APPLICATIONS
KINETICS
MAMMALS
MEMBRANE PROTEINS
MEMBRANES
NEUROREGULATORS
ORGANIC COMPOUNDS
PHENOLS
POLYPHENOLS
PROTEINS
RABBITS
RATS
REACTION KINETICS
RECEPTORS
RODENTS
SPIPERONE
SYMPATHOMIMETICS
TISSUE DISTRIBUTION
TRACER TECHNIQUES
TRITIUM COMPOUNDS
VERTEBRATES