In vivo [ 3H]spiperone binding to the rat hippocampal formation: Involvement of dopamine receptors

The existence of DA receptors in the rat hippocampus was demonstrated with an in vivo [ 3H]spiperone radio-receptor assay. Kinetic studies revealed that maximum binding of [ 3H]spiperone in hippocampus was much smaller than in striatum and frontal cortex but much higher than in cerebellum. In inhibi...

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Veröffentlicht in:European journal of pharmacology 1980-12, Vol.68 (3), p.305-315
Hauptverfasser: Bischoff, S., Bittiger, H., Krauss, J.
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container_title European journal of pharmacology
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creator Bischoff, S.
Bittiger, H.
Krauss, J.
description The existence of DA receptors in the rat hippocampus was demonstrated with an in vivo [ 3H]spiperone radio-receptor assay. Kinetic studies revealed that maximum binding of [ 3H]spiperone in hippocampus was much smaller than in striatum and frontal cortex but much higher than in cerebellum. In inhibition studies of [ 3H]spiperone binding, all neuroleptics tested were active in hippocampus as well as in striatum. In contrast, 5HT antagonists were definetely less potent in these two brain regions than in frontal cortex. Finally, even when 5HT receptors were blocked, dipropyl-ATN and haloperidol remained fully effective in hippocampus, striatum, but also in frontal cortex although to a lesser degree. From these results it was concluded that [ 3H]spiperone binds mainly to DA receptors in hippocampus as well as in striamtum, whereas both 5HT and DA receptors are present in frontal cortex.
doi_str_mv 10.1016/0014-2999(80)90528-2
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language eng
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source MEDLINE; ScienceDirect Journals (5 years ago - present)
subjects 5HT receptors
[ 3H]Spiperone binding in vivo
Animals
Binding, Competitive
Butyrophenones - metabolism
Cerebral Cortex - metabolism
Corpus Striatum - metabolism
DA receptors
Frontal cortex
Hippocampus
Hippocampus - metabolism
Kinetics
Male
Rats
Receptors, Dopamine - metabolism
Receptors, Serotonin - metabolism
Spiperone - metabolism
Striatum
title In vivo [ 3H]spiperone binding to the rat hippocampal formation: Involvement of dopamine receptors
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