Presynaptic effect of 7-OH-DPAT on evoked [ 3H]-acetylcholine release in rat striatal synaptosomes

The objective of the present experiments was to study the presynaptic effect of 7-hydroxy- N, N-di- n-propyl-2-aminotetraline (7-OH-DPAT, a D 2-like dopamine receptor agonist) on [ 3H]-acetylcholine ([ 3H]-ACh) release induced by potassium (15 mM, 25 mM and 60 mM), potassium channel-blockers (4-amin...

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Veröffentlicht in:Brain research 2000-08, Vol.874 (2), p.116-122
Hauptverfasser: Sanz, A.Garcia, Hospital, S., Badia, A., Clos, M.V.
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Sprache:eng
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Zusammenfassung:The objective of the present experiments was to study the presynaptic effect of 7-hydroxy- N, N-di- n-propyl-2-aminotetraline (7-OH-DPAT, a D 2-like dopamine receptor agonist) on [ 3H]-acetylcholine ([ 3H]-ACh) release induced by potassium (15 mM, 25 mM and 60 mM), potassium channel-blockers (4-aminopyridine, 4-AP; tetraethylammonium, TEA and quinine) and veratridine to gain insight into the mechanisms involved in the activation of the D 2 dopamine-receptor subtype located at striatal cholinergic nerve terminals. 7-OH-DPAT (1 μM) inhibited the evoked [ 3H]-ACh release induced by K + 15 mM in a similar percentage than that obtained during basal conditions (30% and 27%, respectively). Nevertheless, in the presence of 25 mM and 60 mM of K + the inhibitory effect of 7-OH-DPAT was completely abolished. 4-AP (1–100 μM) and TEA (1 and 5 mM) significantly enhanced [ 3H]-ACh release, showing 69.32%±7.60% ( P
ISSN:0006-8993
1872-6240
DOI:10.1016/S0006-8993(00)02566-X