Abstract
Slices of the rabbit caudate nucleus were preincubated with 3H-dopamine or 3H-choline and then superfused with label-free medium. Release of 3H-dopamine and 3H-acetylcholine was elicited by either electrical stimulation at 8 (in one series 2) Hz, or an increase in the K+ concentration by 50 mmol/l, or addition of L-glutamate 1 mmol/l. Verapamil 1 mumol/l, diltiazem 1 and 10 mumol/l, and ryosidine 1 mumol/l failed to the reduce the electrically-, K+- and glutamate-evoked overflow of tritium. Verapamil 1 mumol/l and diltiazem 10 mumol/l also failed to reduce the electrically-evoked overflow (2 Hz) when dopamine receptors, neuronal dopamine uptake, and neuronal choline uptake were blocked by domperidone, nomifensine and hemicholinium, respectively. Inhibition of the evoked overflow of tritium was only obtained when concentrations were increased to verapamil 10 mumol/l, diltiazem 100 mumol/l and ryosidine 10 mumol/l. The inhibition was generally small. It was more evident for slices preincubated with 3H-choline than for those preincubated with 3H-dopamine, because in the latter verapamil, diltiazem and (much less) ryosidine accelerated the basal efflux of tritium. The inhibition of the K+-evoked overflow of tritium was probably due to blockade of Ca2+ channels because this overflow was Ca2+-dependent but tetrodotoxin-resistant. In contrast, the inhibition of the electrically- and glutamate-evoked overflow possibly involved blockade of Na+ channels as well. The results indicate that three calcium antagonists from different chemical classes are very weak inhibitors of Ca2+ entry into, and hence transmitter release from, the terminal axons of central dopaminergic and cholinergic neurones. The function of the high affinity calcium antagonist binding sites that have been identified in brain remains unknown.
MeSH Terms
Acetylcholine/metabolism
Animals
Calcium Channel Blockers/pharmacology
Caudate Nucleus/metabolism
Diltiazem/pharmacology
Dopamine/metabolism
Electric Stimulation
Female
Glutamates/pharmacology
Glutamic Acid
In Vitro Techniques
Male
Organic Chemicals
Potassium/pharmacology
Rabbits
Verapamil/pharmacology
Chemicals
Calcium Channel Blockers
Glutamates
Organic Chemicals
Glutamic Acid
ryosidine
Verapamil
Diltiazem
Acetylcholine
Potassium
Dopamine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Starke K
Späth L
Wichmann T
References (19)
19 references, click to expand
-
Effect of dopamine receptor agonists and antagonists on release of dopamine in the rabbit caudate nucleus in vitro.
Naunyn Schmiedebergs Arch Pharmacol. 1978 Oct;305(1):27-36
PMID: 723968
-
Further functional in vitro comparison of pre- and postsynaptic dopamine receptors in the rabbit caudate nucleus.
Naunyn Schmiedebergs Arch Pharmacol. 1983 Aug;323(4):298-306
PMID: 6605484
-
Differences in alkaline earth stimulation of neurotransmitter release from isolated brain synaptosomes.
Naunyn Schmiedebergs Arch Pharmacol. 1978 Jan-Feb;301(3):175-9
PMID: 24809
-
alpha-Adrenergic blockade and inhibition of A23187 mediated Ca2+ uptake by the calcium antagonist verapamil in rat liver cells.
Mol Pharmacol. 1979 May;15(3):598-606
PMID: 40107
-
Effects of Ca-antagonists on neuromuscular transmission in the rabbit ear artery.
Pflugers Arch. 1983 Jan;396(1):1-7
PMID: 6300750
-
Potassium-induced release of [3H] GABA and of [3H] noradrenaline from normal and reserpinized rat brain cortex slices, Differences in calcium-dependency, and in sensitivity to potassium ions.
J Neurochem. 1977 Jan;28(1):165-70
PMID: 833590
-
Voltage-dependent action of tetrodotoxin in mammalian cardiac muscle.
Nature. 1976 Sep 23;263(5575):344-5
PMID: 958493
-
Inhibitory effects of verapamil, prenylamine and D 600 on Ca2+-dependent noradrenaline release from the sympathetic nerves of isolated rabbit hearts.
Naunyn Schmiedebergs Arch Pharmacol. 1979 Dec;310(1):11-9
PMID: 530309
-
[Effect of nifedipine on the sympathetic nerve function of the heart].
Arzneimittelforschung. 1973 Feb;23(2):193-7
PMID: 4739829
-
Influences of verapamil, X-537A, A-23187 and adenosine 3',5'-cyclic monophosphate on release of 5-hydroxytryptamine from rat brain slices.
Jpn J Pharmacol. 1978 Aug;28(4):589-96
PMID: 215809
-
Effects of nifedipine on potassium-induced contraction and noradrenaline release in cerebral and extracranial arteries from rabbit.
Acta Physiol Scand. 1982 Feb;114(2):283-96
PMID: 6127868
-
Modulation by endogenous dopamine of the release of acetylcholine in the caudate nucleus of the rabbit.
Naunyn Schmiedebergs Arch Pharmacol. 1980;315(2):111-7
PMID: 7207641
-
N-methyl-C-aspartate-type receptors mediate striatal 3H-acetylcholine release evoked by excitatory amino acids.
Nature. 1982 Jun 3;297(5865):422-4
PMID: 6281659
-
Inhibition of high affinity synaptosomal uptake systems by verapamil.
Mol Pharmacol. 1979 Nov;16(3):877-85
PMID: 530260
-
A comparison of pre- and postsynaptic effects of alpha-adrenolytic drugs in the pulmonary artery of the rabbit.
Neuroscience. 1977;2(2):285-96
PMID: 20591
-
Differential effect of verapamil on excitation-contraction coupling in smooth muscle and on excitation-secretion coupling in adrenergic nerve terminals.
J Pharmacol Exp Ther. 1972 Mar;180(3):672-82
PMID: 5012786
-
Presynaptic alpha 2-adrenoceptor antagonism by verapamil but not by diltiazem in rabbit hypothalamic slices.
Br J Pharmacol. 1983 Mar;78(3):571-7
PMID: 6132643
-
Effect of extracellular dopamine on the release of dopamine in the rabbit caudate nucleus: evidence for a dopaminergic feedback inhibition.
Naunyn Schmiedebergs Arch Pharmacol. 1979 Jan;306(1):53-60
PMID: 423999
-
Comparison between electrically evoked and potassium-induced (3)H-noradrenaline release from rat neocortex slices: Role of calcium ions and transmitter pools.
Neurochem Int. 1981;3(2):129-36
PMID: 20487816