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PMID: 2526345 Published · ppublish English Journal Article

Hemicholinium-3 impairs spatial learning and the deficit is reversed by cholinomimetics.

Psychopharmacology ·Vol. 98 ·No. 3 ·1989-00-00 ·Pages 347-56

Hagan JJ, Jansen JH, Broekkamp CL

Abstract

The effects of hemicholinium-3 (HC-3) on spatial discrimination learning were studied. Rats were equipped with indwelling cannulae in the right lateral ventricle and, following recovery, were trained on a two platform spatial discrimination task in a water maze. In this task a visible escape platform remains in a fixed position in the pool during a single training session, whilst the location of an identical "float" (which affords no escape) is randomly varied. For each session the location of the fixed escape platform was changed and the rats were retrained to criterion following pretreatment either with artificial cerebrospinal fluid (CSF) or HC-3 (2.5, 5.0 micrograms/rat/ICV) 1 h before training. Each rat received every treatment according to a latin square design. The results showed that spatial learning was dose dependently impaired by HC-3, choice accuracy being reduced to chance levels by the higher dose. There was no evidence of motoric difficulty, as choice latencies were not significantly increased. Experiments were then conducted to test for reversal of the deficit using a range of psychotropic drugs. Rats were treated with CSF or HC-3 (5 micrograms/rat ICV) 60 min prior to testing and test drugs were injected 15 min before testing. Some doses of physostigmine (46-460 micrograms/kg/SC) and tetrahydroaminoacridine (THA) (2.2-10 mg/kg/SC) reversed the spatial learning deficit. The muscarinic agonists arecoline (0.046-1 mg/kg/SC), aceclidine (1-10 mg/kg/SC), oxotremorine (30-100 micrograms/kg/SC) and RS-86 (0.46, 1.0 microgram/kg/SC) were also effective. Pilocarpine (0.22-2.2 mg/kg/SC) showed marginal activity and isoarecoline (4.6-10 mg/kg/SC) was inactive. Nicotine (0.32, 1, 3.2 mg/kg/SC) and piracetam (10, 30, 100 mg/kg IP) were also inactive. The alpha 2 agonist, clonidine (46, 100 micrograms/kg SC) and the antagonist idazoxan (32, 100 micrograms/kg SC) were also inactive. Learning deficits were not reversed by haloperidol (20, 60 micrograms/kg), amphetamine (0.1, 0.46 mg/kg), the selective 5-HT1A agonist 8-OH-DPAT (30, 100 micrograms/kg) or by the benzodiazapine antagonist ZK-93426 (1, 3.2, 10 mg/kg). The results show that forebrain Ach depletion by HC-3 impairs spatial discrimination learning and these deficits are reversed by cholinesterase inhibitors and some muscarinic receptor agonists. Some degree of pharmacological selectivity is indicated by the failure of a range of other drugs to reverse the impairments.

MeSH Terms
8-Hydroxy-2-(di-n-propylamino)tetralin Animals Arecoline/pharmacology Cholinesterase Inhibitors/pharmacology Discrimination Learning/drug effects Hemicholinium 3/antagonists & inhibitors,pharmacology Learning/drug effects Male Oxotremorine/pharmacology Parasympathomimetics/pharmacology Physostigmine/pharmacology Pilocarpine/pharmacology Rats Space Perception/drug effects Tetrahydronaphthalenes/pharmacology
Chemicals
Cholinesterase Inhibitors Parasympathomimetics Tetrahydronaphthalenes Pilocarpine Hemicholinium 3 Arecoline Oxotremorine 8-Hydroxy-2-(di-n-propylamino)tetralin Physostigmine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Hagan J J
Scientific Development Group, Organon International B.V., The Netherlands.
Jansen J H
Broekkamp C L
References (50)
50 references, click to expand
  1. Place navigation in rats is impaired by lesions of medial septum and diagonal band but not nucleus basalis magnocellularis.
    Behav Brain Res. 1988 Jan;27(1):9-20 PMID: 3342117
  2. Allocentric spatial learning by hippocampectomised rats: a further test of the "spatial mapping" and "working memory" theories of hippocampal function.
    Q J Exp Psychol B. 1986 Nov;38(4):365-95 PMID: 3809580
  3. Behavioural, biochemical and histochemical effects of different neurotoxic amino acids injected into nucleus basalis magnocellularis of rats.
    Neuroscience. 1987 Feb;20(2):653-69 PMID: 3295586
  4. Muscarinic cholinergic receptor subtypes in the rat brain. I. Quantitative autoradiographic studies.
    Brain Res. 1986 Jan 8;362(2):227-38 PMID: 3942874
  5. Cholinergic receptor interactions and their effects on long-term memory processing.
    Brain Res. 1981 Jun 29;215(1-2):177-85 PMID: 7260586
  6. Dissociation between components of spatial memory in rats after recovery from the effects of retrohippocampal lesions.
    Exp Brain Res. 1985;58(1):11-28 PMID: 3987843
  7. Cognitive enhancement in Korsakoff's psychosis by clonidine: a comparison with L-dopa and ephedrine.
    Psychopharmacology (Berl). 1986;88(3):374-80 PMID: 3083458
  8. Isoarecolone can inhibit nicotine binding and produce nicotine-like discriminative stimulus effects in rats.
    Neuropharmacology. 1987 Jul;26(7A):789-92 PMID: 3627386
  9. Physostigmine and arecoline: effects of intravenous infusions in Alzheimer presenile dementia.
    Br J Psychiatry. 1981 Jan;138:46-50 PMID: 7023592
  10. Bidirectional effects of beta-carbolines and benzodiazepines on cognitive processes.
    Brain Res Bull. 1987 Sep;19(3):359-64 PMID: 3676858
  11. Transplantation of embryonic ventral forebrain neurons to the neocortex of rats with lesions of nucleus basalis magnocellularis--II. Sensorimotor and learning impairments.
    Neuroscience. 1985 Dec;16(4):787-97 PMID: 4094694
  12. Pharmacological alleviation of cholinergic lesion induced memory deficits in rats.
    Life Sci. 1985 Sep 9;37(10):945-52 PMID: 4040999
  13. Central and peripheral actions of amphetamine on memory storage.
    Brain Res. 1980 Jan 20;182(1):157-66 PMID: 7350983
  14. Cholinomimetic treatment fails to improve memory disorders.
    N Engl J Med. 1980 Sep 4;303(10):585-6 PMID: 7402228
  15. Oral tetrahydroaminoacridine in long-term treatment of senile dementia, Alzheimer type.
    N Engl J Med. 1986 Nov 13;315(20):1241-5 PMID: 2430180
  16. Memory retrieval enhanced by amphetamine after a long retention interval.
    Behav Neural Biol. 1982 Oct;36(2):146-60 PMID: 7183311
  17. A comparison of the contributions of the frontal and parietal association cortex to spatial localization in rats.
    Behav Neurosci. 1983 Feb;97(1):13-27 PMID: 6838719
  18. Muscarinic agonist therapy of Alzheimer's disease. A clinical trial of RS-86.
    Arch Neurol. 1986 Jul;43(7):659-61 PMID: 3524514
  19. Basal forebrain infusion of HC-3 in rats: maze learning deficits and neuropathology.
    Physiol Behav. 1987;39(3):381-93 PMID: 3575480
  20. Facilitation of amphetamine-induced rotation by muscarinic antagonists is correlated with M2 receptor affinity.
    Brain Res. 1987 Apr 28;410(1):69-73 PMID: 3580900
  21. Effects of arecoline and pilocarpine on learning ability in marmosets pretreated with hemicholinium-3.
    Psychopharmacology (Berl). 1987;91(4):512-4 PMID: 3108931
  22. Oral tetrahydroaminoacridine in the treatment of senile dementia, Alzheimer's type.
    N Engl J Med. 1987 Jun 18;316(25):1603-5 PMID: 3587295
  23. Cholinergic learning deficits in the marmoset produced by scopolamine and ICV hemicholinium.
    Psychopharmacology (Berl). 1984;83(4):340-5 PMID: 6436862
  24. Autoradiographic distribution of 14C-hemicholinium-3 in mouse whole body and dog brain.
    J Pharmacol Exp Ther. 1974 Jan;188(1):77-85 PMID: 4809278
  25. Learning impairment following lesion of the basal nucleus of Meynert in the marmoset: modification by cholinergic drugs.
    Brain Res. 1986 Jun 18;376(1):108-16 PMID: 3087582
  26. Relative affinities of drugs acting at cholinoceptors in displacing agonist and antagonist radioligands: the NMS/Oxo-M ratio as an index of efficacy at cortical muscarinic receptors.
    Br J Pharmacol. 1988 Feb;93(2):437-45 PMID: 3359114
  27. Blockade of spatial learning by the M1 muscarinic antagonist pirenzepine.
    Psychopharmacology (Berl). 1987;93(4):470-6 PMID: 3124181
  28. Basal forebrain lesions produce a dissociation of trial-dependent and trial-independent memory performance.
    Brain Res. 1985 Oct 21;345(2):315-21 PMID: 4041891
  29. Differential interactions of muscarinic drugs with binding sites of [3H]pirenzepine and [3H]quinuclidinyl benzilate in rat brain tissue.
    Life Sci. 1987 May 18;40(20):1981-7 PMID: 3573989
  30. Excitatory actions of tetrahydro-9-aminoacridine (THA) on hippocampal pyramidal neurons.
    Neurosci Lett. 1987 Aug 31;79(3):301-5 PMID: 3658222
  31. Tetrahydroaminoacridine blocks potassium channels and inhibits sodium inactivation in Myxicola.
    J Pharmacol Exp Ther. 1987 Nov;243(2):609-13 PMID: 2445954
  32. Cholinergic function and intellectual decline in Alzheimer's disease.
    Neuroscience. 1986 Sep;19(1):1-28 PMID: 3537837
  33. The relative potencies of cholinomimetics and muscarinic antagonists on the rat iris in vivo: effects of pH on potency of pirenzepine and telenzepine.
    Naunyn Schmiedebergs Arch Pharmacol. 1988 Nov;338(5):476-83 PMID: 3244389
  34. Learning and memory deficits after lesions of the nucleus basalis magnocellularis: reversal by physostigmine.
    Neuroscience. 1985 Apr;14(4):1025-32 PMID: 4000475
  35. Some behavioral effects of suppressing choline transport by cerebroventricular injection of hemicholinium-3.
    Pharmacol Biochem Behav. 1978 Apr;8(4):399-403 PMID: 674251
  36. Impairment in T-maze reinforced alternation performance following nucleus basalis magnocellularis lesions in rats.
    Behav Brain Res. 1984 Jul;13(1):63-70 PMID: 6541050
  37. Clonidine reverses the amnesia induced by dopamine beta hydroxylase inhibition.
    Pharmacol Biochem Behav. 1979 Sep;11(3):259-63 PMID: 228318
  38. Treatment strategies for senile dementia: antagonist beta-carbolines.
    Trends Neurosci. 1988 Jan;11(1):13-7 PMID: 2469147
  39. Lack of task specificity and absence of posttraining effects of atropine on learning.
    Behav Neurosci. 1986 Aug;100(4):483-93 PMID: 3741600
  40. Amnesia produced by intracerebroventricular injections of hemicholinium-3 in mice was prevented by pretreatment with piracetam-like compounds.
    Pharmacol Biochem Behav. 1986 Oct;25(4):925-7 PMID: 3786350
  41. Scopolamine effects on memory retention in mice: a model of dementia?
    Behav Neural Biol. 1986 Mar;45(2):169-84 PMID: 3964171
  42. Correlation of cholinergic abnormalities with senile plaques and mental test scores in senile dementia.
    Br Med J. 1978 Nov 25;2(6150):1457-9 PMID: 719462
  43. Studies on the behavioral and biochemical effects of hemicholinium in vivo.
    J Pharmacol Exp Ther. 1979 Jul;210(1):91-7 PMID: 448651
  44. RS 86 in the treatment of Alzheimer's disease: cognitive and biological effects.
    Biol Psychiatry. 1987 Sep;22(9):1067-78 PMID: 3651528
  45. Cholinergic-dopaminergic interactions in radial-arm maze performance.
    Behav Neural Biol. 1988 Mar;49(2):234-9 PMID: 3365189
  46. Lesions in nucleus basalis magnocellularis and medial septal area of rats produce qualitatively similar memory impairments.
    J Neurosci. 1985 Apr;5(4):866-73 PMID: 4038997
  47. Tetrahydro-9-aminoacridine (THA) interacts with the phencyclidine (PCP) receptor site.
    Neurosci Lett. 1988 Jun 7;88(3):303-7 PMID: 2838771
  48. d-Amphetamine enhances memory performance in rats with damage to the fimbria.
    Physiol Behav. 1988;42(6):575-9 PMID: 3413232
  49. Pilocarpine and physostigmine attenuate spatial memory impairments produced by lesions of the nucleus basalis magnocellularis.
    Behav Neurosci. 1986 Feb;100(1):23-32 PMID: 3954876
  50. Stimulation of ganglionic muscarinic M1 receptors by a series of tertiary arecaidine and isoarecaidine esters in the pithed rat.
    Eur J Pharmacol. 1987 Jan 28;134(1):61-7 PMID: 3556399
Article Info
Journal
Psychopharmacology
Abbr.
Psychopharmacology (Berl)
ISSN
0033-3158
Published
1989-00-00
Pages
347-56
Language
English
Region
Germany
NLM ID
7608025
Subset
IM
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