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Inhibitory effect of dopamine on canine gastric fundus

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Summary

The mechanism of the inhibitory effect of dopamine on canine stomach fundus was studied in longitudinal and circular muscle fundus strips, contracted by transmural electrical stimulation or by methacholine.

Results obtained for longitudinal and circular strips were similar. Dopamine (1 · 10−6–1 · 10−4 M) concentration-dependently inhibited frequency-response curves to electrical stimulation; these concentrations did not change the resting tone of the strips. Dopamine (1 · 10−4 M), tested on contractions of similar amplitude induced in the same strips by electrical stimulation at 0.5 Hz and by methacholine, inhibited the electrically induced contractions but had little influence on the contractions induced by methacholine. The inhibition of the electrically induced contractions by dopamine 1 · 10−4 M was not influenced by the presence of cocaine 3 · 10−5 M or hydrocortisone 3 · 10−5 M.

The α1- and α2-adrenoceptor antagonist phentolamine and the α2-adrenoceptor antagonist rauwolscine markedly antagonized the inhibitory effect of dopamine on the response to electrical stimulation at 0.5 Hz. The α1-adrenoceptor antagonist prazosin and the dopamine receptor antagonists haloperidol and domperidone had no effect. The dopamine receptor antagonist metoclopramide decreased the inhibitory effect of dopamine but had a similar effect on the inhibition caused by noradrenaline.

These results indicate that the inhibitory effect of dopamine in the dog gastric fundus is mainly mediated by an interaction with α2-adrenoceptors on the intramural cholinergic neurons; this effect is largely direct since it was not influenced by cocaine. These results are different from those obtained in the rat gastric fundus, where the inhibitory effect of dopamine is mainly indirect, and due to an interaction with α-adrenoceptors on the intramural cholinergic neurons and with β-adrenoceptors on the smooth muscle cells.

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References

  • Andréjak M, Pommier Y, Mouillé P, Schmitt H (1980) Effects of some α-adrenoceptor agonists and antagonists on the guinea-pig ileum. Naunyn-Schmiedeberg's Arch Pharmacol 314:83–87

    Google Scholar 

  • Bech K, Hovendal CP, Andersen D (1982) Effect of dopamine on pentagastrin-stimulated gastric antral motility in dogs with gastric fistula. Scand J Gastroenterol 17:103–107

    Google Scholar 

  • Blancquaert JP, Lefebvre RA, Willems JL (1982) Gastric relaxation by intravenous and intracerebroventricular administration of apomorphine, morphine and fentanyl in the conscious dog. Arch Int Pharmacodyn 256:153–154

    Google Scholar 

  • Drew GM (1978) Pharmacological characterization of the presynaptic α-adrenoceptors regulating cholinergic activity in the guineapig ileum. Br J Pharmacol 64:293–300

    Google Scholar 

  • Euler US von (1979) General view on the relevance of presynaptic systems. In: Langer SZ, Starke K, Dubocovich ML (eds) Presynaptic receptors. Pergamon Press, Oxford, pp 5–9

    Google Scholar 

  • Fagbemi SO, Salako LA (1980) The effect of prazosin on the guinea-pig ileum. Br J Pharmacol 70:395–402

    Google Scholar 

  • Goldstein A (1964) Biostatistics: An introductory text. The Macmillan Company, New York

    Google Scholar 

  • Görich R, Weihrauch TR, Kilbinger H (1982) The inhibition by dopamine of cholinergic transmission in the isolated guinea-pig ileum. Naunyn-Schmiedeberg's Arch Pharmacol 318:308–312

    Google Scholar 

  • Hope W, McCulloch MW, Rand MJ, Story DF (1978) Modulation of noradrenergic transmission in the rabbit ear artery by dopamine. Br J Pharmacol 64:527–537

    Google Scholar 

  • Kelly KA (1981) Motility of the stomach and gastroduodenal junction. In: Johnson LR (ed) Physiology of the gastrointestinal tract. Raven Press, New York, pp 393–410

    Google Scholar 

  • Lefebvre RA, Blancquacrt JP, Willems JL, Bogaert MG (1983a) In vitro study of the inhibitory effects of dopamine on the rat gastric fundus. Naunyn-Schmiedeberg's Arch Pharmacol 322:228–236

    Google Scholar 

  • Lefebvre RA, Willems JL, Bogaert MG (1983b) In vitro study of the influence of dopamine on rat and dog gastric fundus. Scand J Gastroenterol [Suppl 89], in press

  • Luchelli-Fortis MA, Langer SZ (1975) Selective inhibition by hydrocortisone of 3H-normetanephrine formation during 3H-transmitter release elicited by nerve stimulation in the isolated nerve-muscle preparation of the cat nictitating membrane. Naunyn-Schmiedeberg's Arch Pharmacol 287:261–275

    Google Scholar 

  • McClelland CM, Sanger GJ (1982) Antagonism by metoclopramide of an inhibitory response to clonidine in rat isolated stomach muscle. Br J Pharmacol 77:484P

    Google Scholar 

  • Morgan KG, Muir TC, Szurszewski JH (1981) The electrical basis for contraction and relaxation in canine fundal smooth muscle. J Physiol (Lond) 311:475–488

    Google Scholar 

  • Nakahata N, Nakanishi H, Suzuki T (1982) Prejunctional inhibition mediated via α2-adrenoceptors in excitatory transmission of canine small intestine. J Pharm Pharmacol 34:510–513

    Google Scholar 

  • Spedding M (1980) Effects of metoclopramide and isoprenaline in the rat vas deferens; interactions with α-adrenoceptors. Br J Pharmacol 71:113–120

    Google Scholar 

  • Spedding M (1981) Antagonism of the inhibitory effects of clonidine and dopamine in the guinea-pig ileum by metoclopramide, sultopride and sulpiride. Br J Pharmacol 73: 279P

  • Steinsland OS, Hieble JP (1978) Dopaminergic inhibition of adrenergic neurotransmission as a model for studies on dopamine receptor mechanisms. Science 199:443–445

    Google Scholar 

  • Tanaka T, Weitzell R, Starke K (1978) High selectivity of rauwolscine for presynaptic α-adrenoceptors. Eur J Pharmacol 52:239–250

    Google Scholar 

  • Taylor P (1980) Cholinergic agonists. In: Goodman Gilman A, Goodman LS, Gilman A (eds) The pharmacological basis of therapeutics. McMillan Publishing Co., New York, pp 91–99

    Google Scholar 

  • Valenzuela JE (1976) Dopamine as a possible neurotransmitter in gastric relaxation. Gastroenterology 71:1019–1022

    Google Scholar 

  • Van Nueten JM, Janssen PA (1978) Is dopamine an endogenous inhibitor of gastric emptying? In: Duthie HL (ed) Gastrointestinal motility in health and disease. MTP Press, Lancaster, England, pp 173–181

    Google Scholar 

  • Weitzell R, Tanaka T, Starke K (1979) Pre- and postsynaptic effects of yohimbine stereoisomers on noradrenergic transmission in the pulmonary artery of the rabbit. Naunyn-Schmiedeberg's Arch Pharmacol 308:127–136

    Google Scholar 

  • Wikberg J (1978) Differentiation between pre- and postjunctional α-receptors in guinea pig ileum and rabbit aorta. Acta Physiol Scand 103:225–239

    Google Scholar 

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Dedicated to Prof. Dr. E. J. Ariëns (Department of Pharmacology, University of Nijmegen, The Netherlands) on the occasion of his retirement

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Lefebvre, R.A., Willems, J.L. & Bogaert, M.G. Inhibitory effect of dopamine on canine gastric fundus. Naunyn-Schmiedeberg's Arch. Pharmacol. 326, 22–28 (1984). https://doi.org/10.1007/BF00518774

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  • DOI: https://doi.org/10.1007/BF00518774

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