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Projections of neurons with neuromedin U-like immunoreactivity in the small intestine of the guinea-pig

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Summary

Neuromedin U immunoreactivity was located histochemically in the guinea-pig small intestine. Projections of immunoreactive neurons were determined by analysing patterns of degeneration following nerve lesions. The co-localization of neuromedin U immunoreactivity with immunoreactivity for substance P, neuropeptide Y, vasoactive intestinal peptide and calbindin was also investigated. Neuromedin U immunoreactivity was found in nerve cells in the myenteric and submucous plexuses and in nerve fibres in these ganglionated plexuses, around submucous arterioles and in the mucosa. Reactive fibres did not supply the muscle layers. Most reactive nerve cells in the myenteric ganglia had Dogiel type-II morphology and in many there was co-localization of calbindin, although some Dogiel type-II neuromedin U neurons were calbindin negative. Lesion studies suggest that these myenteric neurons project circumferentially to local myenteric ganglia. Projections from myenteric neurons also run anally in the myenteric plexus, while other projections extend to submucous ganglia, and still further projections run from the intestine to provide terminals in the coeliac ganglia. In the submucous ganglia neuromedin U was co-localized in three populations of nerve cells: (i) those with vasoactive intestinal peptide immunoreactivity, (ii) neurons containing neuropeptide Y, and (iii) neurons containing substance P. Each of these populations sends nerve fibres to the mucosa. Neuromedin U immunoreactivity is thus located in a variety of neurons serving different functions in the intestine and therefore probably does not have a single role in intestinal physiology.

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References

  • Augood SJ, Keast JR, Emson PC (1988) Distribution and characterisation of neuromedin U-like immunoreactivity in rat brain and intestine and in guinea pig intestine. Regul Pept 20:281–292

    Google Scholar 

  • Ballesta J, Carlei F, Bishop AE, Steel JH, Gibson SJ, Fahey M, Hennessey R, Domin J, Bloom SR, Polak JM (1988) Occurrence and developmental pattern of neuromedin U-immunoreactive nerves in the gastrointestinal tract and brain of the rat. Neuroscience 25:797–816

    Google Scholar 

  • Bornstein JC, Furness JB (1988) Correlated electrophysiological and histochemical studies of submucous neurons and their contribution to understanding enteric neural circuits. J Auton Nerv Syst 25:1–13

    Google Scholar 

  • Brown DR, Quito FL (1988) Neuromedin U octapeptide alters ion transport in porcine jejunum. Eur J Pharmacol 155:159–162

    Google Scholar 

  • Costa M, Furness JB, Llewellyn-Smith IJ (1987) Histochemistry of the enteric nervous system. In: Johnson LR (ed) Physiology of the Gastrointestinal Tract. Raven Press, New York, 1–40

    Google Scholar 

  • Cuello AC, Galfre G, Milstein C (1979) Detection of substance P in the central nervous system by a monoclonal antibody. Proc Natl Acad Sci USA 76:3532–3536

    Google Scholar 

  • Ekblad E, Winther C, Ekman C, Håkanson R, Sundler F (1987) Projections of peptide-containing neurons in rat small intestine. Neuroscience 20:169–188

    Google Scholar 

  • Furness JB, Costa M (1978) Distribution of intrinsic nerve cell bodies and axons which take up aromatic amines and their precursors in the small intestine of the guinea-pig. Cell Tissue Res 185:527–543

    Google Scholar 

  • Furness JB, Costa M (1979) Projections of intestinal neurons showing immunoreactivity for vasoactive intestinal polypeptide are consistent with these neurons being the enteric inhibitory neurons. Neurosci Lett 15:199–204

    Google Scholar 

  • Furness JB, Costa M (1987) The Enteric Nervous System. Churchill-Livingstone, Edinburgh, pp 111–136

    Google Scholar 

  • Furness JB, Costa M, Keast JR (1984) Cholineacetyltransferase and peptide immunoreactivity of submucous neurons of the guinea-pig small intestine. Cell Tissue Res 237:329–336

    Google Scholar 

  • Furness JB, Costa M, Gibbins IL, Llewellyn-Smith IJ, Oliver JR (1985) Neurochemically similar myenteric and submucous neurons directly traced to the mucosa of the small intestine. Cell Tissue Res 241:155–163

    Google Scholar 

  • Furness JB, Costa M, Rökaeus A, McDonald TJ, Brooks B (1987) Galanin-immunoreactive neurons in the guinea-pig small intestine: their projections and relationships to other enteric neurons. Cell Tissue Res 250:607–615

    Google Scholar 

  • Furness JB, Bornstein JC, Trussell DC (1988a) Shapes of nerve cells in the myenteric plexus of the guinea-pig small intestine revealed by the intracellular injection of dye. Cell Tissue Res 254:561–571

    Google Scholar 

  • Furness JB, Keast JR, Pompolo S, Bornstein JC, Costa M, Emson PC, Lawson DEM (1988b) Immunohistochemical evidence for the presence of calcium-binding proteins in enteric neurons. Cell Tissue Res 252:79–87

    Google Scholar 

  • Furness JB, Llewellyn-Smith IJ, Bornstein JC, Costa M (1988c) Neuronal circuitry in the enteric nervous system. In: Björkland A, Hökfelt T, Owman C (eds) Handbook of Chemical Neuroanatomy, Vol 6, Elsevier, Amsterdam, pp 161–218

    Google Scholar 

  • Furness JB, Morris JL, Gibbins IL, Costa M (1989) Chemical coding of neurons and plurichemical transmission. Annu Rev Pharmacol Toxicol 29:289–306

    Google Scholar 

  • Hökfelt T, Millhorn D, Seroogy K, Tsuruo Y, Ceccatelli S, Lindh B, Meister B, Melander T, Schalling M, Bartfai T, Terenius L (1987) Coexistence of peptides with classical neurotransmitters. Experientia 43:768–780

    Google Scholar 

  • Honzawa M, Sudoh T, Minamino N, Tohyama M, Matsuo H (1987) Topographic localization of neuromedin U-like structures in the rat brain: an immunohistochemical study. Neuroscience 23:1103–1122

    Google Scholar 

  • Iyer V, Bornstein JC, Costa M, Furness JB, Takahashi Y, Iwanaga T (1988) Electrophysiology of guinea-pig myenteric neurons correlated with immunoreactivity for calcium binding proteins. J Auton Nerv Syst 22:141–150

    Google Scholar 

  • Minamino N, Kangawa K, Matsuo H (1985) Neuromedin U-8 and U-25: novel uterus stimulating and hypertensive peptides identified in porcine spinal cord. Biochem Biophys Res Commun 130:1078–1085

    Google Scholar 

  • Minamino N, Kangawa K, Honzawa M, Matsuo H (1988) Isolation and structural determination of rat neuromedin U. Biochem Biophys Res Commun 156:355–360

    Google Scholar 

  • Morris JL, Gibbins IL, Furness JB, Costa M, Murphy R (1985) Co-localization of NPY, VIP and dynorphin in non-noradrenergic axons of the guinea-pig uterine artery. Neurosci Lett 62:31–37

    Google Scholar 

  • Pompolo S, Furness JB (1988) Ultrastructure and synaptic relationships of calbindin-reactive, Dogiel type II neurons, in myenteric ganglia of guinea-pig small intestine. J Neurocytol 17:771–782

    Google Scholar 

  • Pompolo S, Furness JB, Bornstein JC, Hendriks R, Trussell DC (1989) Dogiel type II neurons in the guinea-pig small intestine: ultrastructure in relation to other characteristics. In: Singer MV, Goebell H (eds) Nerves and the Gastrointestinal Tract. Martin Lister, Carnforth, UK, pp 57–67

    Google Scholar 

  • Wilson AJ, Furness JB, Costa M (1981) The fine structure of the submucous plexus of the guinea-pig ileum. I. The ganglia, neurons, Schwann cells and neuropil. J Neurocytol 10:759–784

    Google Scholar 

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Furness, J.B., Pompolo, S., Murphy, R. et al. Projections of neurons with neuromedin U-like immunoreactivity in the small intestine of the guinea-pig. Cell Tissue Res. 257, 415–422 (1989). https://doi.org/10.1007/BF00261844

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