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Selectivity in sympathetic innervation during development and regeneration in the rat

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References

  1. Bevan, J. A., Bevan, R. D., Purdy, R. E., Robinson, C. P., Su, C., and Waterson, J. G., Comparison of adrenergic mechanisms in an elastic and a muscular artery of the rabbit. Circulation Res.30 (1972) 541–548.

    PubMed  Google Scholar 

  2. Bonyhady, R. E., Hendry, I. A., and Hill, C. E., Reversible dissociation of a bovine cardiac factor that supports survival of avian ciliary neurones. J. Neurosci. Res.7 (1982) 11–21.

    PubMed  Google Scholar 

  3. Chamley, J. H., and Dowel, J. J., Specificity of nerve fiber ‘attraction’ to autonomic effector organs in tissue culture. Exp. Cell Res.90 (1975) 1–7.

    PubMed  Google Scholar 

  4. Chamley, J. H., Goller, I., and Burnstock, G., Selective growth of sympathetic nerve fibers to explants of normally densely innervated autonomic effector organs in tissue culture. Devl. Biol.31 (1973) 362–379.

    Google Scholar 

  5. Charlwood, K. A., Lamont, D. M., and Banks, B. E., Apparent orientating effects produced by nerve growth factor, in Nerve Growth Factor and its Antiserum, pp. 102–107. Eds E. Zaimis and J. Knight. The Athlone Press, University of London 1972.

  6. Costa, M., and Gabella, G., Adrenergic innervation of the alimentary canal. Z. Zellforsch.122 (1971) 357–377.

    PubMed  Google Scholar 

  7. Coughlin, M. D., Bloom, E. M., and Black, I. B., Characterization of a neuronal growth factor from mouse heart-cell-conditioned-medium. Devl. Biol.82 (1981) 56–68.

    Google Scholar 

  8. Downman, C. B. B., Distribution along the small intestine of afferent, vasoconstrictor and inhibitory fibers in the mesenteric nerve bundles. J. Physiol., Lond.116 (1952) 228–235.

    Google Scholar 

  9. Ebendal, T., Belew, M., Jacobson, C.-O., and Porath, J., Neurite outgrowth elicited by embryonic chick heart: Partial purification of the active factor. Neurosci. Lett.14 (1979) 91–95.

    PubMed  Google Scholar 

  10. Ebendal, T., and Jacobson, C.-O., Tissue explants affecting the extension and orientation of axons in cultured chick embryo ganglia. Exp. Cell Res.105 (1977) 379–387.

    PubMed  Google Scholar 

  11. Ebendal, T., Olson, L., and Seiger, A., The level of nerve growth factor (NGF) as a function of innervation. Exp. Cell Res.148 (1983) 311–317.

    PubMed  Google Scholar 

  12. Ebendal, T., Olson, L., Seiger, A., and Hedlund, K.-O., Nerve growth factors in the rat iris. Nature286 (1980) 25–28.

    PubMed  Google Scholar 

  13. Edgar, D., Barde, Y.-A., and Thoenen, H., Subpopulations of cultured chick sympathetic neurones differ in their requirements for survival factors. Nature289 (1981) 294–295.

    PubMed  Google Scholar 

  14. Falck, B., Observations on the possibilities of the cellular localization of monoamines by a fluorescence method. Acta physiol. scand., suppl.197 (1962) 1–25.

    Google Scholar 

  15. Filogamo, G., and Muti, R., A propos d'une technique de dénervation du canal alimentaire au moyen du froid. C. r. Ass. Anat.141 (1968) 873–879.

    Google Scholar 

  16. Furness, J. B., The origin and distribution of adrenergic nerve fibers in the guinea-pig colon. Histochemie21 (1970) 295–306.

    PubMed  Google Scholar 

  17. Furness, J. B., and Costa, M., The adrenergic innervation of the gastrointestinal tract. Ergebn. Physiol.69 (1974) 1–51.

    Google Scholar 

  18. Gaze, R. M., Neuronal specificity. Br. med. Bull.30 (1974) 116–121.

    PubMed  Google Scholar 

  19. Gundersen, R. W., and Barrett, J. N., Neuronal chemotaxis: chick dorsal root axons turn toward high concentrations of nerve growth factor. Science206 (1979) 1079–1080.

    PubMed  Google Scholar 

  20. Helfand, S. L., Riopelle, R. J., and Wessells, N. K., Non-equivalence of conditioned medium and nerve growth factor for sympathetic, parasympathetic and sensory neurons. Exp. Cell Res.113 (1978) 39–45.

    PubMed  Google Scholar 

  21. Hill, C. E., Hirst, G. D. S., Ngu, M. C., and van Helden, D. F., Sympathetic postganglionic reinnervation of mesenteric arteries and enteric neurones of the ileum of the rat. J. Aut. Nerv. Syst., submitted for publication (1985).

  22. Hill, C. E., Hirst, G. D. S., and van Helden, D. F., Development of sympathetic innervation to proximal and distal arteries of the rat mesentery. J. Physiol., Lond.338 (1983) 129–147.

    Google Scholar 

  23. Hill, C. E., Purves, R. D., Watanabe, H., and Burnstock, G., Specificity of innervation of iris musculature by sympathetic nerve fibers in tissue culture. Pflügers Arch.361 (1976) 127–134.

    Google Scholar 

  24. Hill, C. E., Sheppard, A., and Hendry, I. A., Origin of the postganglionic sympathetic fibers innervating the branches of the superior mesenteric artery and the intrinsic neurones of the ileum of the rat. Proc. Aust. Physiol. Pharm. Soc.15 (1984) 214P.

    Google Scholar 

  25. Holman, M. E., and Hughes, J. R., Inhibition of intestinal smooth muscle. Aust. J. exp. Biol. med. Sci.43 (1965) 277–290.

    PubMed  Google Scholar 

  26. Jacobowitz, D., Histochemical studies of the autonomic innervation of the gut. J. Pharmac. exp. Ther.149 (1965) 358–364.

    Google Scholar 

  27. Kuntz, A., Autonomic Nervous System. Lea and Febiger, Philadelphia 1953.

    Google Scholar 

  28. Landmesser, L., The generation of neuromuscular specificity. A. Rev. Neurosci.3 (1980) 279–302.

    Google Scholar 

  29. Langley, J. N., On the origin from the spinal cord of the cervical and upper thoracic sympathetic fibers, with some observations on white and grey rami communicantes. Phil. Trans. R. Soc. Lond.183 (1892) 85–124.

    Google Scholar 

  30. Langley, J. N., Note on regeneration of pre-ganglionic fibers of the sympathetic. J. Physiol., Lond.18 (1895) 280–284.

    Google Scholar 

  31. Langley, J. N., On the regeneration of preganglionic and postganglionic visceral nerve fibers. J. Physiol., Lond.22 (1897) 215–230.

    Google Scholar 

  32. Le Tourneau, P. C., Chemotactic response of nerve fiber elongation to nerve growth factor. Devl. Biol.66 (1978) 183–196.

    Google Scholar 

  33. Lichtman, J. W., Purves, D., and Yip, J. W., On the purpose of selective innervation of guinea-pig superior cervical ganglion cells. J. Physiol., Lond.292 (1979) 69–84.

    Google Scholar 

  34. Llewellyn-Smith, I. J., An ultrastructural study on the development of the relationship between sympathetic nerves and vascular smooth muscle. Neurosci. Lett. suppl.15 (1984) S44.

    Google Scholar 

  35. Malmfors, T., Furness, J. B., Campbell, G. R., and Burnstock, G., Reinnervation of smooth muscle of the vas deferens transplanted into the anterior chamber of the eye. J. Neurobiol.2 (1971) 193–207.

    PubMed  Google Scholar 

  36. Matthews, M. R., and Nelson, V., Detachment of structurally intact nerve endings from chromatolytic neurones of the rat superior cervical ganglion during depression of synaptic transmission induced by postganglionic axotomy. J. Physiol., Lond.245 (1975) 91–135.

    Google Scholar 

  37. Menesini-Chen, M. G., Chen, J. S., and Levi-Montalcini, R., Sympathetic nerve fibers ingrowth in the central nervous system of neonatal rodent upon intracerebral NGF injections. Archs ital. Biol.116 (1978) 53–84.

    Google Scholar 

  38. Nja, A., and Purves, D., Specific innervation of guinea-pig superior cervical ganglion cells by preganglionic fibers arising from different levels of the spinal cord. J. Physiol., Lond.264 (1977) 565–583.

    Google Scholar 

  39. Nja, A., and Purves, D., Re-innervation of guinea-pig superior cervical ganglion cells by preganglionic fibers arising from different levels of the spinal cord. J. Physiol., Lond.273 (1977) 633–651.

    Google Scholar 

  40. Nja, A., and Purves, D., Specificity of initial synaptic contacts on guinea-pig superior cervical ganglion cells during regeneration of the cervical sympathetic trunk. J. Physiol., Lond.281 (1978) 45–62.

    Google Scholar 

  41. Norberg, K.-A., Adrenergic innervation of the intestinal wall studied by fluorescence microscopy. Int. J. Neuropharmac.3 (1964) 379–382.

    Google Scholar 

  42. Oakes, B. W., Batty, A. C., Handley, C. J., and Sandberg, L. B., The synthesis of elastin, collagen and glycosaminoglycans by high density primary cultures of neonatal rat aortic smooth muscle. An ultrastructural and biochemical study. Eur. J. Cell Biol.27 (1982) 34–46.

    PubMed  Google Scholar 

  43. Olson, L., and Malmfors, T., Growth characteristics of adrenergic nerves in the adult rat. Acta physiol. scand., suppl.348 (1970) 1–112.

    Google Scholar 

  44. Purves, D., Functional and structural changes of mammalian sympathetic neurones following interruption of their axons. J. Physiol., Lond.252 (1975) 429–463.

    Google Scholar 

  45. Purves, D., Competitive and non-competitive re-innervation of mammalian sympathetic neurones by native and foreign fibers. J. Physiol., Lond.261 (1976) 453–475.

    Google Scholar 

  46. Purves, D., and Thompson, W., The effects of post-ganglionic axotomy on selective synaptic connexions in the superior cervical ganglion of the guinea-pig. J. Physiol., Lond.297 (1979) 95–110.

    Google Scholar 

  47. Purves, D., Thompson, W., and Yip, J. W., Reinnervation of ganglia transplanted to the neck from different levels of the guinea-pig sympathetic chain. J. Physiol., Lond.313 (1981) 49–63.

    Google Scholar 

  48. Purves, D., and Wigston, D. J., Neural units in the superior cervical ganglion of the guinea-pig. J. Physiol., Lond.334 (1983) 169–178.

    Google Scholar 

  49. Rawdon, B. B., and Dockray, G. J., Directional growth of sympathetic nerve fibers in vitro towards enteric smooth muscle and heart from mice with congenital aganglionic colon and their normal litter mates. Brain Res.283 (1983) 53–59.

    PubMed  Google Scholar 

  50. Rutishauser, U., and Edelman, G. M., Effects of fasciculation on the outgrowth of neurites from spinal ganglia in culture. J. Cell Biol.87 (1980) 370–378.

    PubMed  Google Scholar 

  51. Rutishauser, U., Gall, W. E., and Edelman, G. M., Adhesion among neural cells of the chick embryo. IV. Role of the cell surface molecule CAM in the formation of neurite bundles in cultures of spinal ganglia. J. Cell Biol.79 (1978) 382–393.

    PubMed  Google Scholar 

  52. Schubert, D., and LaCorbière, M., The specificity of extracellular glycoprotein complexes in mediating cellular adhesion. J. Neurosci.2 (1982) 82–89.

    PubMed  Google Scholar 

  53. Silberstein, S. D., Johnson, D. G., Jacobowitz, D. M., and Kopin, I. J., Sympathetic reinnervation of the rat iris in organ culture. Proc. natn. Acad. Sci. USA68 (1971) 1121–1124.

    Google Scholar 

  54. Watters, D. J., Kanakis, S. J., Hill, C. E., and Hendry, I. A., Denervation increases sympathetic survival factors in rat heart. Proc. Aust. Physiol. Pharmac. Soc.15 (1984) 100P.

    Google Scholar 

  55. Wigston, D. J., Innervation of individual guinea-pig superior cervical ganglion cells by axons with similar conduction velocities. J. Physiol., Lond.334 (1983) 179–187.

    Google Scholar 

  56. Yap, H. B., Hendry, I. A., Hill, C. E., and Watters, D. J., Effects of cardiac denervation on levels of neuronal survival factors for cultured autonomic neurones. Devl Brain Res.12 (1984) 154–157.

    Google Scholar 

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Hill, C.E. Selectivity in sympathetic innervation during development and regeneration in the rat. Experientia 41, 857–862 (1985). https://doi.org/10.1007/BF01970001

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Key words

  • Sympathetic innervation
  • development
  • regeneration
  • selectivity