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Chemical neurotransmission in the autonomic nervous system: Sir Henry Dale and acetylcholine

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Abstract

The concept of chemical neurotransmission arose from detailed studies on the functioning of the autonomic nervous system, particularly those of T. R. Elliott, H. H. Dale and Otto Loewi during the first three decades of the 20th century. This paper will assess some of their contributions, and discuss the relevance of earlier work, especially that of W. H. Gaskell and J. N. Langley, on the anatomy and physiology of the autonomic nervous system. Emphasis is given to the work that Dale and his colleagues performed on the elucidation of acetylcholine as a normal constituent of the mammalian body, and subsequently as a probable chemical neurotransmitter in the parasympathetic nervous system, at other autonomic sites and at the voluntary neuromuscular junction.

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References

  1. Sheehan D. The discovery of the autonomic nervous system.Arch Neurol Psychiat 1936;35: 1081–115.

    Google Scholar 

  2. Gaskel WH.The involuntary nervous system. London: Longmans, 1916.

    Google Scholar 

  3. Langdon-Brown W. W. H. Gaskell and the Cambridge Medical School.Proc R Soc Med 1939;33: 1–12.

    Google Scholar 

  4. Langley JN. On the union of the cranial autonomic (visceral) fibres with the nerve cells of the superior cervior cervical ganglion.J Physiol 1898;23: 240–70.

    Google Scholar 

  5. Langley JN. On the physiology of the salivary secretion Part II. On the mutual antagonism of atropin and pilocarpin, having especial reference to their relations in the sub-maxillary gland of the cat.J Physiol 1878;1: 309–69.

    Google Scholar 

  6. Bynum WF. Chemical structure and pharmacological action: a chapter in the history of 19th century molecular pharmacology.Bull Hist Med 1970;44: 518–38.

    PubMed  Google Scholar 

  7. Parascandola J. The development of receptor theory. In: Parnham MJ, Bruinvels J, eds.Discoveries in Pharmacoloty, Volume 3: Pharmacological Methods, Receptors and Chemotherapy. Amsterdam: Elsevier Pub Co., 1984: 129–54.

    Google Scholar 

  8. Tansey EM. The Wellcome Physiological Research Laboratories 1894–1904: the Home Office. pharmaceutical firms and animal experiments.Med Hist 1989;33: 1–41.

    PubMed  Google Scholar 

  9. Elliott TR. The action of adrenaline.J Physiol 1905;32: 401–67.

    Google Scholar 

  10. Dale HH. On some physiological actions of ergot.J Physiol 1906;34: 163–206.

    Google Scholar 

  11. Elliott TR. On the action of adrenalin.J Physiol 1904;31: xx-xxi.

    Google Scholar 

  12. Elliott TR. The action of adrenalin.Brit Med J 1905;i: 127–30.

    Google Scholar 

  13. Elliott TR. The action of adrenalin.J Physiol 1905;32: 401–67.

    Google Scholar 

  14. Lewis T. Professor Thomas Renton Elliott.Univ Coll Hosp Mag 1939;24: 83–6.

    Google Scholar 

  15. Dixon WE. On the mode of action of drugs.Med Mag 1907;16: 454–62.

    Google Scholar 

  16. Dale HH.Adventures in Physiology. London: The Wellcome Trust, 1965: 5.

    Google Scholar 

  17. Barger G, Dale HH. Chemical structure and sympathomimetic action of amines.J Physiol 1910;41: 19–59.

    Google Scholar 

  18. Letter, Dale to Elliott, 25 Oct 1909. Contemporary Medical Archives Centre, Wellcome Institute, GC/42 ‘T. R. Elliott’.

  19. Hunt R, Taveau M. On the physiological action of certain cholin derivatives and new methods for detecting cholin.Brit Med J 1906;ii: 1788–9.

    Google Scholar 

  20. Dale HH. Memorable experiences in research.Diabetes 1954;3: 20–2.

    Google Scholar 

  21. Ewins AJ. Acetyl-choline, a new active principle of ergot.Biochem J 1914;8: 44–9.

    Google Scholar 

  22. Letter, Dale to Elliott, 11 Dec 1913. Contemporary Medical Archives Centre. Wellcome Institute, GC/42 ‘T. R. Elliott’.

  23. Dale HH. The action of certain esters and ethers of choline and their relation to muscarine.J Pharm Exp Ther 1914;6: 147–90.

    Google Scholar 

  24. Gershon MD. The identification of neurotransmitters to smooth muscle. In: Bulbring E, Brading AF. Jones AW. Tomita T, eds.Smooth Muscle. London. Edward Arnold, 1970: 496–524.

    Google Scholar 

  25. Loewi O. Über humorale Übertragberkeit der Herznervenwirkung. 1. Mitteilung.Pflugers Arch 1921;189: 239–42.

    Google Scholar 

  26. Maclntosh FC.Vasodilator Substances from the Tissues, a new translation of J. H. Gaddum (1936)Gefässerweiternde stoffe der Gewebe. Cambridge: Cambridge University Press, 1986: 216–17.

    Google Scholar 

  27. Loewi O, Navratil E. Über humorale Übertragbarkeit der Herznervenwirkung. X, Mitteilung: Über das Schicksal des Vagusstoffs.Pflugers Arch 1926;214: 678–88.

    Google Scholar 

  28. Letter, Dale to Richards, 22 Mar 1929, Archives of the National Institute for Medical Research, File 647.

  29. Burgen ASV. Dale and Dudley's discovery of acetylcholine in mammals.Trends in Neurosci 1979;2: xii.

    Google Scholar 

  30. Dale HH.Adventures in Physiology. London: The Wellcome Trust, 1965: 498.

    Google Scholar 

  31. Dale HH, Dudley HW. The presence of histamine and acetylcholine in the spleen of the ox and horse.J Physiol 1929;68: 97–123.

    Google Scholar 

  32. Fühner H. Der toxikologische Nachweis des Physostigmins.Biochem Z 1918;92: 347–54.

    Google Scholar 

  33. Dale HH, Feldberg WS. The chemical transmitter of thje gastric vagus.J Physiol 1934;81: 320–34.

    Google Scholar 

  34. Dale HH, Feldberg WS. The chemical transmitter of the gastric vagus.J Physiol 1934;80: 16-17P.

    Google Scholar 

  35. Feldberg WS, Minz B, Tsudzimura H. The mechanism of the nervous discharge of adrenaline.J Physiol 1934;80: 15–16P.

    Google Scholar 

  36. Feldberg WS, Gaddum JH. The chemical transmitter at synapses in a sympathetic ganglion.J Physiol 1934;80: 12–13P.

    Google Scholar 

  37. Dale HH. Nomenclature of fibres in the autonomic nervous systm and their effects.J Physiol 1934;80: 10–11P.

    Google Scholar 

  38. Burn JH. Sympathetic vasodilator fibres.Physiol Revs 1938;18: 137–53.

    Google Scholar 

  39. Feldberg WS. The early history of synaptic and neuromuscular transmission by acetylcholine: reminiscences of an eye witness. In:The Pursuit of Nature. London: The Physiological Society, 1979: 65–83.

    Google Scholar 

  40. Tansey EM. Neurotransmitters in the cephalopod brain.Comp Biochem Physiol 1979;64C: 173–82.

    Google Scholar 

  41. Eccles JC. Synaptic and neuro-muscular transmission.Physiol Revs 1937;17: 538–55.

    Google Scholar 

  42. Cook JS. ‘Soup’: a scoop for soup.News Phys Sci 1986;1: 206–8.

    Google Scholar 

  43. Letter, Dale to Elliott, 29 June 1958, Royal Society Archives, Sir Henry Dale Papers 93HD.36.4.43.

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Tansey, E.M. Chemical neurotransmission in the autonomic nervous system: Sir Henry Dale and acetylcholine. Clinical Autonomic Research 1, 63–72 (1991). https://doi.org/10.1007/BF01826060

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