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The influence of noradrenaline on the process of protein/peptide secretion in the mammalian pineal organ

Comparative in vitro studies

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Summary

From studies conducted with the pineal organ of the mouse, it was ascertained that for the in vitro investigation of secretory processes (synthesis and release) of proteic/peptidic compound(s), a culture time of 5 to 14 days is optimal. A 5-day organ culture was therefore chosen to study the effects of noradrenaline on these secretory processes.

Addition of noradrenaline to the culture medium provokes, in pineal explants of the normal mouse and the “eyeless” mouse, an inhibition of the secretory process, characterized by the formation of granular vesicles. In the hamster and rat, however, opposite results were obtained. Moreover, it appears that noradrenaline, at least in the rat, may also be involved in the regulation of the ependymal-like secretory process.

The present results indicate clearly that noradrenaline (thus, the sympathetic innervation) is implicated in the regulation of the production of proteic/peptidic hormonal agents, but that the effect of this neurotransmitter is species-specific. This could explain the numerous contradictory results reported in the literature.

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References

  • Ariëns Kappers J (1978) Localization of indoleamine and protein synthesis in the mammalian pineal gland. J Neural Transm Suppl 13:13–24

    Google Scholar 

  • Ariëns Kappers J, Pévet P (1979) The pineal gland of vertebrates including man. Progr Brain Res 52. Elsevier/North-Holland Biomed Press, Amsterdam

    Google Scholar 

  • Balemans MGM (1979) Indole metabolism in the pineal gland of the rat. Some regulatory aspects. In: Ariëns Kappers J, Pévet P (eds) The pineal gland of vertebrates including man: Prog Brain Res 52. Elsevier/North-Holland Biomed Press, Amsterdam, p 221–229

    Google Scholar 

  • Balemans MGM (1981) Indole metabolism in the pineal gland, the Harderian gland and the retina of mammals. In: Oksche A, Pévet P (eds) The pineal organ. Photobiology — biochronometry — endocrinology. Elsevier/North-Holland Biomed Press, Amsterdam, pp 261–279

    Google Scholar 

  • Balemans MGM, Pévet P, Legerstee WC, Nevo E (1980) Preliminary investigations on melatonin and 5-methoxytryptophol synthesis in the pineal, retina and Harderian gland of the mole rat and in the pineal of the mouse “eyeless”. J Neural Transm 49:247–255

    Google Scholar 

  • Benson B, Krasovich M (1977) Circadian rhythm in the number of granulated vesicles in the pinealocytes of mice: effect of sympathectomy and melatonin treatment. Cell Tissue Res 184:499–506

    Google Scholar 

  • Clabough JW (1970) Ultrastructural features of the pineal gland in normal and light deprived golden hamsters. Z Zellforsch 114:151–164

    Google Scholar 

  • Collin JP (1979) Recent advances in pineal cytochemistry. Evidence of the production of indoleamines and proteinaceous substances by rudimentary photoreceptor cells and pinealocytes of amniota. In: Ariëns Kappers J, Pévet P (eds) The pineal gland of vertebrates including man. Prog Brain Res 52. Elsevier/North-Holland Biomed Press, Amsterdam, p 271–296

    Google Scholar 

  • Collin JP, Oksche A (1981) Structural and functional relationships in the nonmammalian pineal organ. In: Reiter RJ (ed) The pineal gland, Vol I, Anatomy and biochemistry. CRC Press Inc, Boca Raton, USA, pp 27–68

    Google Scholar 

  • Hoffmann K (1979) Photoperiod, pineal, melatonin and reproduction in hamsters. In: Ariëns Kappers J, Pévet P (eds) The pineal gland of vertebrates including man. Progr Brain Res 52, Elsevier/North-Holland Biomed Press, Amsterdam, p 397–415

    Google Scholar 

  • Hoffmann K (1981) Photoperiodic function of the mammalian pineal organ. In: Oksche A, Pévet P (eds) The pineal organ: Photobiology — biochronometry — endocrinology. Elsevier/North-Holland Biomed Press, Amsterdam, p 123–138

    Google Scholar 

  • Ito T, Matsushima S (1968) Electronmicroscopic observations on the mouse pineal with particular emphasis on its secretory nature. Arch Histol Jpn 30:1–15

    Google Scholar 

  • Karasek M (1971) Ultrastructure of the epiphysis in white rats under normal conditions and after hypophysectomy. Polish Endocrinol 22:13–26

    Google Scholar 

  • Karasek M (1974) Ultrastructure of rat pineal gland in organ culture; influence of norepinephrine, dibutyryl cyclic adenosine 3–5 monophosphate and adenohypophysis. Endokrinologie 64:106–114

    Google Scholar 

  • Karasek M, Pawlikowski M, Kappers J Ariëns, Stephien H (1976) Influence of castration followed by administration of LH-RH on the ultrastructure of rat pinealocytes. Cell Tissue Res 167:325–339

    Google Scholar 

  • Klein DC, Yuwiler A (1973) Beta-adrenergic regulation of indole metabolism in the pineal gland. In: Usdin E, Snyder S (eds) Frontiers in catecholamine research. Pergamon Press, London, p 321–324

    Google Scholar 

  • Möller W (1981) Cytobiology of the pineal organ in tissue culture. In: Oksche A, Pévet P (eds) The pineal organ: Photobiology — biochronometry — endocrinology. Elsevier/North-Holland Biomed Press, Amsterdam, p 169–186

    Google Scholar 

  • Oksche A, Pévet P, eds (1981) The pineal organ: Photobiology — biochronometry endocrinology. Elsevier/North-Holland Biomed Press, Amsterdam

    Google Scholar 

  • Pévet P (1979) Secretory processes in the mammalian pinealocytes under natural and experimental conditions. In: Ariëns Kappers J, Pévet P (eds) The pineal gland of vertebrates including man. Progr Brain Res 52, Elsevier/North-Holland Biomed Press, Amsterdam, pp 149–194

    Google Scholar 

  • Pévet P (1981a) Ultrastructure of the mammalian pinealocyte. In: Reiter RJ (ed) The pineal gland, Vol I, Anatomy and biochemistry. CRC Press, Boca Raton, Florida, USA, pp 121–154

    Google Scholar 

  • Pévet P (1981b) Peptides in the pineal gland of vertebrates: ultrastructural, histochemical, immunocytochemical and radioimmunological aspects. In: Oksche A, Pévet P (eds) The pineal organ: Photobiology — biochronometry — endocrinology. Elsevier/North-Holland Biomed Press, Amsterdam, pp 211–235

    Google Scholar 

  • Reiter RJ (1980) The pineal and its hormones in the control of reproduction in mammals. Endocr Rev 2:109–131

    Google Scholar 

  • Reiter RJ (1981) The pineal gland. Vol 1: Anatomy and biochemistry. CRC Press, Boca Raton, Florida, USA

    Google Scholar 

  • Reynolds ES (1963) The use of lead citrate at high pH as an electron-opaque stain in electron microscopy. J Cell Biol 17:208–212

    Article  CAS  PubMed  Google Scholar 

  • Romijn HJ, Gelsema Aj (1976) Electron microscopy of the rabbit pineal organ in vitro. Evidence of norepinephrine-stimulated secretory activity of the Golgi apparatus. Cell Tissue Res 172:365–377

    Google Scholar 

  • Sheridan MN, Reiter Rj (1968) The fine structure of the hamster pineal gland. Am J Anat 122:357–376

    Google Scholar 

  • Upson RH, Benson B (1977) Effects of blinding on the ultrastructure of mouse pinealocytes with particular emphasis on the dense cored vesicles. Cell Tissue Res 183:491–498

    Google Scholar 

  • Venable JM, Coggeshall W (1965) Simplified lead stain for use in electron microscopy. J Cell Biol 25:407–408

    Article  CAS  PubMed  Google Scholar 

  • Vollrath L (1981) The pineal organ. In: Handbuch der Mikroskopischen Anatomie des Menschen. VI/7. Springer-Verlag, Berlin Heidelberg New York

    Google Scholar 

  • Wurtman RJ, Axelrod J (1966) A 24-hour rhythm in the content of norepinephrine in the pineal and salivary gland of the rat. Life Sci 5:655–669

    Google Scholar 

  • Wurtman RJ, Axelrod J, Sedvall G, Moore RY (1967) Photic and neural control of the 24-hour norepinephrine rhythm in the rat pineal gland. J Pharmacol Exp Ther 157:487–493

    Google Scholar 

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Haldar-Misra, C., Pévet, P. The influence of noradrenaline on the process of protein/peptide secretion in the mammalian pineal organ. Cell Tissue Res. 224, 33–44 (1982). https://doi.org/10.1007/BF00217264

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