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Effects of afternoon injections of O-acetyl-5-methoxytryptophol, melatonin or 5-methoxytryptophol in female syrian hamsters

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Summary

Female Syrian hamsters were maintained in a 14∶10 light: dark photoperiod (lights on 6 a.m.) and injected each afternoon between 4 p.m. and 6 p.m. with diluent or with 25μg melatonin, 0-acetyl-5-methoxytryptophol (aML) or 5-methoxytryptophol (ML). After 7 or 12 weeks of treatment, only the melatonin-treated hamsters were acyclic. Gross inspection of their ovaries revealed that they were smooth, brown, and devoid of corpora lutea and large follicles. Progesterone levels of the acyclic animals were midway between the high levels observed during estrus and postestrus and the low levels observed on cycle days 2 and 3. Additionally, the melatonin-treated hamsters had significantly reduced uterine weights and pituitary and plasma levels of prolactin. Hamsters treated with aML had significantly lower pituitary prolactin and plasma and pituitary levels of LH only at the 7 week timepoint. ML-treated hamsters had lower pituitary prolactin levels also at 7 weeks. The endocrine changes wrought by injections of aML and ML, however, were insufficient to ultimately affect vaginal cyclicity. In conclusion, it would appear that at the dose used and the time administered melatonin is the more active of the indoles tested in the female hamster, at least in terms of alterations in reproductive physiology.

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References

  • Donofrio RJ, Reiter RJ, Sorrentino S, Blask DE, Talbot JA (1973/1974) A method for measurement of prolactin in the hamster by means of radioimmunoassay. Neuroendocrinology 13: 74–91

    Google Scholar 

  • Farrell G, Powers D, Otani T (1968) Inhibition of ovulation in the rabbit: seasonal variation and the effects of indoles. Endocrinology 83: 599–603

    PubMed  Google Scholar 

  • Fraschini F, Collu R, Martini L (1971) Mechanisms of inhibitory action of pineal principles on gonadotrophin secretion. In: Wolstenholme GEW, Knight J (eds) The pineal gland. Churchill, New York, pp 259–272

    Google Scholar 

  • Hipkin LJ (1970) Effect of 5-methoxytryptophol and melatonin on uterine weight responses to human chorionic gonadotrophin. J Endocrinol 48: 287–288

    PubMed  Google Scholar 

  • McIsaac WM, Taborsky RJ, Farrell G (1964) 5-methoxytryptophol: effect on estrus and ovarian weight. Science 145: 63–64

    PubMed  Google Scholar 

  • Orsini MW (1961) The external vaginal phenomena characterizing the stages of the estrous cycle, pregnancy, pseudopregnancy, lactation and the anestrous hamster,Mesocricetus auratus. Proc Anim Care Panel 11: 193–206

    Google Scholar 

  • Reiter RJ, Richardson BA, Vaughan, MK, Johnson LY (1981) Pineal actions and mechanisms in reproductive physiology. Jikeikai Med J 28: 35–46

    Google Scholar 

  • Richardson BA, Vaughan MK, Brainard GC, Huerter JJ, de los Santos R, Reiter RJ (1981) Influence of morning melatonin injection on the antigonadotrophic effects of afternoon melatonin administration in male and female hamsters. Neuroendocrinology 33: 112–117

    PubMed  Google Scholar 

  • Richardson BA, King TS, Petterborg LJ, Vaughan MK, Reiter RJ (1982) The influence of large doses of melatonin administered in the afternoon on the neuroendocrine-reproductive system of female Syrian hamsters maintained in a long or short photoperiod. Biomed Res 3: 61–69

    Google Scholar 

  • Richardson BA, Vaughan, MK, Petterborg LJ, Johnson LY, King TS, Smith I, Reiter RJ (1983) Natural and synthetic analogues of melatonin and related compounds. I. Effects on the reproductive system of the male Syrian hamster. J Neural Transm 56: 187–197

    PubMed  Google Scholar 

  • Sackman JW, Little JC, Rudeen PK, Waring PJ, Reiter RJ (1977) The effects of pineal indoles given late in the light period on reproductive organs and pituitary prolactin levels in male golden hamsters. Horm Metab Res 8: 84–92

    Google Scholar 

  • Smith I, Larson-Carter DL, Laud CA, Leone RM, Silman RE, Carter SJ, Francis P, Mullen PE, Hooper RJL, Finnie MDA (1979) 0-acetyl-5-methoxytryptophol — tentative identification in pineal glands. Prog Brain Res 52: 259–261

    PubMed  Google Scholar 

  • Smith I, Francis P, Leone RM, Mullen PE (1980) Identification of 0-acetyl-5-methoxytryptophenol (sic) in the pineal gland by gas chromatographymass spectrometry. Biochem J 185: 537–540

    PubMed  Google Scholar 

  • Taborsky RG, Delvigs P (1966) Synthesis of some substituted tryptophols of possible physiological significance and a study with 3-(2-acetoxyethyl)-5-methoxyindole (5-methoxytryptophol-0-acetate) on sexual maturation. J Med Chem 9: 251–254

    PubMed  Google Scholar 

  • Trakulrungsi C, Reiter RJ, Trakulrungsi WK, Vaughan MK, Waring-Ellis PJ (1979) Interaction of daily injections and subcutaneous reservoirs of melatonin on the reproductive physiology of female Syrian hamsters. Acta Endocrinol 91: 59–69

    PubMed  Google Scholar 

  • Vaughan MK (1981) The pineal gland — a survey of its antigonadotrophic substances and their actions. Int Rev Physiol 24: 41–95

    PubMed  Google Scholar 

  • Vaughan MK, Reiter RJ, Vaughan GM, Bigelow L, Altschule MD (1972) Inhibition of compensatory ovarian hypertrophy in the mouse and vole: a comparison of Altschule's pineal extract, pineal indoles, vasopressin and oxytocin. Gen Comp Endocrinol 18: 372–377

    PubMed  Google Scholar 

  • Vaughan MK, Vaughan GM, Reiter RJ (1976) Inhibition of human chorionic gonadotrpphin-induced hypertropy of the ovaries and uterus in immature mice by some pineal indoles, 6-hydroxymelatonin and arginine vasotocin. J Endocrinol 68: 397–400

    PubMed  Google Scholar 

  • Vaughan MK, Herbert DC, Brainard GC, Johnson LY, Zeagler JW, Reiter RJ (1980) A comparison of blinding and afternoon melatonin injections on the histology of the reproductive organs, pineal ultrastructure and gonadotrophin hormone levels in female Syrian hamsters. Adv Biosci 29: 65–75

    Google Scholar 

  • Vaughan MK, Richardson BA, Petterborg LJ, Vaughan GM, Reiter RJ (1984) Injections and/or implants of 6-chloromelatonin and melatonin: effects on plasma thyroid hormones in male and female Syrian hamsters. Biomed Res 5: 413–418

    Google Scholar 

  • Vaughan MK, Richardson BA, Johnson LY, Petterborg LJ, Powanda MC, Reiter RJ, Smith I (1983) Natural and synthetic analogues of melatonin and related compounds. II. Effects on plasma thyroid hormones and cholesterol in male Syrian hamsters. J Neural Transm 56: 279–291

    PubMed  Google Scholar 

  • Vaughan MK, Holtorf AP, Little JC, Champney TH, Reiter RJ (1985) A survey of pineal indoles and analogues which affect prolactin secretion in the adult male Syrian hamster. In: Mac Leod RM, Thorner MO, Scapgnini V Fidia (eds) Prolactin-basic and clinical correlates. Lavinia Press, Padova (Research series, vol 1, pp 143–150)

    Google Scholar 

  • Vriend J, Reiter RJ (1977) Free thyroid index in normal, melatonin-treated and blind hamsters. Horm Metab Res 9: 231–234

    PubMed  Google Scholar 

  • Vriend J, Richardson BA, Vaughan MK, Johnson LY, Reiter RJ (1982) Effects of melatonin on thyriod physiology of female hamsters. Neuroendocrinology 35: 79–85

    PubMed  Google Scholar 

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This work supported by NSF grant No. PCM 8410592 and the Abilene Christian University Research Council. This paper uses the nomenclature for indoles proposed by Dr. I. Smith.

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Little, J.C., Vaughan, M.K., Haider, N. et al. Effects of afternoon injections of O-acetyl-5-methoxytryptophol, melatonin or 5-methoxytryptophol in female syrian hamsters. J. Neural Transmission 66, 291–301 (1986). https://doi.org/10.1007/BF01260921

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  • DOI: https://doi.org/10.1007/BF01260921

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