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Iodine supplementation restores fertility of sheep exposed to iodine deficiency

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Abstract

The aims of the study were to monitor sheep iodine intake in different sheep breeding farms in Abruzzo and to evaluate the effects of iodine supplementation on ovine fertility. The urinary iodine concentrations (UIC) in animals of 8 out of the 11 breeding farms analyzed were borderline (UIC 100–150 μg/l) or very low (UICФ50 μg/l). Only animals bred in 3 farms showed an adequate iodine intake with a mean UICГ300 μg/l. Animals with very low iodine intake had lower T4 and T3 (plt;0.01) serum levels, compared to those with adequate iodine intake. To investigate the effects of iodine supplementation on ovine fertility, 32 ewes and 20 rams, characterized by low UIC, were randomly divided into 2 groups. One group (16 ewes and 10 rams) received a sc injection of 1 ml of Lipiodol, containing 480 mg of iodine, while the remaining animals were employed as control. This treatment was able to maintain UIC above 300 μg/l for 3 months and to increase T4 and T3 serum levels (plt;0.01). After 9 months, the fertility of control and treated animals was assessed by monitoring the rate of successful matings by ultrasonography. The results showed that 100% of treated ewes mated with treated rams were pregnant vs 37% of the control ewes mated with control rams (p=0.007). The iodine content was 4-fold higher in milk from treated ewes (2393±453 μg/l), compared to controls (675±154 μg/l).

The results demonstrated that iodine supplementation restores fertility of sheep living in iodine deficient areas and may represent a means to achieve a silent iodine prophylaxis of local populations.

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References

  1. WHO, UNICEF, and ICCIDD. Progress towards the elimination of iodine deficiency disorders (IDD). Geneva: WHO, 1999.

    Google Scholar 

  2. Delange F. Endemic cretinism. In: Braverman LE, Utiger RD eds. The thyroid. A fundamental and clinical text. 7th ed. Philadelphia: Lippincott. 1996, 756–67.

    Google Scholar 

  3. Hetzel BS. Iodine deficiency disorders (IDD) and their eradication. Lancet 1983: 1126–9.

    Google Scholar 

  4. Dunn JT, Delange F. Damaged reproduction: the most important consequence of iodine deficiency. J Clin Endocrinol Metab 2001, 86: 2360–3.

    Article  PubMed  CAS  Google Scholar 

  5. Smallridge RC, Ladenson PW. Hypothyroidism in pregnancy: consequences to neonatal health. J Clin Endocrinol Metab 2001, 86: 2349–53.

    Article  PubMed  CAS  Google Scholar 

  6. Jannini EA, Ulisse S, D’Armiento M. Thyroid hormone and male gonadal function. Endocr Rev 1995, 16: 443–59.

    PubMed  CAS  Google Scholar 

  7. Longcope C. The male and female reproductive systems in thyrotoxicosis. In: Ingbar SH, Bravermann LE eds. The Thyroid. 7th ed. Philadelphia: Lippincott. 1996, 849–52.

    Google Scholar 

  8. Wilansky DL, Greisman B. Early hypothyroidism in patients with menorrhagia. Am J Obstet Gynecol 1989, 160: 673–7.

    Article  PubMed  CAS  Google Scholar 

  9. Higham JM, Shaw RW. The effect of thyroxine replacement on menstrual blood loss in a hypothyroid patient. Br J Obstet Gynecol 1992, 99: 695–6.

    Article  CAS  Google Scholar 

  10. Erturth EV, Hedner P. Increased plasma gonadotropin levels in spontaneous hyperthyroidism reproduced by thyroxine but not by triiodothyronine administration to normal subjects. J Clin Endocr Metab 1987, 64: 698–703.

    Article  Google Scholar 

  11. Wakim NG, Ramani N, Rao V. Triiodothyronine receptors in porcine granulosa cells. Am J Obstet Gynecol 1987, 156: 237–40.

    Article  PubMed  CAS  Google Scholar 

  12. Wakim AN, Polizotto SL, Buffo MJ, Marreo MA, Burholt DR. Thyroid hormones in human follicular fluid and thyroid hormone receptors in human granulosa cells. Fertil Steril 1993, 59: 1187–90.

    PubMed  CAS  Google Scholar 

  13. Chan WK, Tan CH. Inhibition of follicle-stimulating hormone induction of aromatase activity in porcine granulosa cells by thyroxine and triiodothyronine. Endocrinology 1986, 119: 2353–9.

    Article  PubMed  CAS  Google Scholar 

  14. Goldman S, Dirnfeld M, Abramovici H, Kraiem Z. Triiodothyronine (T3) modulates hCG-regulated progesterone secretion, cAMP accumulation and DNA content in cultured human luteinized granulosa cells. Mol Cell Endocrinol 1993, 96: 125–31.

    Article  PubMed  CAS  Google Scholar 

  15. Cecconi S, Rucci N, Scaldaferri ML, et al. Thyroid hormone effects on mouse oocyte maturation and granulosa cell aromatase activity. Endocrinology 1999, 140: 1783–8.

    PubMed  CAS  Google Scholar 

  16. Zhang SS, Carrillo AJ, Darling DS. Expression of multiple thyroid hormone receptor mRNA in human oocytes, cumulus cells, and granulosa cells. Mol Hum Reprod 1997, 3: 555–62.

    Article  PubMed  CAS  Google Scholar 

  17. Dunn JT. Extensive personal experience. Seven deadly sins in confronting endemic iodine deficiency and how to avoid them. J Clin Endocr Metab 1996, 81: 1332–5.

    PubMed  CAS  Google Scholar 

  18. Aghini-Lombardi F, Antonangeli L, Vitti P, Pinchera A. Status of iodine nutrition in Italy. In: Delange F, Dunn JT, Glinoer D eds. Iodine deficiency in Europe. A continuing concern. New York: Plenum Press. 1993, 403–8.

    Chapter  Google Scholar 

  19. Romano R, Jannini EA, Pepe M, et al. The effects of iodoprophylaxis on thyroid size during pregnancy. Am J Obstet Gynecol 1991, 164: 482–5.

    Article  PubMed  CAS  Google Scholar 

  20. Benotti J, Benotti N, Pino S, Gardyna H. Determination of total iodine in urine, stool, diets, and tissue. Clin Chem 1965, 11: 932–6.

    PubMed  CAS  Google Scholar 

  21. Konno N, Yuri K, Miura K, Kumagai M, Murakami S. Clinical evaluation of the iodide/creatine ratio of casual urine samples as an index of daily iodide excretion in a population study. Endocr J 1993, 40: 163–9.

    Article  PubMed  CAS  Google Scholar 

  22. Potter BJ, McIntosh GH, Mano MT, et al. The effect of maternal thyroidectomy prior to conception on foetal brain development in sheep. Acta Endocr 1986, 112: 93–9.

    PubMed  CAS  Google Scholar 

  23. Mano MT, Potter BJ, Belling GB, et al. The effect of thyroxine, 3,5-dimethyl-3’-isopropyl-L-thyronine and iodized oil of fetal brain development in the iodine-deficient sheep. Acta Endocr (Copenh) 1989, 121: 7–15.

    CAS  Google Scholar 

  24. Potter BJ, Jones GB, Buckley RA, Belling GB, McIntosh GH, Hetzel BS. Production of severe iodine deficiency in sheep using a prepared low-iodine diet. Aust J Biol Sci 1980, 33: 53–61.

    PubMed  CAS  Google Scholar 

  25. Sokkar SM, Soror AH, Ahmed YF, Ezzo OH, Hamouda MA. Pathological and biochemical studies on experimental hypothyroidism in growing lambs. J Vet Med B Infect Dis Vet Public Health 2000, 47: 641–52.

    Article  PubMed  CAS  Google Scholar 

  26. Kategile JA, Mgongo FO, Frederiksen JH. The effect of iodine supplementation on the reproductive rates of goats and sheep. Nord Vet Med 1978, 30: 30–6.

    PubMed  CAS  Google Scholar 

  27. Potter BJ, Mano MT, Belling GB, et al. Retarded fetal brain development resulting from severe dietary iodine deficiency in sheep. Neuropath Appl Neurobiol 1982, 8: 303–13.

    Article  CAS  Google Scholar 

  28. Potter BJ, Mano MT, Belling GB, et al. Restoration of brain growth in fetal sheep after iodized oil administration to pregnant iodine-deficient ewes. J Neurol Sci 1984, 66: 15–26.

    Article  PubMed  CAS  Google Scholar 

  29. Kirkland JL, Mukku V, Hardy M, Young R. Evidence for triiodothyronine receptors in human endometrium and myometrium. Am J Obstet Gynecol 1983, 146: 380–3.

    PubMed  CAS  Google Scholar 

  30. Tazebay UH, Wapnir IL, Levy O, et al. The mammary gland iodide transporter is expressed during lactation and in breast cancer. Nat Med 2000, 6: 859–60.

    Article  CAS  Google Scholar 

  31. Smyth PPA, Hetherton AMT, Smith DF, Radcliff M, O’Herlihy C. Maternal iodine status and thyroid volume during pregnancy: correlation with neonatal iodine intake. J Clin Endocrinol Metab 1997, 82: 2840–3.

    Article  PubMed  CAS  Google Scholar 

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Correspondence to Massimino D’Armiento.

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The first two Authors provided an equal contribution to this work

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Ferri, N., Ulisse, S., Aghini-Lombardi, F. et al. Iodine supplementation restores fertility of sheep exposed to iodine deficiency. J Endocrinol Invest 26, 1081–1087 (2003). https://doi.org/10.1007/BF03345254

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