CC..png    

Legal and postal addresses of the publisher: office 1336, 17 Naberezhnaya Severnoy Dviny, Arkhangelsk, 163002, Russian Federation, Northern (Arctic) Federal University named after M.V. Lomonosov

Phone: (818-2) 21-61-21
E-mail: vestnik_med@narfu.ru
https://vestnikmed.ru/en/

ABOUT JOURNAL

Ratios of the Hormones of the Pituitary–Thyroid Axis, Dopamine and cAMP in Residents of the European and Asian North of Russia. P. 140–150

Версия для печати

Section: Physiology

UDC

[612.43+612.018](98)(045)

DOI

10.17238/issn2542-1298.2019.7.2.140

Authors

Irina N. Gorenko*, Elena V. Tipisova*, Viktoriya A. Popkova*, Aleksandra E. Elfimova*
*N. Laverov Federal Center for Integrated Arctic Research, Russian Academy of Sciences (Arkhangelsk, Russian Federation)
Corresponding author: Irina Gorenko, address: prosp. Lomonosova 249, 163000, Arkhangelsk, Russian Federation; e-mail: pushistiy-86@mail.ru

Abstract

Time and efficiency of cold adaptation depend on the function of the thyroid gland and of the sympathoadrenal system. In order to evaluate the impact of chronic cold exposure on thyroid activity and the levels of dopamine in the human blood, we conducted a comparative population-based study involving residents of the European (n = 355) and Asian (n = 192) North of Russia. We determined the serum levels of thyroid-stimulating hormone (TSH) and total and free fractions of iodothyronines, as well as plasma levels of dopamine and cyclic adenosine monophosphate (cAMP). To assess the thyroid function and the effect of hormones on the tissues, the integral thyroid index ((FT3+FT4)/TSH) and the index of peripheral conversion (FT3/FT4) were calculated. The proportion of people with high dopamine values in the blood was greater among residents of the Asian North (25 % against 11 %; p = 0.001), experiencing more extreme climatic and geographical conditions of the Arctic. At the same time, maximum dopamine levels were more common in the male populations of the analysed areas than in the female ones. The percentage of people with undetectable dopamine values, on the contrary, was larger among residents of the European North (30 % against 10 %; p < 0.001). The inhabitants of the Asian North, both men and women, had higher thyroid activity as indicated by higher levels of thyroxin, while lower levels of free thyroxin and elevated free triiodothyronine level may indicate increased peripheral conversion of iodothyronines, which correlates with the need to adapt to more extreme environmental factors. At the same time, there were no significant differences in the values of cAMP or FT3/FT4 and (FT3+FT4)/TSH ratios between the European and Asian North groups. Reference levels of dopamine in the European North residents had higher correlation with the parameters of the pituitary-thyroid system. When it comes to the Asian North, a weak stimulating effect of dopamine on the thyroid gland activity was revealed only in the female population, whose dopamine levels were close to the reference values.

Keywords

dopamine, thyroid hormones, thyroid-stimulating hormone, cAMP, FT3/FT4 ratio, (FT3+FT4)/ TSH ratio, Arctic zone of the Russian Federation
Download (pdf, 2.4MB )

References

1. Lutsenko M.T. Morfologicheskie i neyrogumoral’nye mekhanizmy adaptatsii dykhatel’noy sistemy u lits, prozhivayushchikh v usloviyakh Severo-Vostoka Rossii [Morphological and Neurohumoral Mechanisms of Respiratory System Adaptation in People Living in the North-East of Russia]. 13-y Mezhdunarodnyy kongress po pripolyarnoy meditsine [13th International Congress on Circumpolar Medicine]. Novosibirsk, 2006, p. 170.
2. Butova O.A., Okolito N.N., Grishko E.A. Sopostavimost’ chastotnykh sostavlyayushchikh spektral’nogo analiza kardioritma i urovnya dofamina u voennosluzhashchikh federal’nykh okrugov Rossiyskoy Federatsii v usloviyakh Stavropol’ya [The Quotient Compose Matching of Spectrum Analysis of Cardio Cycle and Dopamine Level in Military People in the Stavropol Region]. Elektronnyy sbornik nauchnykh trudov “Zdorov’e i obrazovanie v XXI veke”, vol. 12, no. 7, pp. 332–333. Available at: https://cyberleninka.ru/article/n/sopostavimost-chastotnyh-sostavlyayuschihspektralnogo-analiza-kardioritma-i-urovnya-dofamina-u-voennosluzhaschih-federalnyh-okrugov (accessed: 27 February 2018).
3. Maslov L.N., Vychuzhanova E.A. The Role of the Sympathoadrenal System in Adaptation to Cold. Neurosci. Behav. Physiol., 2016, vol. 46, no. 5, pp. 589–600.
4. Harinath K., Malhotra A.S., Pal K., Prasad R., Kumar R., Sawhney R.C. Autonomic Nervous System and Adrenal Response to Cold in Man at Antarctica. Wilderness Environ. Med., 2005, vol. 16, no. 2, pp. 81–91.
5. Demin D.B. Stanovlenie bioelektricheskoy aktivnosti mozga podrostkov, prozhivayushchikh v razlichnykh po stepeni proyavleniya zobnoy endemii rayonakh Evropeyskogo Severa [Brain Bioelectric Activity Forming in Adolescents Living in Different Endemic Goiter Area of European North]. Vestnik RAMN, 2013, vol. 68, no. 7, pp. 32–35.
6. Andersen S., Kleinschmidt K., Hvingel B., Laurberg P. Thyroid Hyperactivity with High Thyroglobulin in Serum Despite Sufficient Iodine Intake in Chronic Cold Adaptation in an Arctic Inuit Hunter Population. Eur. J. Endocrinol., 2012, vol. 166, no. 3, pp. 433–440.
7. Levy S.B., Leonard W.L., Tarskaia L.A., Klimova T., Fedorova V.I., Baltakhinova M.E., Krivoshapkin V.G., Snodgrass J.J. Seasonal and Socioeconomic Influences on Thyroid Function Among the Yakut (Sakha) of Eastern Siberia. Am. J. Hum. Biol., 2013, vol. 25, no. 6, pp. 814–820.
8. Hassi J., Sikkilä K., Ruokonen A., Leppäluoto J. The Pituitary-Thyroid Axis in Healthy Men Living Under Subarctic Climatological Conditions. J. Endocrinol., 2001, vol. 169, no. 1, pp. 195–203.
9. Alenikova A.E., Tipisova E.V. Analiz izmeneniy gormonal’nogo profilya muzhchin g. Arkhangel’ska v zavisimosti ot faktorov pogody [Analysis of the Changes in Male Hormone Profile Depending on Weather Conditions in Arkhangelsk]. Vestnik Severnogo (Arkticheskogo) federal’nogo universiteta. Ser.: Mediko-biologicheskie nauki, 2014, no. 3, pp. 5–15.
10. Kelly M.A., Rubinstein M., Asa S.L., Zhang G., Saez C., Bunzow J.R., Allen R.G., Hnasko R., Ben-Jonathan N., Grandy D.K., Low M.J. Pituitary Lactotroph Hyperplasia and Chronic Hyperprolactinemia in Dopamine D2 Receptor-Deficient Mice. Neuron, 1997, vol. 19, no. 1, pp. 103−113.
11. Haugen B.R. Drugs That Suppress TSH or Cause Central Hypothyroidism. Best Pract. Res. Clin. Endocrinol. Metab., 2009, vol. 23, no. 6, pp. 793–800.
12. Sapronov N.S., Fedotova Yu.O. Gormony gipotalamo-gipofizarno-ovarial’noy sistemy i mozg [Hormones of the Hypothalamic-Pituitary-Ovarian Axis and the Brain]. St. Petersburg, 2009. 592 p.
13. Santos N.C., Costa P., Ruano D., Macedo A., Soares M.J., Valente J., Pereira A.T., Azevedo M.H., Palha J.A. Revisiting Thyroid Hormones in Schizophrenia. J. Thyroid. Res., 2012. Art. no. 569147. Available at: https://www.ncbi. nlm.nih.gov/pmc/articles/PMC3321576 (accessed: 27 February 2018).
14. Crocker A.D., Overstreet D.H., Crocker J.M. Hypothyroidism Leads to Increased Dopamine Receptor Sensitivity and Concentration. Pharmacol. Biochem. Behav., 1986, vol. 24, no. 6, pp. 1593–1597.
15. Melander A. Aminergic Regulation of Thyroid Activity: Importance of the Sympathetic Innervation and of the Mass Cells of the Thyroid Gland. Acta Med. Scand., 1977, vol. 201, pp. 257–262.
16. Obregon M.J., Mills I., Silva J.E, Larsen P.R. Catecholamine Stimulation of Iodothyronine 5′-Deiodinase Activity in Rat Dispersed Brown Adipocytes. Endocrinology, 1987, vol. 120, no. 3, pp. 1069–1072.
17. Levey G.S., Klein I. Catecholamine-Thyroid Hormone Interactions and the Cardiovascular Manifestations of Hyperthyroidism. Am. J. Med., 1990, vol. 88, no. 6, pp. 642–646.
18. Roelfsema F., Veldhuis J.D. Thyrotropin Secretion Patterns in Health and Disease. Endocr. Rev., 2013, vol. 34, no. 5, pp. 619–657.
19. Lewis B.M., Dieguez C., Lewis M.D., Scanlon M.F. Dopamine Stimulates Release of Thyrotrophin-Releasing Hormone from Perfused Intact Rat Hypothalamus via Hypothalamic D2-Receptors. J. Endocrinol., 1987, vol. 115, no. 3, pp. 419–424.
20. Pereira J.C., Pradella-Hallinan M., de Lins Pessoa H. Imbalance Between Thyroid Hormones and the Dopaminergic System Might Be Central to the Pathophysiology of Restless Legs Syndrome: A Hypothesis. Clinics (Sao Paulo), 2010, vol. 65, no. 5, pp. 548–554.
21. Yur’ev Yu.Yu., Tipisova E.V. Vozrastnye aspekty endokrinnogo statusa u muzhchin – postoyannykh i priezzhikh zhiteley goroda Arkhangel’ska [Age Aspects of Endocrine Status in Men Permanent and Newly Arrived Residents of City of Arkhangelsk]. Ekologiya cheloveka, 2009, no. 7, pp. 15–19.
22. Tipisova E.V., Molodovskaya I.N., Osadchuk L.V. Vozrastnye aspekty izmeneniya urovnya gormonov sistem gipofiz–shchitovidnaya zheleza i gipofiz–gonady u zhiteley Arkhangel’ska [The Age-Related Aspects of Changes in Hormones’ Level in Hypophysis-Thyroid and Hypophysis-Gonads Systems in Residents of Arkhangelsk]. Klinicheskaya laboratornaya diagnostika, 2011, no. 11, pp. 19–22.
23. Popkova V.A. Vozrastnye osobennosti endokrinnogo statusa muzhchin – rabotnikov tsellyulozno-bumazhnogo kombinata g. Arkhangel’ska [Age-Related Features of the Endocrine Status in Arkhangelsk Pulp-and-Paper Industry Workers]. Ekologiya cheloveka, 2009, no. 7, pp. 37–41.
24. Laurberg P. Mechanisms Governing the Relative Proportions of Thyroxine and 3,5,3’-Triiodothyronine in Thyroid Secretion. Metabolism, 1984, vol. 33, no. 4, pp. 379–392.
25. Selmer C., Olesen J.B., Hansen M.L., von Kappelgaard L.M., Madsen J.C., Hansen P.R., Pedersen O.D., Faber J., Torp-Pedersen C., Gislason G.H. Subclinical and Overt Thyroid Dysfunction and Risk of All-Cause Mortality and Cardiovascular Events: A Large Population Study. J. Clin. Endocrinol. Metab., 2014, vol. 99, no. 7, pp. 2372–2382.
26. Burger A.G. Environment and Thyroid Function. J. Clin. Endocrinol. Metab., 2004, vol. 89, no. 4, pp. 1526–1528.
27. Sánchez E., Uribe R.M., Corkidi G., Zoeller R.T., Cisneros M., Zacarias M., Morales-Chapa C., Charli J.L., Joseph-Bravo P. Differential Responses of Thyrotropin-Releasing Hormone (TRH) Neurons to Cold Exposure or Suckling Indicate Functional Heterogeneity of the TRH System in the Paraventricular Nucleus of the Rat Hypothalamus. Neuroendocrinology, 2001, vol. 74, no. 6, pp. 407–422.



Make a Submission


INDEXED IN: 

DOAJ_logo-colour.png

Elibrary.ru

logotype.png

infobaseindex

Логотип.png




Лань

OTHER NArFU JOURNALS: 

Vestnik of NArFU.
Series "Humanitarian and Social Sciences"

Forest Journal 
Лесной журнал 

Arctic and North