Sulfate-chloride sodium-magnesium mineral waters modulate neuroendocrine-immune complex and metabolism in healthy female rats

Background. Earlier in an experiment on rats, we showed that newly created sulfate-chloride sodium-magnesium drinking mineral waters of Truskavets’ spa has a significant modulating effect on the parameters of metabolism and the autonomic nervous, endocrine and immune systems. In this study, we comb...

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Main Authors: Daria Popovych, Nataliya Badiuk, Myroslava Hrytsak, Sofiya Ruzhylo, Oksana Mel’nyk, Xawery Zukow
Format: Article
Language:English
Published: Kazimierz Wielki University 2021-12-01
Series:Journal of Education, Health and Sport
Subjects:
Online Access:https://apcz.umk.pl/JEHS/article/view/37593
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author Daria Popovych
Nataliya Badiuk
Myroslava Hrytsak
Sofiya Ruzhylo
Oksana Mel’nyk
Xawery Zukow
author_facet Daria Popovych
Nataliya Badiuk
Myroslava Hrytsak
Sofiya Ruzhylo
Oksana Mel’nyk
Xawery Zukow
author_sort Daria Popovych
collection DOAJ
description Background. Earlier in an experiment on rats, we showed that newly created sulfate-chloride sodium-magnesium drinking mineral waters of Truskavets’ spa has a significant modulating effect on the parameters of metabolism and the autonomic nervous, endocrine and immune systems. In this study, we combined data obtained on the same animals, in line with the concepts of neuroendocrine-immune complex and functional-metabolic continuum. Materials and Methods. Experiment was performed on 50 healthy female Wistar rats 230-290 g divided into 4 groups. Animals of the first group remained intact, using tap water from drinking ad libitum. Rats of the second (control) group for 6 days administered a single tap water through the tube at a dose of 1,5 mL/100 g of body mass. The rats of the main groups received the water "Myroslava" and "Khrystyna". The object of the study were the metabolic, neuro-endocrine and immune parameters. Results. The method of discriminant analysis revealed 31 parameters, according to which all four groups of animals differ from each other. Classification accuracy is 100%. Conclusion. The newly created sulfate-chloride sodium-magnesium drinking mineral waters of Truskavets’ spa has both similar and specific effects on the neuroendocrine-immune complex and metabolism at healthy old female rats with weekly use. This provides a basis for preclinical studies.
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spelling doaj.art-19ce7d4c664246508eedfd964b4e8ea12022-12-22T02:07:22ZengKazimierz Wielki UniversityJournal of Education, Health and Sport2391-83062021-12-01111210.12775/JEHS.2021.11.12.037Sulfate-chloride sodium-magnesium mineral waters modulate neuroendocrine-immune complex and metabolism in healthy female ratsDaria Popovych0Nataliya Badiuk1Myroslava Hrytsak2Sofiya Ruzhylo3Oksana Mel’nyk4Xawery Zukow5IY Horbachevs’kyi National Medical University, Ternopil’SE Ukrainian Research Institute of Medicine of Transport, OdesaSE Ukrainian Research Institute of Medicine of Transport, Odesa; Scientific group of Balneology of Hotel&Spa Complex "Karpaty", Truskavets’,Ivan Franko Pedagogical University, DrohobychDanylo Halyts’kyǐ National Medical University, L’vivMedical University of Bialystok, Bialystok Background. Earlier in an experiment on rats, we showed that newly created sulfate-chloride sodium-magnesium drinking mineral waters of Truskavets’ spa has a significant modulating effect on the parameters of metabolism and the autonomic nervous, endocrine and immune systems. In this study, we combined data obtained on the same animals, in line with the concepts of neuroendocrine-immune complex and functional-metabolic continuum. Materials and Methods. Experiment was performed on 50 healthy female Wistar rats 230-290 g divided into 4 groups. Animals of the first group remained intact, using tap water from drinking ad libitum. Rats of the second (control) group for 6 days administered a single tap water through the tube at a dose of 1,5 mL/100 g of body mass. The rats of the main groups received the water "Myroslava" and "Khrystyna". The object of the study were the metabolic, neuro-endocrine and immune parameters. Results. The method of discriminant analysis revealed 31 parameters, according to which all four groups of animals differ from each other. Classification accuracy is 100%. Conclusion. The newly created sulfate-chloride sodium-magnesium drinking mineral waters of Truskavets’ spa has both similar and specific effects on the neuroendocrine-immune complex and metabolism at healthy old female rats with weekly use. This provides a basis for preclinical studies. https://apcz.umk.pl/JEHS/article/view/37593sulfate-chloride sodium-magnesium mineral watersneuroendocrine-immune complexmetabolismfemale rats
spellingShingle Daria Popovych
Nataliya Badiuk
Myroslava Hrytsak
Sofiya Ruzhylo
Oksana Mel’nyk
Xawery Zukow
Sulfate-chloride sodium-magnesium mineral waters modulate neuroendocrine-immune complex and metabolism in healthy female rats
Journal of Education, Health and Sport
sulfate-chloride sodium-magnesium mineral waters
neuroendocrine-immune complex
metabolism
female rats
title Sulfate-chloride sodium-magnesium mineral waters modulate neuroendocrine-immune complex and metabolism in healthy female rats
title_full Sulfate-chloride sodium-magnesium mineral waters modulate neuroendocrine-immune complex and metabolism in healthy female rats
title_fullStr Sulfate-chloride sodium-magnesium mineral waters modulate neuroendocrine-immune complex and metabolism in healthy female rats
title_full_unstemmed Sulfate-chloride sodium-magnesium mineral waters modulate neuroendocrine-immune complex and metabolism in healthy female rats
title_short Sulfate-chloride sodium-magnesium mineral waters modulate neuroendocrine-immune complex and metabolism in healthy female rats
title_sort sulfate chloride sodium magnesium mineral waters modulate neuroendocrine immune complex and metabolism in healthy female rats
topic sulfate-chloride sodium-magnesium mineral waters
neuroendocrine-immune complex
metabolism
female rats
url https://apcz.umk.pl/JEHS/article/view/37593
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AT myroslavahrytsak sulfatechloridesodiummagnesiummineralwatersmodulateneuroendocrineimmunecomplexandmetabolisminhealthyfemalerats
AT sofiyaruzhylo sulfatechloridesodiummagnesiummineralwatersmodulateneuroendocrineimmunecomplexandmetabolisminhealthyfemalerats
AT oksanamelnyk sulfatechloridesodiummagnesiummineralwatersmodulateneuroendocrineimmunecomplexandmetabolisminhealthyfemalerats
AT xaweryzukow sulfatechloridesodiummagnesiummineralwatersmodulateneuroendocrineimmunecomplexandmetabolisminhealthyfemalerats