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1.
Biomed Res Int ; 2020: 1649759, 2020.
Article in English | MEDLINE | ID: mdl-33381543

ABSTRACT

Passion for computer games negatively affects the health level of schoolchildren. Among the approaches to monitoring the functional state of such schoolchildren, the most informative and painless is the study of the saliva. The study involved 45 children, aged 14.00 ± 0.21 years, and divided according to the contact's intensity with computer games. The following indicators of lipid peroxidation (LPO) were determined in the saliva: indicators of the antioxidant (AO) system, concentration of immunoglobulin A, and hormonal indicators. The significant increases in the catecholamine (adrenaline) level for 2.3 times and biogenic amine-serotonin for 35.5% and increase in the LPO-DC product concentration in gamers for 75.8% were revealed. The study of the schoolchildren's homeostasis peculiarities confirmed the adequacy of the use of biochemical techniques to assess the condition of children gamers. They have a prenosological condition. This is reflected in the increase in LPO intensity, failure of the protective AO system, imbalance of hormonal state, and immunity deterioration. Information on the evaluation of the LPO activity processes and the AO system condition and the degree of the balance's shift between prooxidants and antioxidants in biological substrates can be considered objective and very sensitive indicators of the general condition, activity, and improvement of the regulation and maintenance of homeostasis.


Subject(s)
Adolescent/physiology , Saliva/chemistry , Video Games , Adolescent Health , Antioxidants/analysis , Epinephrine/analysis , Humans , Immunoglobulin A/analysis , Lipid Peroxidation/physiology , Male
2.
Biomed Res Int ; 2019: 2014347, 2019.
Article in English | MEDLINE | ID: mdl-30756080

ABSTRACT

The study aimed to determine the suitability of testing the saliva of kickboxing athletes to show changes in biochemical parameters in dynamic of training. 8 elite male athletes (mean age 17.29± 0.31 years, body mass 66.82± 3.46kg, with 5.62±0.96 years of training experience) participated in the study. Indicators of lipid peroxidation and glycolysis (the concentration of lactic acid and pyruvic acid) were defined before and after a training session. Significant increases in indicators of lipid peroxidation activity indicators and the concentration of lactic acid (4-fold) were observed; analysis of correlation matrices confirms the absence of expressed changes. At the same time, significant decreases in catalase (10-fold from 3.69 µkat/L to 0.39 µkat/L) and pyruvic acid (from 3.92 µl/l to 0.55 µl/l) were observed. Our results confirm the value of using saliva to determine training load in an individual. Moreover, the study provided information on the importance of indexes reflecting a correlation of various biochemical indicators to estimate the sufficiency of training loads. The ease of sampling and informational content of saliva are reasons to use such tests in monitoring athletes' functional state to prevent fatigue.


Subject(s)
Athletes , Fatigue/metabolism , Lactic Acid/metabolism , Saliva/chemistry , Adolescent , Adult , Athletic Performance , Catalase/isolation & purification , Catalase/metabolism , Fatigue/pathology , Fatigue/prevention & control , Glycolysis/genetics , Humans , Lactic Acid/isolation & purification , Lipid Peroxidation/genetics , Male , Pyruvic Acid/isolation & purification , Pyruvic Acid/metabolism , Saliva/metabolism , Young Adult
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