Disturbances in pro-oxidant-antioxidant balance after passive body overheating and after exercise in elevated ambient temperatures in athletes and untrained men
Pilch W, Szygula Z, Tyka AK, Palka T, Tyka A, Cison T, Pilch P, Teleglow A
PloS one · 14 citations
Review labels
Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.
How it was studied
- Design
- Controlled clinical trial (indexed by PubMed)
- Studied in
- People
- Main outcome
- Mechanisms only
Who paid for it
- Funding
- Independent funding
Based on full-text disclosure statement.
Publication
- Published
- 2014-01-20 · PLoS One · vol. 9 · issue 1 · p. e85320
- Publisher
- Public Library of Science
- Cited
- 31 citations · more than 79% of similar papers · 1.3× the field average
- References
- 48 works
- Access
- Open access (journal) · CC-BY
- Research areas
- Thermoregulation and physiological responses · Exercise and Physiological Responses · Muscle metabolism and nutrition
- Keywords
- Antioxidant, Lipid peroxidation, Medicine, VO2 max, Chemistry, Internal medicine, Oxidative stress, Animal science, Endocrinology, Physical therapy, Physiology, Heart rate, Biochemistry, Blood pressure, Biology
- MeSH
- humans, reactive oxygen species, antioxidants, oxidants, body temperature, exercise, temperature, oxidative stress, body temperature regulation, adult, male, young adult, athletes
10 authors
From PL
- Wanda PilchUniversity of Physical Culture in Kraków
- Zbigniew Szyguła
- Anna Katarzyna TykaUniversity of Physical Culture in Kraków
- Anna K. Tyka · correspondingUniversity of Physical Culture in Kraków
- Tomasz PalkaUniversity of Physical Culture in Kraków
- Aleksander TykaUniversity of Physical Culture in Kraków
Abstract
The aim of the study was to investigate pro-oxidant-antioxidant balance in two series of examinations with two types of stressors (exogenous heat and the combined exogenous and endogenous heat) in trained and untrained men. The exogenous stressor was provided by Finnish sauna session, whereas the combined stressor was represented by the exercise in elevated ambient temperature. The men from the two groups performed the physical exercise on a cycle ergometer with the load of 53 ± 2% maximal oxygen uptake at the temperature of 33 ± 1 °C and relative humidity of 70% until their rectal temperature rose by 1.2 °C. After a month from completion of the exercise test the subjects participated in a sauna bathing session with the temperature of 96 ± 2 °C, and relative humidity of 16 ± 5%. 15-minutes heating and 2-minute cool-down in a shower with the temperature of 20 °C was repeated until rectal temperature rose by 1.2 °C compared to the initial value. During both series of tests rectal temperature was measured at 5-minute intervals. Before both series of tests and after them body mass was measured and blood samples were taken for biochemical tests. Serum total protein, serum concentration of lipid peroxidation products and serum antioxidants were determined. The athletes were characterized by higher level of antioxidant status and lower concentration of lipid peroxidation products. Physical exercise at elevated ambient temperature caused lower changes in oxidative stress indices compared to sauna bathing. Sauna induced a shift in pro-oxidant-antioxidant balance towards oxidation, which was observed less intensively in the athletes compared to the untrained men. This leads to the conclusion that physical exercise increases tolerance to elevated ambient temperature and oxidative stress.
Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).
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