2025/12/5
Ayoub Saeidi

Ayoub Saeidi

Academic rank: Assistant Professor
ORCID:
Education: PhD.
H-Index:
Faculty: Faculty of Humanities and Social Sciences
ScholarId:
E-mail: a.saeidi [at] uok.ac.ir
ScopusId: View
Phone: 09358896953
ResearchGate:

Research

Title
Resistance exercise in a hot environment alters serum markers in untrained males
Type
JournalPaper
Keywords
cytokines, heat, resistance exercise, hypertrophy, nterleukin 6, Interleukin 15, untrained young
Year
2020
Journal Frontiers in Physiology
DOI
Researchers Arezoo Eskandari ، Mohamad Fashi ، Ayoub Saeidi ، Daniel Boullosa ، Ismail Laher ، Abderraouf Ben Abderrahman ، Gerorges Jabbour ، Hassane Zouhal

Abstract

Purpose: We examined the effects of moderate resistance exercise (RE) on serum cortisol, testosterone, extracellular heat shock protein (HSP70), and interleukin (IL)-6 and IL-15 concentrations in untrained males in a hot environment. Methods: Ten untrained young males (26 ± 3 years; 75.8 ± 6 kg; 177.4 ± 5.3 cm) performed two series of full body RE [3 sets of 8 to 10 repetitions, 30–60 s recovery between series with 70% of one maximal repetition (1-RM), with a rest period of 1 to 3 min between exercises] carried out in a random order in both heated (∼35°C) and thermoneutral (22°C) conditions. Serum concentrations of testosterone, cortisol, HSP70, and IL-6 and IL-15 were measured before, at the end, and 1 h after RE sessions. Participants in both groups consumed 4 ml of water/kg body mass every 15 min. Results: There were time-related changes in testosterone, HSP70, and IL-6 (P < 0.001), and cortisol and IL-15 (P < 0.05). Levels of cortisol, HSP70, and IL-6 increased immediately for RE at 35°C, and testosterone and IL-15 levels were decreased. Changes in serum testosterone, HSP70, cortisol, and IL-15 and IL-6 levels were reversed after 1 h. A significant time × condition interaction was observed for IL-15 and HSP70 (P < 0.001), cortisol and IL-6 (P < 0.05), but not for testosterone (P > 0.05). Conclusion: RE in a heated environment may not be appropriate for achieving muscle adaptations due to acute changes of hormonal and inflammatory markers.