This study aims to investigate whether the time of day at which acute exercise is performed influences physical performance and acute hormonal and biochemical responses in healthy young male soccer players. Participants will complete the same standardized exercise protocol in the morning (08:00-09:30) and evening (17:00-18:30), with a 96-hour interval between sessions. Performance will be assessed using vertical jump and Yo-Yo shuttle run tests. Blood samples will be collected before exercise, immediately after exercise, and two hours after exercise to assess testosterone, cortisol, creatine kinase, AST, ALT, LDH, and troponin levels. The study will examine whether exercise responses differ between morning and evening sessions and whether these differences are consistent with circadian variation.
The purpose of this study is to examine the acute effects of exercise performed at different times of the day on physical performance, hormonal responses, and biochemical markers associated with exercise-induced muscle stress and recovery in healthy young male soccer players. The study uses a single-group, repeated-measures pre-test/post-test design in which the same participants complete an identical standardized exercise protocol on two separate occasions. One exercise session will be performed in the morning between 08:00 and 09:30, and the other will be performed in the evening between 17:00 and 18:30. The two experimental sessions will be separated by 96 hours (4 days) to reduce the influence of the preceding exercise session on subsequent measurements. Before each exercise session, participants will undergo anthropometric assessment and provide a resting blood sample. Participants will then complete standardized physical performance assessments, including a vertical jump test and a Yo-Yo shuttle run endurance test. Immediately after completion of the exercise protocol, a second blood sample will be collected. A third blood sample will be collected two hours after exercise to assess the early recovery response. Blood samples will be analyzed for hormonal and biochemical parameters, including testosterone and cortisol as hormonal markers, and creatine kinase (CK), aspartate aminotransferase (AST), alanine aminotransferase (ALT), lactate dehydrogenase (LDH), and troponin as biochemical markers of exercise-related physiological and metabolic responses. The primary purpose of the comparison is to determine whether the acute physiological responses to the same exercise stimulus differ according to the time of day. The study will also explore the potential relationship between exercise timing and circadian variation in physical performance, hormonal responses, and biochemical markers. All participants will complete the same exercise and measurement procedures under standardized conditions. The study population consists of healthy male soccer players who regularly participate in sports. Participants must be physically able to safely complete the exercise and assessment protocols and must not have medical or musculoskeletal conditions that could affect exercise performance or the safety of the study procedures. This study is designed to provide information about the influence of exercise timing on acute performance and physiological responses and may contribute to the development of time-of-day considerations in exercise programming and sports training.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
8
Participants completed a standardized acute exercise protocol consisting of a vertical jump test and a Yo-Yo shuttle run endurance test. The protocol was performed twice, once in the morning (08:00-09:30) and once in the evening (17:00-18:30), with a 96-hour washout period between sessions. Blood samples were collected before exercise, immediately after exercise, and 2 hours after exercise to assess hormonal (testosterone and cortisol) and biochemical (CK, AST, ALT, LDH, and troponin) responses.
MUNZUR University
Tunceli, Turkey (Türkiye)
Yo-Yo Shuttle Run Performance
Change in endurance performance measured by the Yo-Yo shuttle run test following the standardized acute exercise protocol performed in the morning and evening.
Time frame: Immediately after completion of the exercise performance assessment during each experimental session.
Vertical Jump Performance
Explosive lower-extremity performance will be assessed using the vertical jump test during the morning and evening experimental sessions.
Time frame: Baseline (pre-exercise), immediately post-exercise, and 2 hours post-exercise.
Serum Testosterone Concentration
Serum testosterone concentration will be assessed from blood samples collected before exercise, immediately after exercise, and 2 hours after exercise during the morning and evening experimental sessions.
Time frame: Baseline (pre-exercise), immediately post-exercise, and 2 hours post-exercise.
Serum Cortisol Concentration
Serum cortisol concentration will be assessed from blood samples collected before exercise, immediately after exercise, and 2 hours after exercise during the morning and evening experimental sessions.
Time frame: Baseline (pre-exercise), immediately post-exercise, and 2 hours post-exercise.
Serum Creatine Kinase (CK) Concentration
Serum creatine kinase concentration will be assessed as a biochemical marker of exercise-related physiological response using blood samples collected before exercise, immediately after exercise, and 2 hours after exercise.
Time frame: Baseline (pre-exercise), immediately post-exercise, and 2 hours post-exercise.
Serum Aspartate Aminotransferase (AST) Concentration
Serum AST concentration will be assessed from blood samples collected before exercise, immediately after exercise, and 2 hours after exercise during the morning and evening sessions.
Time frame: Baseline (pre-exercise), immediately post-exercise, and 2 hours post-exercise.
Serum Alanine Aminotransferase (ALT) Concentration
Serum ALT concentration will be assessed from blood samples collected before exercise, immediately after exercise, and 2 hours after exercise during the morning and evening sessions.
Time frame: Baseline (pre-exercise), immediately post-exercise, and 2 hours post-exercise.
Serum Lactate Dehydrogenase (LDH) Concentration
Serum LDH concentration will be assessed from blood samples collected before exercise, immediately after exercise, and 2 hours after exercise during the morning and evening sessions.
Time frame: Baseline (pre-exercise), immediately post-exercise, and 2 hours post-exercise.
Serum Troponin Concentration
Serum troponin concentration will be assessed from blood samples collected before exercise, immediately after exercise, and 2 hours after exercise during the morning and evening experimental sessions.
Time frame: Baseline (pre-exercise), immediately post-exercise, and 2 hours post-exercise
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.