Evaluation of Serum Autophagic Biomarkers in the Acute Response to Walking and Cycling in Healthy Male Individuals
NCT07536659 · Status: ENROLLING_BY_INVITATION · Type: OBSERVATIONAL · Enrollment: 40
Last updated 2026-04-21
Summary
Physical exercise (walking and cycling) is a potent physiological stimulus that simultaneously alters energy balance, mechanical loading, and metabolic demands in the organism. Autophagy is recognized as a fundamental mechanism in the regulation of acute cellular responses to such stimuli, playing a critical role in maintaining cellular homeostasis, removing damaged proteins and organelles, and ensuring metabolic adaptation \[1\]. Experimental and translational studies have demonstrated that particularly moderate-intensity and controlled mechanical loading can activate autophagic pathways, thereby supporting structural and functional adaptation in muscle, bone, and connective tissues \[2-4\].
In the current literature, the relationship between autophagy and exercise has largely been evaluated through experimental animal models and a limited number of human studies \[5\]. Although animal studies have clearly shown that physiological loading such as walking and running increases molecular signals associated with autophagy, the direct assessment of autophagy at the tissue level in humans is limited due to ethical and feasibility concerns, as it requires invasive methods (e.g., muscle biopsy) \[3\]. Therefore, recent human studies have increasingly focused on indirect evaluation of autophagy through peripheral blood mononuclear cells and circulating biomarkers \[6\].
Indeed, recent human studies have reported that proteins associated with autophagy may exhibit changes in peripheral blood cells or circulation in response to acute exercise, and that this response may vary depending on the type, intensity, and mechanical characteristics of the exercise \[6\]. These findings suggest that autophagy is not merely a tissue-specific process but can also be monitored at the systemic level as part of physiological adaptation \[7\]. However, there is a limited number of human studies that comparatively investigate the acute effects of different exercise modalities with distinct mechanical loading profiles (such as walking and cycling) on serum biomarkers related to autophagy.
In this context, the present project aims to evaluate the acute effects of two common aerobic exercise modalities with different mechanical loading characteristics-walking and cycling-on serum biomarkers associated with autophagy in healthy male individuals. In this study, Beclin-1, LC3, and ATG3 levels will be considered not as direct indicators of autophagic flux in tissues, but as circulating biomarkers associated with the initiation and maintenance of autophagy. By examining changes in the serum levels of these proteins following acute exercise, it is aimed to obtain indirect yet biologically meaningful data regarding exercise-induced cellular adaptation mechanisms without the need for invasive procedures.
In conclusion, this study aims to contribute to an important gap in the current literature by safely and ethically demonstrating the acute physiological responses related to autophagy in humans across exercise modalities with different mechanical characteristics, thereby enhancing our understanding of the exercise-autophagy relationship.
Conditions
- Effects of Walking and Cycling on Serum Physiological Biomarkers
Interventions
- OTHER
-
WALKİNG
Data collection will be carried out in two separate 30-minute exercise sessions, scheduled one week apart. In the first session, participants will perform 30 minutes of walking on a treadmill at a predetermined target heart rate. In the second session, conducted one week later, participants will cycle on a bicycle ergometer for 30 minutes at a similar target heart rate. Apart from the 30-minute exercise modality, all other procedures will be identical in both data collection sessions. To avoid diurnal variations, participants will be asked to attend the laboratory at the same time of day for each session. A minimum one-week rest period will be provided between sessions to minimize potential carryover effects. Upon arrival at the laboratory, an indwelling venous catheter will be inserted into the cubital fossa of either the right or left arm of the participant. To minimize the potential effects of prior physical activity on biomarker concentrations, participants will rest in a supine po
Sponsors & Collaborators
-
Sakarya University of Applied Sciences
collaborator UNKNOWN -
Kocaeli University
lead OTHER
Eligibility
- Min Age
- 18 Years
- Max Age
- 35 Years
- Sex
- MALE
- Healthy Volunteers
- Yes
Timeline & Regulatory
- Start
- 2026-04-01
- Primary Completion
- 2026-10-30
- Completion
- 2026-12-01
Countries
- Turkey (Türkiye)
Study Locations
More Related Trials
-
Acute Exercise Intensity Responses in Women Who Smoke
NCT06805968 ·Status: COMPLETED ·Phase: NA
-
Short-term Circuit Training on Muscle Mass and Quality of Life in Sedentary Postmenopausal Women
NCT06445842 ·Status: COMPLETED ·Phase: NA
-
Effects of Dual-task Aerobic Exercise
NCT06461130 ·Status: COMPLETED ·Phase: NA
-
Step-Aerobics Versus Core Exercise for Non-HDL Cholesterol Reduction in Sedentary Women
NCT07350213 ·Status: COMPLETED ·Phase: NA
-
Effects of Low-intensity Blood Flow Restriction Exercise on Aerobic Capacity, Muscle Strength, Muscle Size, Biochemical-hormonal Parameters and Antioxidant Parameters in Overweight and Obese Individuals.
NCT06912919 ·Status: COMPLETED ·Phase: NA
-
Effects of Home Based Step Aerobic Exercises
NCT05097196 ·Status: COMPLETED ·Phase: NA
-
COMPASS 65+ - Community-based Physical Activity Snacks for Healthy Aging in Overweight and Obese Aged Adults
NCT07289529 ·Status: NOT_YET_RECRUITING ·Phase: NA
-
Muscle Oxygenation in Treadmill and Cycle Ergometer Exercise
NCT05655559 ·Status: UNKNOWN ·Phase: NA
-
Cardiometabolic Effects of Aerobic Exercise Plus Breaking Sitting
NCT06106464 ·Status: COMPLETED ·Phase: NA
-
Effects of Specified Work Site Physical Activity Intervention Among Employees With Physical Heavy Work
NCT01007669 ·Status: COMPLETED ·Phase: PHASE1
-
Cortical Excitability, Cognitive Functions, and Peripheral Signaling Molecules
NCT05689606 ·Status: COMPLETED ·Phase: NA
-
Exercise and Coronary Heart Disease Risk Markers in Male Smokers and Non-Smokers
NCT03735186 ·Status: COMPLETED ·Phase: NA
-
Time Efficient Exercise to Reverse Sarcopenia and Improve Cardio-metabolic Health
NCT04641117 ·Status: NOT_YET_RECRUITING ·Phase: NA
-
Effects of Different Timing of Brisk Walking on Human Behaviours
NCT06962566 ·Status: COMPLETED ·Phase: NA
-
Skeletal Muscle and Adipose Tissue Responses After Acute Exercise: Comparing Effects of Three Different Intensities
NCT05365334 ·Status: COMPLETED ·Phase: NA
-
Effect of Arm Cycling Exercise on Pulmonary Functions After Colectomy In Elderly
NCT06876961 ·Status: COMPLETED ·Phase: NA
-
Efficacy of Movement Breaks in Real-World Settings
NCT05574426 ·Status: COMPLETED ·Phase: NA
-
Exercise Addiction and Health Risks in Gym Users
NCT07061509 ·Status: RECRUITING
-
Acute Effects of Aerobic Exercise on Cognitive Functions in Patients with Chronic Stroke
NCT06596720 ·Status: COMPLETED ·Phase: NA
-
Acute Effects of Moderate Intensity Aerobic Exercise on Cognitive Functions in Young Adult Males
NCT05905081 ·Status: COMPLETED ·Phase: NA
-
Impact of Exercise Intensity on Fitness, Extracellular Vesicles, Inflammation, and Metabolism
NCT06398548 ·Status: RECRUITING ·Phase: NA
-
The Effect of Exercise on Myokine Production in Aging Persons
NCT05571709 ·Status: UNKNOWN ·Phase: NA
-
Examining the Impact of Blood Flow Restricted Aerobic Exercise on PGC-1α mRNA Expression in Young Healthy Males
NCT03717948 ·Status: COMPLETED ·Phase: NA
-
Response of Sex Hormones and Different Functions to Exercise and Diet in Elderly Women
NCT04492540 ·Status: COMPLETED ·Phase: NA
-
Acute Neurochemical and Cognitive Changes After HIIT vs MICT/LICT
NCT07379879 ·Status: COMPLETED ·Phase: NA