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Updated: Mar 27, 2026

Author Spotlight: Unveiling Mitochondrial Function and Cellular Metabolic Adaptation in Metabolic Diseases
Published on: October 4, 2024
Plasma cell-free mitochondrial DNA declines in response to prolonged moderate aerobic exercise
Penny E Shockett1, Januka Khanal2, Alina Sitaula2
1Department of Biological Sciences, Southeastern Louisiana University, Hammond, Louisiana pshockett@selu.edu.
Abstract:
Increased plasma cell-free mitochondrial DNA (cf-mDNA), a damage-associated molecular pattern (DAMP) produced by cellular injury, contributes to neutrophil activation/inflammation in trauma patients and arises in cancer and autoimmunity. To further understand relationships between cf-mDNA released by tissue injury, inflammation, and health benefits of exercise, we examined cf-mDNA response to prolonged moderate aerobic exercise. Seven healthy moderately trained young men (age = 22.4 ± 1.2) completed a treadmill exercise trial for 90 min at 60% VO2 max and a resting control trial. Blood was sampled immediately prior to exercise (0 min = baseline), during (+18, +54 min), immediately after (+90 min), and after recovery (R40). Plasma was analyzed for cf-mDNA, IL-6, and lactate. A significant difference in cf-mDNA response was observed between exercise and control trials, with cf-mDNA levels reduced during exercise at +54 and +90 (with or without plasma volume shift correction). Declines in cf-mDNA were accompanied by increased lactate and followed by an increase in IL-6, suggesting a temporal association with muscle stress and inflammatory processes. Our novel finding of cf-mDNA decline with prolonged moderate treadmill exercise provides evidence for increased clearance from or reduced release of cf-mDNA into the blood with prolonged exercise. These studies contrast with previous investigations involving exhaustive short-term treadmill exercise, in which no change in cf-mDNA levels were reported, and contribute to our understanding of differences between exercise- and trauma-induced inflammation. We propose that transient declines in cf-mDNA may induce health benefits, by reducing systemic inflammation.
Insights
Prolonged moderate aerobic exercise reduced cell-free mitochondrial DNA (cf-mDNA) levels in healthy men. This decline in cf-mDNA may reduce systemic inflammation and offer health benefits.
Area of Science:
- Exercise physiology
- Immunology
- Molecular biology
Background:
- Increased plasma cell-free mitochondrial DNA (cf-mDNA) is linked to inflammation in trauma, cancer, and autoimmunity.
- cf-mDNA acts as a damage-associated molecular pattern (DAMP) that activates neutrophils.
- Understanding exercise's impact on cf-mDNA is crucial for exploring its anti-inflammatory health benefits.
Purpose of the Study:
- To investigate the response of cf-mDNA to prolonged moderate aerobic exercise.
- To explore the relationship between cf-mDNA, muscle stress, and inflammatory markers during exercise.
Main Methods:
- Seven healthy, moderately trained men underwent a 90-minute treadmill exercise at 60% VO2 max.
- Blood samples were collected at baseline, during exercise, immediately post-exercise, and during recovery.
- Plasma was analyzed for cf-mDNA, IL-6, and lactate levels.
Main Results:
- A significant reduction in plasma cf-mDNA was observed during and immediately after prolonged moderate exercise compared to a control trial.
- Declines in cf-mDNA correlated with increased lactate levels, indicating muscle stress.
- An increase in IL-6 followed the cf-mDNA decline, suggesting a temporal link to inflammatory processes.
Conclusions:
- Prolonged moderate aerobic exercise leads to a decrease in circulating cf-mDNA.
- This reduction may result from increased clearance or decreased release of cf-mDNA.
- Transient declines in cf-mDNA during exercise could contribute to systemic anti-inflammatory effects and health benefits.
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