MedicineEnvironmental Science

Less Inflammatory Debris, Improved Immunity from Immune Detox: A New Perspective on the Benefits of Exercise in Chronic Disease.

Asghar Abbasi, William W Stringer

2025EXERCISE IMMUNOLOGY REVIEW

tlooto Summary

This work proposes a complementary view whereby exercise potentially functions as a biological detoxifier by removing harmful immunological debris such as damage-associated molecular patterns, senescent cells, dysfunctional mitochondria and pro-inflammatory extracellular vesicles that drive chronic immune activation.

Abstract

The immunological benefits of exercise are commonly attributed to its immune-boosting effects such as the release of exercise-induced factors (e.g., exerkines) and activation of anti-inflammatory molecules. However, this may not fully explain its benefits in chronic inflammatory conditions. We propose a complementary view whereby exercise potentially functions as a biological detoxifier by removing harmful immunological debris such as damage-associated molecular patterns (DAMPs), senescent cells, dysfunctional mitochondria and pro-inflammatory extracellular vesicles (EVs) that drive chronic immune activation. We highlight key mechanisms by which exercise may reduce or remove these harmful signals, including autophagy and mitophagy activation, enhanced efferocytosis, reduced senescence burden, and modulation of EV cargo. This "immune detox" model may help explain the clinical benefits of exercise in conditions where the immune system is overactivated, not deficient. It shifts the narrative from immune boosting to restoring immune balance, and could have potentially important implications for biomarker discovery and personalized exercise prescriptions in chronic disease.

Citation format

ABBASI, Asghar; STRINGER, William W. Less inflammatory debris, improved immunity from immune detox: A new perspective on the benefits of exercise in chronic disease. EXERCISE IMMUNOLOGY REVIEW, 2025, 31: 19–26.