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Conducting Maximal and Submaximal Endurance Exercise Testing to Measure Physiological and Biological Responses to Acute Exercise in Humans
Published on: October 17, 2018
Exercise and leukocyte interchange among central circulation, lung, spleen, and muscle
Gregory R Adams1, Frank P Zaldivar, Dwight M Nance
1Department of Physiology & Biophysics, University of California, Irvine, USA.
Insights
Exercise triggers a rapid redistribution of immune cells, specifically leukocytes, between the bloodstream and tissues like the lungs, spleen, and muscles. This immune cell exchange highlights exercise
Area of Science:
- Immunology
- Exercise Physiology
- Cell Biology
Background:
- Leukocyte counts in circulation fluctuate rapidly with exercise.
- Understanding leukocyte trafficking during physical activity is crucial for immune system modulation.
Purpose of the Study:
- To investigate the acute bidirectional exchange of leukocytes between circulation and key tissues (lung, spleen, skeletal muscle) during exercise.
- To determine if exercise stimulates the mobilization of immune cells from tissues back into circulation.
Main Methods:
- Utilized carboxyfluorescein diacetate succinamidyl ester (CFSE) dye for stable labeling of circulating leukocytes (granulocytes, monocytes, lymphocytes) in rats.
- Employed flow cytometry to quantify labeled leukocyte proportions in blood and tissues over time (4h to 120h post-injection).
- Assessed changes in labeled leukocyte distribution following controlled running exercise bouts.
Main Results:
- CFSE-labeled leukocytes were successfully tracked, showing accumulation in lung, spleen, and skeletal muscle tissues.
- Exercise induced a significant increase in circulating labeled leukocytes at 24h and 120h post-labeling.
- Leukocytes were mobilized from tissues back into circulation in response to exercise, with slower exchange dynamics in muscle compared to lung and spleen.
Conclusions:
- Exercise acutely stimulates a systemic redistribution of leukocytes between the circulation and tissues.
- This bidirectional immune cell trafficking suggests a mechanism by which exercise modulates immune function.
- The findings reveal exercise-induced immune cell exchange dynamics influencing leukocyte circulation patterns.
Abstract:
Circulating leukocytes increase rapidly with exercise then quickly decrease when the exercise ends. We tested whether exercise acutely led to bidirectional interchange of leukocytes between the circulation and the lung, spleen, and active skeletal muscle. To accomplish this it was necessary to label a large number of immune cells (granulocytes, monocytes, and lymphocytes) in a way that resulted in minimal perturbation of cell function. Rats were injected intravenously with a single bolus of carboxyfluorescein diacetate succinamidyl ester (CFSE) dye which is rapidly and irreversibly taken up by circulating cells. The time course of the disappearance of labeled cells and their reappearance in the circulation following exercise was determined via flow cytometry. The majority of circulating leukocytes were labeled at 4h. post-injection and this proportion slowly declined out to 120 h. At both 24 and 120 h, running resulted in an increase in the proportion of labeled leukocytes in the circulation. Analysis of the skeletal muscle, spleen and lung indicated that labeled leukocytes had accumulated in those tissues and were mobilized to the circulation in response to exercise. This indicates that there is an ongoing exchange of leukocytes between the circulation and tissues and that exercise can stimulate their redistribution. Exchange was slower with muscle than with spleen and lung, but in all cases, influenced by exercise. Exercise bouts redistribute leukocytes between the circulation and the lung, spleen and muscle. The modulatory effects of exercise on the immune system may be regulated in part by the systemic redistribution of immune cells.
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