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Macrophage invasion does not contribute to muscle membrane injury during inflammation
J G Tidball1, E Berchenko, J Frenette
1Department of Physiological Science, University of California, Los Angeles 90095-1527, USA. jtidball@physci.ucla.edu
Abstract:
Previous observations have shown that neutrophil invasion precedes macrophage invasion during muscle inflammation and that peak muscle injury is observed at the peak of ED1+ macrophage invasion. We tested the hypothesis that neutrophil invasion causes subsequent invasion by ED1+ macrophages and that ED1+ macrophages then contribute significantly to muscle membrane injury during modified muscle use. Rat hindlimbs were unloaded for 10 days followed by reloading by normal ambulation to induce inflammation. Membrane injury was measured by assaying Evans blue-bound serum protein influx through membrane lesions. Muscle neutrophil populations increased significantly during the first 2 h of reloading but ED1+ macrophages did not increase until 24 h. Neutrophil invasion was uncoupled from subsequent macrophage invasion by reloading rat hindlimbs for 2 h to cause neutrophil invasion, followed by resuspension for hours 2-24. This produced similar increases in neutrophil concentration as measured in muscles continuously reloaded for 24 h without causing an increase in macrophages. However, resuspension did not reduce the extent of muscle damage compared with that occurring in muscles that were reloaded continuously for 24 h. Thus, muscle invasion by neutrophils is not sufficient to cause invasion by ED1+ macrophages. In addition, muscle membrane injury that occurs during reloading is independent of invasion by ED1+ macrophages.
Insights
Neutrophil invasion does not cause macrophage invasion or muscle membrane injury during reloading after unloading. Macrophage invasion and muscle damage during this process are independent events.
Area of Science:
- Muscle physiology
- Inflammation research
- Cellular biology
Background:
- Neutrophil invasion precedes macrophage invasion in muscle inflammation.
- Peak muscle injury correlates with peak ED1+ macrophage invasion.
- The causal relationship between these cell types and injury is unclear.
Purpose of the Study:
- To test if neutrophil invasion causes subsequent ED1+ macrophage invasion.
- To determine if ED1+ macrophages contribute significantly to muscle membrane injury during modified muscle use.
Main Methods:
- Rat hindlimbs were unloaded for 10 days, then reloaded to induce inflammation.
- Membrane injury was quantified by Evans blue-bound serum protein influx.
- Neutrophil and ED1+ macrophage populations were measured over time.
- Neutrophil invasion was experimentally uncoupled from macrophage invasion.
Main Results:
- Neutrophils increased significantly within 2 hours of reloading.
- ED1+ macrophages did not increase until 24 hours.
- Uncoupling neutrophil invasion did not prevent macrophage invasion or reduce muscle damage.
- Muscle membrane injury occurred independently of ED1+ macrophage invasion.
Conclusions:
- Neutrophil invasion is not sufficient to cause ED1+ macrophage invasion.
- Muscle membrane injury during reloading is independent of ED1+ macrophage invasion.