4.5 Article

Macrophage Depletion Impairs Skeletal Muscle Regeneration: the Roles of Pro-fibrotic Factors, Inflammation, and Oxidative Stress

Journal

INFLAMMATION
Volume 39, Issue 6, Pages 2016-2028

Publisher

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s10753-016-0438-8

Keywords

macrophages; skeletal muscle; fibrosis; pro-fibrotic factors; inflammation; oxidative stress

Funding

  1. National Natural Science Foundation of China [31271273, 31300975]
  2. Doctoral Fund of Ministry of Education of China [20133156120004]
  3. Key Lab of Exercise and Health Sciences of Ministry of Education (Shanghai University of Sport)

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Muscle contusion is one of the most common muscle injuries in sports medicine. Macrophages play complex roles in the regeneration of skeletal muscle. However, the roles of macrophages, especially the mechanisms involved, in the regeneration of muscle contusion are still not fully understood. We hypothesize that the depletion of macrophages impairs skeletal muscle regeneration and that pro-fibrotic factors, inflammation, and oxidative stress may be involved in the process. To test these hypotheses, we constructed a muscle contusion injury and a macrophage depletion model and followed it up with morphological and gene expression analyses. The data showed that fibrotic scars were formed in the muscle of contusion injury, and they deteriorated in the mice of macrophage depletion. Furthermore, the sizes of regenerating myofibers were significantly reduced by macrophage depletion. Pro-fibrotic factors, inflammatory cytokines, chemokines, and oxidative stress-related enzymes increased significantly after muscle injury. Moreover, the expression of these factors was delayed by macrophage depletion. Most of them were still significantly higher in the later stage of regeneration. These results suggest that macrophage depletion impairs skeletal muscle regeneration and that pro-fibrotic factors, inflammation, and oxidative stress may play important roles in the process.

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