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P-selectin inhibition suppresses muscle regeneration following injury
Wallace Baker1, Barbara A St Pierre Schneider, Anhurunda Kulkarni
1Department of Medical Technology, Medical College of Georgia, 1120 15th Street, Augusta, GA 30912-0100.
Abstract:
This investigation sought to determine if P-selectin-mediated mechanisms contributed to macrophage localization in damaged muscle, an essential process for muscle regeneration. Mice were injected intravenously (i.v.) with soluble P-selectin glycoprotein ligand-1 (sPSGL-1) at 5, 50, or 200 microg/mouse or with 100 microl vehicle alone, and then, lengthening contractions were induced in hindlimb plantar-flexor muscles. The contractions caused fiber damage in soleus muscles, with maximal invasion by CD11b+ mononuclear cells at 24 h post-injury and substantial accumulation of CD11b+ mononuclear cells in the extracellular matrix up to 7 days post-injury. sPSGL-1 treatment caused a dose-dependent decrease in the number of regenerating fibers (P=0.021), as determined by developmental myosin heavy chain (dMHC) expression. This expression was reduced 93% at 7 days post-injury by the highest dose of sPSGL-1, which had no significant influence on intrafiber or extracellular accumulation of cells expressing CD11b, a general marker for phagocytic cells. Additional mice were injected i.v. with 20 microg anti-P-selectin or isotype-control immunoglobulin G and were then subjected to lengthening contractions as before. At 7 days post-injury, soleus muscles from anti-P-selectin-treated mice contained 48% fewer mononuclear cells that bound ER-BMDM1 (P=0.019), a marker for mature macrophages and dendritic cells, and 84% fewer fibers expressing dMHC (P = 0.006), compared with muscles from isotype-injected, control mice. The number of CD11b+ cells was not significantly different between groups. The results are consistent with the concept that P-selectin is involved in the recruitment, maturation, and/or activation of cells that are critical for muscle fiber regeneration.
Insights
P-selectin appears crucial for muscle regeneration by aiding macrophage recruitment and maturation. Blocking P-selectin significantly reduced regenerating muscle fibers and specific immune cell populations post-injury.
Area of Science:
- Muscle regeneration
- Immunology
- Cellular biology
Background:
- Muscle regeneration is vital for repairing damaged muscle tissue.
- Macrophage infiltration is a key early event in muscle repair.
- The role of P-selectin in macrophage recruitment during muscle regeneration requires clarification.
Purpose of the Study:
- To investigate the involvement of P-selectin in macrophage localization to damaged muscle.
- To assess the impact of P-selectin inhibition on muscle regeneration processes.
Main Methods:
- Mice received intravenous injections of soluble P-selectin glycoprotein ligand-1 (sPSGL-1) or anti-P-selectin antibodies.
- Lengthening contractions were induced in hindlimb muscles to cause damage.
- Muscle regeneration was evaluated by quantifying developmental myosin heavy chain (dMHC) expression.
- Immune cell infiltration and maturation markers (CD11b, ER-BMDM1) were assessed.
Main Results:
- sPSGL-1 treatment dose-dependently reduced the number of regenerating fibers (dMHC expression).
- Anti-P-selectin treatment significantly decreased mononuclear cells expressing ER-BMDM1 (mature macrophages/dendritic cells) and reduced dMHC expression.
- Neither sPSGL-1 nor anti-P-selectin significantly altered the overall CD11b+ cell accumulation.
Conclusions:
- P-selectin plays a significant role in the recruitment, maturation, and/or activation of cells essential for muscle fiber regeneration.
- Targeting P-selectin may offer therapeutic potential for enhancing muscle repair.

