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Coronary Artery Ligation and Intramyocardial Injection in a Murine Model of Infarction
Published on: June 7, 2011
S100A9 Links Inflammation and Repair in Myocardial Infarction
Goran Marinković1, Duco Steven Koenis2, Lisa de Camp3
1From the Department of Clinical Sciences Malmö, Lund University, Sweden (G.M., I.G., J.N., A.S.).
Insights
Short-term blockade of S100A9 protein after myocardial infarction reduces inflammation and improves heart function. However, long-term blockade impairs cardiac repair by disrupting immune cell function and worsening outcomes.
Area of Science:
- Cardiovascular Research
- Immunology
- Regenerative Medicine
Background:
- S100A9 (alarming protein) is a potential therapeutic target for myocardial infarction (MI).
- Short-term S100A9 blockade post-MI reduces inflammation and improves cardiac function.
Purpose of the Study:
- To evaluate the impact of S100A9 blockade on postischemic cardiac repair.
- To determine the effects of extended S100A9 blockade on cardiac function and immune cell dynamics.
Main Methods:
- Assessed cardiac function, hematopoietic response, and myeloid phagocyte dynamics in wild-type mice post-MI treated with S100A9 blocker ABR-238901 for 7 or 21 days.
- Investigated the role of transcription factor Nur77 in monocyte-macrophage transition.
- Examined cardiac function in S100A9 knockout mice post-MI.
Main Results:
- Extended S100A9 blockade (21 days) led to cardiac dysfunction and left ventricle dilation.
- Treatment impaired hematopoietic stem/progenitor cell proliferation and pro-reparatory stem cell production.
- Monocyte trafficking, reparatory macrophage differentiation, and efferocytosis were inhibited, increasing scar size.
- S100A9 blockade antagonized Nur77 upregulation, crucial for reparatory macrophage development.
- S100A9 deficiency in mice post-MI resulted in impaired cardiac function.
Conclusions:
- S100A9 is critical for both inflammatory and reparatory immune responses post-MI.
- Long-term S100A9 blockade detrimentally affects cardiac recovery.
- A therapeutic window targeting the inflammatory phase is optimal for S100A9 blockade in acute MI.
Rationale:
The alarmin S100A9 has been identified as a potential therapeutic target in myocardial infarction. Short-term S100A9 blockade during the inflammatory phase post-myocardial infarction inhibits systemic and cardiac inflammation and improves cardiac function long term.
Objective:
To evaluate the impact of S100A9 blockade on postischemic cardiac repair.
Methods And Results:
We assessed cardiac function, hematopoietic response, and myeloid phagocyte dynamics in WT (wild type) C57BL/6 mice with permanent coronary artery ligation, treated with the specific S100A9 blocker ABR-238901 for 7 or 21 days. In contrast to the beneficial effects of short-term therapy, extended S100A9 blockade led to progressive deterioration of cardiac function and left ventricle dilation. The treatment reduced the proliferation of Lin-Sca-1+c-Kit+ hematopoietic stem and progenitor cells in the bone marrow and the production of proreparatory CD150+CD48-CCR2+ hematopoietic stem cells. Monocyte trafficking from the spleen to the myocardium and subsequent phenotype switching to reparatory Ly6CloMerTKhi macrophages was also impaired, leading to inefficient efferocytosis, accumulation of apoptotic cardiomyocytes, and a larger myocardial scar. The transcription factor Nur77 (Nr4a1 [nuclear receptor subfamily 4 group A member 1]) mediates the transition from inflammatory Ly6Chi monocytes to reparatory Ly6Clo macrophages. S100A9 upregulated the levels and activity of Nur77 in monocytes and macrophages in vitro and in Ly6Chi/int monocytes in vivo, and S100A9 blockade antagonized these effects. Finally, the presence of reparatory macrophages in the myocardium was also impaired in S100A9-/- mice with permanent myocardial ischemia, leading to depressed cardiac function long term.
Conclusions:
We show that S100A9 plays an important role in both the inflammatory and the reparatory immune responses to myocardial infarction. Long-term S100A9 blockade negatively impacts cardiac recovery and counterbalances the beneficial effects of short-term therapy. These results define a therapeutic window targeting the inflammatory phase for optimal effects of S100A9 blockade as potential immunomodulatory treatment in acute myocardial infarction.
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