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.
Abstract