Increased hyaluronan synthesis contributes to postinfarct healing after ischemia reperfusion injury by supporting macrophage survival and promoting the myofibroblast response.
Does inhibition of hyaluronan synthesis affect macrophage survival and myofibroblast response after ischemia reperfusion injury in mice?
Increased hyaluronan synthesis promotes post-infarct healing by supporting macrophage survival and myofibroblast response after ischemia-reperfusion injury.
RATIONALE: Immediate changes in the ECM (extracellular matrix) microenvironment occur after myocardial ischemia and reperfusion (I/R) injury. OBJECTIVE: Aim of this study was to unravel the role of the early hyaluronan (HA)-rich ECM after I/R. METHODS AND RESULTS: monocytes were unaffected post-I/R compared with control mice. Mechanistically, inhibition of HA synthesis led to increased macrophage apoptosis in vivo and in vitro. In addition, α-SMA (α-smooth muscle actin)-positive cells were reduced in the infarcted myocardium and in the border zone. In vitro, the myofibroblast response as measured by Acta2 mRNA expression was reduced by inhibition of HA synthesis and of CD44 signaling. Furthermore, Has2 KO fibroblasts were less able to contract collagen gels in vitro. The effects of HA/CD44 on fibroblasts and macrophages post-I/R might also affect intercellular cross talk because cardiac fibroblasts were activated by monocyte/macrophages and, in turn, protected macrophages from apoptosis. CONCLUSIONS: Increased HA synthesis contributes to postinfarct healing by supporting macrophage survival and by promoting the myofibroblast response. Additionally, imaging of cardiac HA by chemical exchange saturation transfer post-I/R might have translational value.
Petz et al. (Wed,) conducted a other in Myocardial ischemia and reperfusion (I/R) injury. Inhibition of HA synthesis / Has2 KO vs. Control mice was evaluated on Macrophage apoptosis and myofibroblast response. Increased hyaluronan synthesis contributes to postinfarct healing after ischemia reperfusion injury by supporting macrophage survival and promoting the myofibroblast response.
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