Key result
TLR9 deficiency worsens 14-day post-MI survival, driven by increased cardiac rupture.
Why the study?
The role of Toll-like receptor 9 (TLR9) in cardiac remodeling after myocardial infarction had not been elucidated.
TLR9 signaling prevents cardiac rupture after myocardial infarction in mice by promoting the proliferation and differentiation of cardiac fibroblasts, independent of acute inflammatory responses.
TLR9 deficiency lowers post-MI survival in mice; leaves open its role in human postinfarct remodeling.
We have reported that the Toll-like receptor 9 (TLR9) signaling pathway plays an important role in the development of pressure overload-induced inflammatory responses and heart failure. However, its role in cardiac remodeling after myocardial infarction has not been elucidated. TLR9-deficient and control C57Bl/6 wild-type mice were subjected to left coronary artery ligation. The survival rate 14 days postoperation was significantly lower in TLR9-deficient mice than that in wild-type mice with evidence of cardiac rupture in all dead mice. Cardiac magnetic resonance imaging showed no difference in infarct size and left ventricular wall thickness and function between TLR9-deficient and wild-type mice. There were no differences in the number of infiltrating inflammatory cells and the levels of inflammatory cytokine mRNA in infarct hearts between TLR9-deficient and wild-type mice. The number of α-smooth muscle actin (αSMA)-positive myofibroblasts and αSMA/Ki67-double-positive proliferative myofibroblasts was increased in the infarct and border areas in infarct hearts compared with those in sham-operated hearts in wild-type mice, but not in TLR9-deficient mice. The class B CpG oligonucleotide increased the phosphorylation level of NF-κB and the number of αSMA-positive and αSMA/Ki67-double-positive cells and these increases were attenuated by BAY1-7082, an NF-κB inhibitor, in cardiac fibroblasts isolated from wild-type hearts. The CpG oligonucleotide showed no effect on NF-κB activation or the number of αSMA-positive and αSMA/Ki67-double-positive cells in cardiac fibroblasts from TLR9-deficient hearts. Although the TLR9 signaling pathway is not involved in the acute inflammatory response in infarct hearts, it ameliorates cardiac rupture possibly by promoting proliferation and differentiation of cardiac fibroblasts.
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Omiya et al. (2016) studied Myocardial infarction. TLR9 deficiency vs. Wild-type mice was evaluated on Survival rate 14 days postoperation. TLR9 deficiency resulted in a significantly lower survival rate 14 days post-myocardial infarction compared to wild-type mice, driven by cardiac rupture.
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