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Published on: September 3, 2020
Myeloid cell-derived LRG attenuates adverse cardiac remodelling after myocardial infarction
Shohei Kumagai1, Hiroyuki Nakayama1, Minoru Fujimoto2
1Laboratory of Clinical Science and Biomedicine, Graduate School of Pharmacological Sciences, Osaka University, 1-6 Yamada-oka, Suita, Osaka, Japan.
Insights
Leucine-rich α2-glycoprotein (LRG) produced by myeloid cells protects the heart after myocardial infarction (MI). LRG deficiency worsens cardiac fibrosis and dysfunction, highlighting its cardioprotective role.
Area of Science:
- Cardiovascular Biology
- Immunology
- Regenerative Medicine
Background:
- Leucine-rich α2-glycoprotein (LRG) is a biomarker for chronic inflammatory diseases, including heart failure.
- The specific role of LRG in cardiac remodeling following myocardial infarction (MI) is not fully understood.
Purpose of the Study:
- To investigate the functional significance of LRG in cardiac remodeling after MI.
- To determine the source and effects of LRG in the post-MI heart.
Main Methods:
- Myocardial infarction (MI) was induced in wild-type (WT) and LRG-deficient (LRG(-/-)) mice.
- Gene expression, protein levels, and cell-specific LRG production (macrophages, neutrophils) were analyzed.
- Cardiac function, fibrosis, and capillary density were assessed in WT and LRG(-/-) mice post-MI.
- Bone marrow transplantation experiments were conducted to elucidate the cellular origin of LRG's effects.
Main Results:
- LRG expression was upregulated in the post-MI myocardium, primarily produced by infiltrating myeloid cells.
- LRG deficiency exacerbated myocardial fibrosis, cardiac dysfunction, and reduced capillary density in the infarct border zone.
- LRG deficiency impaired the pro-angiogenic smad1/5/8 signaling pathway.
- Transplantation of WT bone marrow into LRG(-/-) mice attenuated cardiac fibrosis and improved function, restoring capillary density.
Conclusions:
- LRG, secreted by myeloid cells in the heart, acts as a novel cardioprotective factor that suppresses adverse cardiac remodeling post-MI.
- LRG signaling represents a potential therapeutic target for cardiovascular diseases, particularly after myocardial infarction.
Aims:
Leucine-rich α2-glycoprotein (LRG) is considered as a biomarker of the clinical activities of chronic inflammatory diseases, including heart failure. However, its pathophysiological roles in cardiac remodelling after myocardial infarction (MI) remain to be clarified. In this study, we have addressed functional roles of LRG in cardiac remodelling after MI.
Methods And Results:
MI was generated by ligating the left coronary artery in mice. Real-time reverse transcription (RT)-PCR and immunoblot analyses revealed that the expressions of LRG transcript and protein were up-regulated in post-infarct myocardium. LRG protein was produced by heart-infiltrating myeloid cells, such as macrophages and neutrophils. To elucidate functional roles of LRG in cardiac remodelling, we generated MI in wild-type (WT) and LRG-deficient (LRG(-/-)) mice and found that LRG gene ablation aggravated myocardial fibrosis with cardiac dysfunction after MI. Immunohistochemical analyses with anti-CD31 antibody revealed that capillary density decreased at border zone in LRG(-/-) mice compared with WT mice. Consistently, the expression of apelin receptor was reduced in LRG(-/-) mice, implying that the impaired angiogenic activity is associated with adverse cardiac remodelling in LRG(-/-) mice. Moreover, LRG gene ablation suppressed the activation of smad1/5/8, a pro-angiogenic signalling pathway. Finally, the transplantation of WT bone marrow cells into LRG(-/-) mice attenuated cardiac fibrosis with functional improvement after MI, accompanied by restoration of capillary density compared with the bone marrow transplantation from LRG(-/-) mice.
Conclusion:
LRG, produced by heart-infiltrating myeloid cells, suppresses adverse cardiac remodelling after MI as a novel cardioprotective factor. LRG signalling could be a therapeutic target against cardiovascular diseases.
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