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Myocardial Infarction in Neonatal Mice, A Model of Cardiac Regeneration
Published on: May 24, 2016
MicroRNA-21 prevents excessive inflammation and cardiac dysfunction after myocardial infarction through targeting
Linshan Yang1,2, Bo Wang1,3, Qingqing Zhou1
1Institute of Heart Failure, Shanghai East Hospital, Tongji University School of Medicine, 200120, Shanghai, China.
Abstract:
The excessive inflammation triggered by damage-associated molecular patterns (DAMPs) after myocardial infarction (MI) is responsible for the development of cardiac dysfunction and adverse remodeling, while the mechanisms by which inflammation is fine tuned remain to be fully elucidated. MicroRNA-21 (miR-21) has been shown to function in cardiovascular diseases, while its role in inflammatory responses and cardiac function post MI in mice remains unknown. Here, we found that miR-21 expression was markedly increased in border and infarct areas of cardiac tissues during the early inflammatory phase of MI model established by ligating the left-anterior descending coronary artery. MiR-21 knockout mice had decreased survival rates, worse cardiac dysfunction, and increased infarct and scar areas after MI compared with WT mice. MiR-21 knockout mice showed significantly higher levels of inflammatory cytokines including IL-1β, IL-6, and TNF-α in cardiac tissues, as well as infiltration of CD11b+ monocytes/macrophages with higher expression level of inflammatory cytokines. MI induced the great release of high mobility group protein B1 (HMGB1) and heat shock protein 60 (HSP60) in cardiac tissue. MiR-21 deficiency significantly promoted the inflammatory cytokine production triggered by DAMPs in macrophages, whereas, miR-21 overexpression markedly inhibited the inflammatory cytokine production. Mechanistically, miR-21 deficiency enhanced p38 and NF-κB signaling activation in cardiac tissue post MI and macrophages treated with DAMPs. MiR-21 was found to directly target kelch repeat and BTB (POZ) domain containing 7 (KBTBD7), which promoted DAMP-triggered inflammatory responses in macrophages. Furthermore, KBTBD7 interacted with MKK3/6 and promoted their activation, which in turn enhanced the activation of downstream p38 and NF-κB signaling induced by DAMPs. Therefore, our findings demonstrate that miR-21 attenuates inflammation, cardiac dysfunction, and maladaptive remodeling post MI through targeting KBTBD7 and inhibiting p38 and NF-κB signaling activation, suggesting that miR-21 may function as a novel potential therapeutic target for MI.
Insights
MicroRNA-21 (miR-21) protects against heart attack damage by reducing inflammation and improving cardiac function. This study reveals miR-21 targets KBTBD7, inhibiting inflammatory pathways for potential therapeutic use in myocardial infarction.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Immunology
Background:
- Excessive inflammation post-myocardial infarction (MI) contributes to cardiac dysfunction.
- Mechanisms regulating inflammation after MI are not fully understood.
- The role of microRNA-21 (miR-21) in post-MI cardiac inflammation and function is unknown.
Purpose of the Study:
- To investigate the role of miR-21 in the inflammatory response and cardiac function following myocardial infarction in a mouse model.
- To elucidate the molecular mechanisms underlying miR-21's function in post-MI cardiac remodeling and inflammation.
Main Methods:
- Established a myocardial infarction (MI) model in wild-type (WT) and miR-21 knockout (KO) mice by ligating the left-anterior descending coronary artery.
- Assessed cardiac function, infarct size, survival rates, and inflammatory cytokine levels (IL-1β, IL-6, TNF-α) in WT and miR-21 KO mice post-MI.
- Investigated the effect of miR-21 on damage-associated molecular pattern (DAMP)-induced inflammatory responses in macrophages and identified miR-21's direct target gene (KBTBD7) and its signaling pathways (p38, NF-κB).
Main Results:
- MiR-21 expression was significantly upregulated in cardiac tissues during the early inflammatory phase of MI.
- MiR-21 KO mice exhibited decreased survival, exacerbated cardiac dysfunction, larger infarct/scar areas, and elevated inflammatory cytokine levels and immune cell infiltration compared to WT mice.
- MiR-21 deficiency enhanced DAMP-triggered inflammatory cytokine production and p38/NF-κB signaling activation, while miR-21 overexpression inhibited these responses. MiR-21 directly targets KBTBD7, which negatively regulates DAMP-induced inflammation via the MKK3/6-p38/NF-κB axis.
Conclusions:
- MiR-21 plays a protective role in attenuating inflammation, cardiac dysfunction, and adverse remodeling post-MI.
- MiR-21 exerts its protective effects by targeting KBTBD7, thereby inhibiting p38 and NF-κB signaling activation.
- MiR-21 represents a potential novel therapeutic target for managing myocardial infarction.
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