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Published on: June 3, 2018
Cellular FLICE-inhibitory protein protects against cardiac remodelling after myocardial infarction
Jinfeng Xiao1, Mark Moon, Ling Yan
1Department of Cardiology, Renmin Hospital of Wuhan University, Jiefang Road 238, Wuhan, 430060, People's Republic of China.
Abstract:
Cellular FLICE-inhibitory protein (cFLIP) is a member of the tumour necrosis factor signalling pathway and a regulator of apoptosis, and it has a role in cardiac remodelling following myocardial infarction (MI) that remains largely uncharacterised. This study aimed to determine the function of cFLIP as a potential mediator of post-infarction cardiac remodelling. Our results show diminished cFLIP expression in failing human and murine post-infarction hearts. Genetically engineered cFLIP heterozygous (cFLIP+/-, HET) mice, cardiac-specific cFLIP-overexpressing transgenic (TG) mice and their respective wild-type (WT) and non-transgenic controls were subjected to MI by permanent ligation of their left anterior descending artery. Cardiac structure and function were assessed by echocardiography and pressure-volume loop analysis. Apoptosis, inflammation, angiogenesis, and fibrosis were evaluated in the myocardium. The HET mice showed exacerbated left ventricular (LV) contractile dysfunction, dilatation, and remodelling compared with WT mice 28 days after MI. Impaired LV function in the HET mice was associated with increases in infarct size, hypertrophy, apoptosis, inflammation, and interstitial fibrosis, and reduced capillary density. The TG mice displayed the opposite phenotype after MI. Moreover, adenovirus-mediated overexpression of cFLIP decreased LV dilatation and improved LV function and remodelling in both HET and WT mice. Further analysis of signalling events suggests that cFLIP promotes cardioprotection by interrupting JNK1/2 signalling and augmenting Akt signalling. In conclusion, our results indicate that cFLIP protects against the development of post-infarction cardiac remodelling. Thus, cFLIP gene delivery shows promise as a clinically powerful and novel therapeutic strategy for the treatment of heart failure after MI.
Insights
Cellular FLICE-inhibitory protein (cFLIP) protects the heart after myocardial infarction (MI). Lower cFLIP levels worsen cardiac remodelling, while increasing cFLIP improves heart function and reduces damage.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Cell Death Regulation
Background:
- Cellular FLICE-inhibitory protein (cFLIP) is involved in apoptosis and the TNF signaling pathway.
- The role of cFLIP in cardiac remodeling post-myocardial infarction (MI) is not well understood.
- cFLIP expression is reduced in failing post-MI human and murine hearts.
Purpose of the Study:
- To investigate the function of cFLIP as a mediator of cardiac remodeling after MI.
- To determine the therapeutic potential of cFLIP in treating heart failure post-MI.
Main Methods:
- Utilized cFLIP heterozygous (HET) and transgenic (TG) mice, alongside wild-type (WT) controls, subjected to MI.
- Assessed cardiac structure and function using echocardiography and pressure-volume loop analysis.
- Evaluated myocardial apoptosis, inflammation, angiogenesis, and fibrosis.
Main Results:
- HET mice exhibited worsened left ventricular (LV) dysfunction, dilatation, and remodeling post-MI compared to WT mice.
- TG mice showed improved cardiac function and reduced remodeling post-MI.
- Overexpression of cFLIP, via adenovirus, improved LV function and reduced dilatation in both HET and WT mice.
- cFLIP was found to interrupt JNK1/2 signaling and augment Akt signaling, promoting cardioprotection.
Conclusions:
- cFLIP plays a protective role against post-MI cardiac remodeling.
- cFLIP gene delivery represents a promising therapeutic strategy for heart failure following MI.

