Up-regulated TLR4 in cardiomyocytes exacerbates heart failure after long-term myocardial infarction
Li Liu1, Yin Wang2, Zhi-Yong Cao3
1Department of Physiology and Key Lab of Ministry of Education in Fertility Preservation and Maintenance, Ningxia Medical University, Yinchuan, China.
Insights
Cardiomyocyte Toll-like receptor 4 (TLR4) expression and function increase after heart attack, promoting inflammation and worsening chronic heart failure (CHF). Targeting TLR4 improved heart function in this study.
Area of Science:
- Cardiovascular Biology
- Immunology
- Molecular Medicine
Background:
- Inflammation in chronic heart failure (CHF) is not fully understood.
- Cardiomyocytes may initiate inflammation via immune receptors like Toll-like receptors (TLRs).
- Previous studies linked TLR4 to inflammation shortly after myocardial infarction (MI).
Purpose of the Study:
- To investigate TLR4 expression and function in cardiomyocytes from failing hearts 4 weeks after MI in rats.
- To determine if cardiomyocyte TLR4 contributes to inflammation and cardiac dysfunction in long-term heart failure.
Main Methods:
- Examined TLR4 mRNA, protein, and cytokine production in rat hearts post-MI.
- Used immunostaining to localize TLR4 in cardiomyocytes and leukocytes.
- Injected lentivirus shRNA targeting TLR4 into infarcted hearts.
- Isolated cardiomyocytes from CHF hearts for further analysis.
- Assessed TLR4 binding with lipopolysaccharide (LPS) and heat shock protein 60 (HSP60).
- Utilized TLR4-blocking antibodies to inhibit TLR4 function.
Main Results:
- Increased TLR4 mRNA, protein, and inflammatory cytokines in both infarct and remote myocardium post-MI.
- TLR4 was upregulated in cardiomyocytes, not infiltrating leukocytes.
- TLR4 knockdown improved heart function and reduced inflammation.
- CHF cardiomyocytes showed increased TLR4 expression, enhanced binding to LPS and HSP60, and more robust cytokine production.
- TLR4-blocking antibodies reduced LPS- and HSP60-induced inflammation.
Conclusions:
- Cardiomyocyte TLR4 expression, ligand binding, and pro-inflammatory function are upregulated in long-term heart failure after MI.
- Upregulated cardiomyocyte TLR4 exacerbates inflammation and contributes to heart failure progression.
- Targeting cardiomyocyte TLR4 may be a therapeutic strategy for chronic heart failure.
Abstract:
It remains unclear whether and how cardiomyocytes contribute to the inflammation in chronic heart failure (CHF). We recently reviewed the capacity of cardiomyocytes to initiate inflammation, by means of expressing certain immune receptors such as toll-like receptors (TLRs) that respond to pathogen- and damage-associated molecular patterns (PAMP and DAMP). Previous studies observed TLR4-mediated inflammation within days of myocardial infarction (MI). This study examined TLR4 expression and function in cardiomyocytes of failing hearts after 4 weeks of MI in rats. The increases of TLR4 mRNA and proteins, as well as inflammatory cytokine production, were observed in both the infarct and remote myocardium. Enhanced immunostaining for TLR4 was observed in cardiomyocytes but not infiltrating leucocytes. The injection of lentivirus shRNA against TLR4 into the infarcted heart decreased inflammatory cytokine production and improved heart function in vivo. Accordingly, in cardiomyocytes isolated from CHF hearts, increases of TLR4 mRNA and proteins were detected. More robust binding of TLR4 with lipopolysaccharide (LPS), a PAMP ligand for TLR4, and heat shock protein 60 (HSP60), a DAMP ligand for TLR4, was observed in CHF cardiomyocytes under a confocal microscope. The maximum binding capacity (Bmax ) of TLR4 was increased for LPS and HSP60, whereas the binding affinity (Kd) was not significantly changed. Furthermore, both LPS and HSP60 induced more robust production of inflammatory cytokines in CHF cardiomyocytes, which was reduced by TLR4-blocking antibodies. We conclude that the expression, ligand-binding capacity and pro-inflammatory function of cardiomyocyte TLR4 are up-regulated after long-term MI, which promote inflammation and exacerbate heart failure.
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