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Activation and Measurement of NLRP3 Inflammasome Activity Using IL-1β in Human Monocyte-derived Dendritic Cells
Published on: May 22, 2014
The Nlrp3 inflammasome promotes myocardial dysfunction in structural cardiomyopathy through interleukin-1β
Nathan A Bracey1, Paul L Beck, Daniel A Muruve
1Department of Medicine, Libin Cardiovascular Institute, University of Calgary, Calgary, Alberta, Canada.
Insights
The Nlrp3 inflammasome drives heart failure by promoting cardiac inflammation and dysfunction via interleukin-1β (IL-1β). Blocking IL-1β signaling or Nlrp3 improves heart function in mice.
Area of Science:
- Cardiovascular Biology
- Inflammation Research
- Molecular Medicine
Background:
- Heart failure involves chronic cardiac inflammation impairing function.
- Mechanisms of sterile inflammation in structural heart disease are unclear.
- Calcineurin transgene (CNTg) overexpression in mice causes cardiac dysfunction.
Purpose of the Study:
- Investigate Nlrp3 inflammasome involvement in CNTg-induced heart dysfunction.
- Determine if IL-1β contributes to myocardial pathology and systolic dysfunction.
- Assess therapeutic potential of targeting IL-1β signaling.
Main Methods:
- Compared Nlrp3 mRNA levels in CNTg and wild-type mice.
- Assessed inflammasome activation markers (caspase-1 cleavage).
- Measured serum IL-1β levels.
- Administered IL-1 receptor antagonist therapy.
- Utilized genetic ablation of Nlrp3.
Main Results:
- Nlrp3 mRNA and inflammasome activation were elevated in CNTg mice.
- Serum IL-1β levels were significantly increased in CNTg animals.
- IL-1 receptor antagonist treatment reduced cardiac inflammation and improved systolic performance.
- Genetic deletion of Nlrp3 attenuated inflammation and improved cardiac function.
Conclusions:
- Nlrp3 inflammasome activation promotes myocardial inflammation and systolic dysfunction in CNTg mice.
- IL-1β production is a key mediator of cardiac pathology in this model.
- Targeting IL-1β signaling offers a potential therapeutic strategy for heart failure.
Abstract:
Heart failure is associated with a low-grade and chronic cardiac inflammation that impairs function; however, the mechanisms by which this sterile inflammation occurs in structural heart disease remain poorly defined. Cardiac-specific heterozygous overexpression of the calcineurin transgene (CNTg) in mice results in cardiac hypertrophy, inflammation, apoptosis and ventricular dilatation. We hypothesized that activation of the Nlrp3 inflammasome, an intracellular danger-sensing pathway required for processing the pro-inflammatory cytokine interleukin-1β (IL-1β), may contribute to myocardial dysfunction and disease progression. Here we report that Nlrp3 mRNA was increased in CNTg mice compared with wild-type. Consistent with inflammasome activation, CNTg animals had increased conversion of pro-caspase-1 to cleaved and activated forms, as well as markedly increased serum IL-1β. Blockade of IL-1β signalling via chronic IL-1 receptor antagonist therapy reduced cardiac inflammation and myocyte pathology in CNTg mice, resulting in improved systolic performance. Furthermore, genetic ablation of Nlrp3 in CNTg mice reduced pro-inflammatory cytokine maturation and cardiac inflammation, as well as improving systolic performance. These findings indicate that activation of the Nlrp3 inflammasome in CNTg mice promotes myocardial inflammation and systolic dysfunction through the production of pro-inflammatory IL-1β. Blockade of IL-1β signalling with the IL-1 receptor antagonist reverses these phenotypes and offers a possible therapeutic approach in the management of heart failure.
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