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Blocking the IL-1β signalling pathway prevents chronic viral myocarditis and cardiac remodeling
Lisa Kraft1, Tugs Erdenesukh1, Martina Sauter1
1Cardiopathology, Institute for Pathology and Neuropathology, University Hospital Tübingen, Liebermeisterstrasse 8, 72076, Tübingen, Germany.
Insights
Neutralizing Interleukin-1β (IL-1β) in Coxsackievirus B3 (CVB3) myocarditis reduces viral replication, inflammation, and fibrosis. This treatment prevents the progression from acute to chronic myocarditis and cardiac remodeling in mice.
Area of Science:
- Cardiology
- Virology
- Immunology
Background:
- Coxsackieviruses B (CVB) cause acute and chronic myocarditis, potentially leading to dilated cardiomyopathy (DCM).
- Interleukin-1β (IL-1β) is a key mediator of the inflammatory response during viral replication.
Purpose of the Study:
- To investigate the efficacy of IL-1β neutralization in preventing the transition from acute to chronic myocarditis caused by CVB3.
- To analyze the impact of IL-1β blockade on viral load, cardiac damage, fibrosis, and remodeling.
Main Methods:
- A mouse model of CVB3 myocarditis was used.
- Mice were treated with an anti-murine IL-1β antibody at early (days 1-14 post-infection) or late (days 14-28 post-infection) stages.
- Cardiac tissues were analyzed using histology, immunohistochemistry, and molecular biology techniques, including microarray analysis.
Main Results:
- IL-1β neutralization significantly reduced viral replication, cardiac damage, and inflammation in both early and late treatment groups.
- Antibody treatment led to decreased collagen I deposition and reduced interstitial fibrosis.
- Microarray analysis revealed downregulation of extracellular matrix and fibrosis-associated molecules (e.g., TGF-β, TIMP-1, MMP12) in treated mice.
Conclusions:
- Neutralization of IL-1β effectively prevents the development of chronic viral myocarditis.
- This intervention reduces inflammation, interstitial fibrosis, and adverse cardiac remodeling.
- Targeting IL-1β offers a potential therapeutic strategy for patients with acute and chronic myocarditis.
Abstract:
Coxsackieviruses of group B (CVB) are well-known causes of acute and chronic myocarditis. Chronic myocarditis can evolve into dilated cardiomyopathy (DCM) characterized by fibrosis and cardiac remodeling. Interleukin-1β (IL-1β) plays a decisive role in the induction of the inflammatory response as a consequence of viral replication. In this study, we analyzed the effects of IL-1β neutralization on the transition of acute to chronic myocarditis in a mouse model of CVB3 myocarditis. Mice were treated with an anti-murine IL-1β antibody as a surrogate for Canakinumab at different time points post CVB3 infection. Treatment was performed in the early phase (day 1-14 pi, day 3-14 pi) or at a later stage of myocarditis (day 14-28 pi). Subsequently, the hearts were examined histologically, immunohistochemically and by molecular biology. A significant reduction of viral replication, cardiac damage and inflammation was found after administration of the antibody in the early phase and in the later phase of infection. Furthermore, less collagen I deposition and a considerable reduction of fibrosis were found in antibody-treated mice. Using microarray analysis, a significant upregulation of various extracellular matrix and fibrosis-associated molecules was found in CVB3-infected mice, including TGF-β, TIMP-1 and MMP12, as well as diverse matricellular proteins, whereas, these molecules were significantly downregulated in all IL-1β antibody-treated infected mice. Neutralization of IL-1β at different stages of enteroviral infection prevents the development of chronic viral myocarditis by reducing inflammation, interstitial fibrosis and adverse cardiac remodeling. These findings are relevant for the treatment of patients with acute and chronic myocarditis.
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