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December 17, 2001Circulation149 citations

Interleukin-12 Receptor/STAT4 Signaling Is Required for the Development of Autoimmune Myocarditis in Mice by an Interferon-γ–Independent Pathway

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MAMarina AfanasyevaIvanovo State Power UniversityYWYan WangShriners Hospitals for Children - ErieZKZiya KayaInterventional Cardiology

Key Result

IL-12/IL-12R/STAT4 signaling promotes the development of experimental autoimmune myocarditis in mice, whereas IFN-gamma plays a protective role by suppressing the disease.

Structured PICO

P
Population
Mice induced with experimental autoimmune myocarditis via cardiac myosin immunization.
I
Intervention
Genetic deficiency of IL-12Rbeta1, STAT4, or IFN-gamma; treatment with exogenous IL-12, IFN-gamma depleting antibody, or recombinant IFN-gamma
C
Comparator
Wild-type or untreated control mice
O
Outcome
Development and severity of experimental autoimmune myocarditissurrogate

In a murine model of autoimmune myocarditis, IL-12/STAT4 signaling promotes disease development while IFN-gamma unexpectedly plays a protective role by controlling the expansion of activated T lymphocytes.

Abstract

BACKGROUND: Interleukin (IL)-12 exerts a potent proinflammatory effect by stimulating T-helper (Th) 1 responses. This effect is believed to be mediated primarily through the activation of STAT4 and subsequent production of interferon (IFN)-gamma. Methods and Results- We examined the role of IL-12 receptor (IL-12R) signaling in the development of murine experimental autoimmune myocarditis (EAM) induced by cardiac myosin immunization. Both IL-12Rbeta1-deficient mice and STAT4-deficient mice were resistant to the induction of myocarditis. Treatment with exogenous IL-12 exacerbated disease. We questioned whether IFN-gamma is required for the disease-promoting activity of IL-12. On the contrary, we found that IFN-gamma suppresses EAM. Lack of IFN-gamma due to either depletion with an antibody or a genetic deficiency exacerbated myocarditis. Spleens from IFN-gamma-deficient mice immunized with cardiac myosin showed increased cellularity; greater numbers of CD3+, CD4+, CD8+, and IL-2-producing cells; and heightened ability to produce cytokines on stimulation in vitro. Treatment of mice with recombinant IFN-gamma suppressed the development of myocarditis. CONCLUSIONS: IL-12/IL-12R/STAT4 signaling promotes the development of EAM. In contrast, IFN-gamma plays a protective role. The disease-limiting effects of IFN-gamma might be explained by its ability to control the expansion of activated T lymphocytes.

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Cite This Study

Afanasyeva et al. (2001) studied Experimental autoimmune myocarditis. IL-12Rbeta1 deficiency, STAT4 deficiency, exogenous IL-12, and IFN-gamma modulation vs. Wild-type or untreated control mice was evaluated on Development of autoimmune myocarditis. IL-12/IL-12R/STAT4 signaling promotes the development of experimental autoimmune myocarditis in mice, whereas IFN-gamma plays a protective role by suppressing the disease.

synapsesocial.com/papers/6a229dfed5ef0a743714abd8https://doi.org/10.1161/hc5001.100629
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of Intranasal Administration of Recombinant Murine Interferon-γ on Murine Acute Myocarditis Caused by Encephalomyocarditis Virus1998 · 31 citations
  2. 2Recombinant Murine Interleukin-12 Facilitates Induction of Cardiac Myosin–Specific Type 1 Helper T Cells in Rats1998 · 95 citations
  3. 3Lethal Autoimmune Myocarditis in Interferon-γ Receptor–Deficient Mice2001 · 104 citations
  4. 4Neutralization of endogenous tumor necrosis factor ameliorates the severity of myosin-induced myocarditis.1992 · 131 citations
  5. 5Long-term follow up of patients with dilated heart muscle disease treated with human leucocytic interferon alpha or thymic hormones initial results.1996 · 66 citations