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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
IL-17A Restrains Antiviral Immunity to Promote Chikungunya Virus Infection and Pathogenesis in the Heart
Insights
Chikungunya virus (CHIKV) infection can cause heart problems. Blocking interleukin-17A (IL-17A) signaling reduces CHIKV replication and inflammation, offering a potential therapy for CHIKV-induced cardiovascular disease.
Area of Science:
- Virology
- Immunology
- Cardiology
Background:
- Chikungunya virus (CHIKV) infection is increasingly linked to cardiovascular complications.
- The mechanisms driving CHIKV-induced cardiovascular disease (CVD) and effective therapies are lacking.
- Elevated interleukin-17A (IL-17A) levels are reported in CHIKV patients, but its role in cardiac disease is unclear.
Purpose of the Study:
- To investigate the contribution of IL-17A signaling to CHIKV-associated cardiac pathology.
- To explore IL-17A signaling as a potential therapeutic target for CHIKV-induced CVD.
Main Methods:
- Utilized heterozygous interferon receptor-deficient mice and primary human cardiac fibroblasts.
- Assessed CHIKV infection, IL-17A production, and type I interferon responses.
- Employed genetic deletion of IL-17A signaling and pharmacological blockade with Brodalumab.
Main Results:
- CHIKV infection induced IL-17A production in the heart.
- Mice deficient in IL-17A signaling showed resistance to CHIKV infection.
- IL-17A blockade enhanced type I interferon responses and reduced viral burden and inflammation.
- Therapeutic blockade of IL-17A signaling post-infection mitigated cardiac injury.
Conclusions:
- IL-17A signaling is a critical regulator of CHIKV replication and cardiac inflammation.
- The IL-17A/IL-17RA axis represents a promising therapeutic target for CHIKV-associated cardiovascular disease.
Abstract:
Chikungunya virus (CHIKV) infection is increasingly linked to cardiovascular complications, but the mechanisms underlying CHIKV-induced cardiovascular disease (CVD) remain unclear, and targeted therapies are lacking. Although elevated interleukin-17A (IL-17A) levels have been reported in CHIKV patients and associated with cardiovascular pathology, its role in CHIKV-induced cardiac disease is poorly defined. To address this question, we employed our newly developed heterozygous interferon α/β/γ receptor-deficient ( Ifnag +/- ) mice and primary human cardiac fibroblasts to investigate the contribution of IL-17A signaling to CHIKV-associated cardiac pathology. We found that CHIKV infection induced IL-17A production in the heart, and that mice deficient in Il17a ( Il17a -/- ) and in its receptor gene, Il-17ra ( Il17ra -/- ), exhibited marked resistance to CHIKV infection in both cardiac tissue and primary cardiac fibroblasts. Genetic deletion of IL-17A signaling significantly enhanced type I interferon responses and decreased viral burden in mouse hearts. Interestingly, blockade of IL-17RA with an FDA-approved monoclonal antibody for plaque psoriasis, Brodalumab, drastically increased type I interferon production and reduced viral replication in both human cardiac fibroblasts and human embryonic kidney 293 (HEK 293) cells. In addition, inhibition of IL-17A signaling suppressed the expression of pro-inflammatory mediators, including Il-1β , Tnf-α , and Cxcl2 , reduced immune cell infiltration into cardiac tissue, and mitigated cardiac injury. Importantly, therapeutic blockade of IL-17A signaling after CHIKV infection reduced viral replication in both the heart and circulation. Collectively, these findings identify IL-17A signaling as a critical regulator of CHIKV replication and cardiac inflammation and highlight the IL-17A/IL-17RA axis as a promising therapeutic target for CHIKV-associated cardiovascular disease.
Importance:
Chikungunya virus (CHIKV) infection has been frequently associated with cardiovascular complications, yet the host pathways that promote viral infection and cardiac injury remain poorly understood. Here, we identify IL-17A signaling as a previously unrecognized regulator of CHIKV pathogenesis in the heart. Using a novel heterozygous interferon receptor-deficient mouse model and primary human cardiac fibroblasts, we demonstrate that IL-17A signaling facilitates CHIKV replication via suppressing antiviral type I interferon responses. Genetic deletion or pharmacological blockade with an FDA-approved monoclonal antibody of IL-17A signaling reduced viral burden, attenuated inflammatory cytokine production, limited immune cell infiltration, and protected against cardiac injury. Importantly, therapeutic inhibition of IL-17A signaling after infection remained effective in reducing viral replication in both cardiac tissue and circulation and mitigating cardiac damage. These findings reveal a critical role for the IL-17A/IL-17RA axis in linking antiviral immunity to CHIKV-induced cardiovascular disease and identify a potential translatable therapeutic target for CHIKV-caused cardiac complications.
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