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Dysregulated Interferon Response and Immune Hyperactivation in Severe COVID-19: Targeting STATs as a Novel
Mahdi Eskandarian Boroujeni1, Agata Sekrecka1, Aleksandra Antonczyk1
1Laboratory of Human Molecular Genetics, Institute of Molecular Biology and Biotechnology, Faculty of Biology, Adam Mickiewicz University, Poznań, Poland.
Abstract:
A disease outbreak in December 2019, caused by a novel coronavirus SARS-CoV-2, was named COVID-19. SARS-CoV-2 infects cells from the upper and lower respiratory tract system and is transmitted by inhalation or contact with infected droplets. Common clinical symptoms include fatigue, fever, and cough, but also shortness of breath and lung abnormalities. Still, some 5% of SARS-CoV-2 infections progress to severe pneumonia and acute respiratory distress syndrome (ARDS), with pulmonary edema, acute kidney injury, and/or multiple organ failure as important consequences, which can lead to death. The innate immune system recognizes viral RNAs and triggers the expression of interferons (IFN). IFNs activate anti-viral effectors and components of the adaptive immune system by activating members of the STAT and IRF families that induce the expression of IFN-stimulated genes (ISG)s. Among other coronaviruses, such as Middle East respiratory syndrome coronavirus (MERS-CoV) and SARS-CoV, common strategies have been identified to antagonize IFN signaling. This typically coincides with hyperactive inflammatory host responses known as the "cytokine storm" that mediate severe lung damage. Likewise, SARS-CoV-2 infection combines a dysregulated IFN response with excessive production of inflammatory cytokines in the lungs. This excessive inflammatory response in the lungs is associated with the local recruitment of immune cells that create a pathogenic inflammatory loop. Together, it causes severe lung pathology, including ARDS, as well as damage to other vulnerable organs, like the heart, spleen, lymph nodes, and kidney, as well as the brain. This can rapidly progress to multiple organ exhaustion and correlates with a poor prognosis in COVID-19 patients. In this review, we focus on the crucial role of different types of IFN that underlies the progression of SARS-CoV-2 infection and leads to immune cell hyper-activation in the lungs, exuberant systemic inflammation, and multiple organ damage. Consequently, to protect from systemic inflammation, it will be critical to interfere with signaling cascades activated by IFNs and other inflammatory cytokines. Targeting members of the STAT family could therefore be proposed as a novel therapeutic strategy in patients with severe COVID-19.
Insights
Severe COVID-19 involves a dysregulated interferon response, leading to a cytokine storm, lung damage, and multi-organ failure. Targeting STAT signaling pathways offers a potential therapeutic strategy for critical illness.
Area of Science:
- Immunology
- Virology
- Pathology
Background:
- COVID-19, caused by SARS-CoV-2, presents with respiratory symptoms and can progress to severe pneumonia and acute respiratory distress syndrome (ARDS).
- The innate immune system's interferon (IFN) response is crucial for antiviral defense but can be dysregulated in SARS-CoV-2 infections.
- Dysregulated IFN signaling contributes to a 'cytokine storm,' excessive inflammation, and multi-organ damage.
Purpose of the Study:
- To review the role of interferons (IFNs) in SARS-CoV-2 infection progression.
- To elucidate the mechanisms linking IFN dysregulation to severe COVID-19 pathology.
- To identify potential therapeutic targets for mitigating severe disease.
Main Methods:
- Literature review focusing on interferon signaling pathways in SARS-CoV-2 infection.
- Analysis of host immune responses, including cytokine storm and STAT/IRF activation.
- Examination of the link between immune dysregulation and organ damage.
Main Results:
- SARS-CoV-2 antagonizes IFN signaling, leading to a hyperactive inflammatory response.
- Excessive inflammation recruits immune cells, causing lung pathology (ARDS) and damage to organs like the heart, kidney, and brain.
- This immune dysregulation correlates with poor prognosis in severe COVID-19 patients.
Conclusions:
- Interferon dysregulation is central to severe COVID-19 pathogenesis.
- Targeting signaling cascades activated by IFNs and inflammatory cytokines is critical for managing systemic inflammation.
- Interference with STAT family signaling presents a promising therapeutic strategy for severe COVID-19.
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