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Published on: July 10, 2018
Effects of Purinergic Receptor Deletion or Pharmacologic Modulation on Pulmonary Inflammation in Mice
Gregory S Whitehead1, Tadeusz P Karcz1,2, Dilip K Tosh3
1Immunogenetics Group, Immunity, Inflammation and Disease Laboratory, NIEHS, National Institutes of Health, Research Triangle Park, Durham, North Carolina 27709, United States.
Abstract:
COVID-19 disease is associated with progressive accumulation of SARS-CoV-2-specific mRNA, which is recognized by innate immune receptors, such as TLR3. This in turn leads to dysregulated production of multiple cytokines, including IL-6, IFN-γ, CXCL1, and TNF-α. Excessive production of these cytokines leads to acute lung injury (ALI), which consequently compromises alveolar exchange of O2 and CO2. It is therefore of considerable interest to develop novel therapies that reduce pulmonary inflammation and stem production of pro-inflammatory cytokines, potentially for COVID-19 patients that are at high risk of developing severe disease. Purinergic signaling has a central role in fine-tuning the innate immune system, with P2 (nucleotide) receptor antagonists and adenosine receptor agonists having anti-inflammatory effects. Accordingly, we focused here on the potential role of purinergic receptors in driving neutrophilic inflammation and cytokine production in a mouse model of pulmonary inflammation. To mimic the effects of SARS-CoV-2-specific RNA accumulation in mice, we administered progressively increasing daily doses of a viral mimetic, polyinosinic:polycytidylic acid [poly(I:C)] into the airways of mice over the course of 1 week. Some mice also received increasing daily doses of ovalbumin to mimic virus-encoded protein accumulation. Animals receiving both poly(I:C) and ovalbumin displayed particularly high cytokine levels and neutrophilia, suggestive of both innate and antigen-specific, adaptive immune responses. The extent of these responses was diminished by genetic deletion (P2Y14R, P2X7R) or pharmacologic modulation (P2Y14R antagonists, A3AR agonists) of purinergic receptors. These results suggest that pharmacologic modulation of select purinergic receptors might be therapeutically useful in treating COVID-19 and other pulmonary infections.
Insights
This study reveals that targeting purinergic receptors can reduce inflammation and cytokine production in lung injury models. Modulating these receptors may offer new therapies for COVID-19 and other pulmonary infections.
Area of Science:
- Immunology
- Pharmacology
- Respiratory Medicine
Background:
- COVID-19 involves SARS-CoV-2 mRNA triggering innate immune receptors like TLR3, leading to excessive cytokine release and acute lung injury (ALI).
- Purinergic signaling, involving P2 and adenosine receptors, plays a key role in regulating innate immunity and exhibits anti-inflammatory properties.
Purpose of the Study:
- To investigate the role of purinergic receptors in mediating neutrophilic inflammation and cytokine production in a mouse model of pulmonary inflammation.
- To explore the therapeutic potential of modulating purinergic receptors for conditions like COVID-19.
Main Methods:
- A mouse model was established using polyinosinic:polycytidylic acid [poly(I:C)] to mimic viral RNA accumulation and ovalbumin for protein accumulation.
- Mice were treated with genetic deletion (P2Y14R, P2X7R) or pharmacologic modulation (P2Y14R antagonists, A3AR agonists) of specific purinergic receptors.
- Cytokine levels and neutrophilia were assessed to evaluate the inflammatory response.
Main Results:
- Combined administration of poly(I:C) and ovalbumin induced significant neutrophilia and elevated cytokine levels (IL-6, IFN-γ, CXCL1, TNF-α).
- Genetic deletion or pharmacologic inhibition of P2Y14R and P2X7R receptors, as well as A3AR agonism, significantly diminished these inflammatory responses.
- These findings highlight the involvement of purinergic signaling in driving pulmonary inflammation.
Conclusions:
- Purinergic receptors, particularly P2Y14R and P2X7R, are key mediators of pulmonary inflammation and cytokine production.
- Pharmacologic modulation of these purinergic receptors shows promise as a therapeutic strategy for managing severe COVID-19 and other pulmonary infections.
- Targeting purinergic signaling pathways could offer novel treatment options for inflammatory lung diseases.

