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Association of COVID-19 inflammation with activation of the C5a-C5aR1 axis
Julien Carvelli1,2, Olivier Demaria3, Frédéric Vély4,5
1Assistance Publique des Hôpitaux de Marseille, Hôpital de la Timone, Réanimation des Urgences, Marseilles, France.
Insights
The C5a-C5aR1 pathway drives inflammation in COVID-19 acute respiratory distress syndrome. Blocking this axis with antibodies reduced myeloid cell infiltration and lung injury in preclinical models.
Area of Science:
- Immunology
- Pathophysiology
- Translational Medicine
Background:
- COVID-19, caused by SARS-CoV-2, is a pandemic disease.
- The C5a complement factor and its receptor C5aR1 are implicated in inflammatory responses.
Purpose of the Study:
- To investigate the role of the C5a-C5aR1 axis in COVID-19 severity.
- To evaluate the therapeutic potential of C5aR1 blockade.
Main Methods:
- Longitudinal analysis of immune cells and soluble factors in COVID-19 patients.
- Phenotypic analysis of blood and bronchoalveolar lavage fluid.
- In vitro and in vivo studies using anti-C5aR1 antibodies and C5aR1 knock-in mice.
Main Results:
- Soluble C5a levels correlated with COVID-19 severity.
- High C5aR1 expression was observed in myeloid cells of COVID-19 patients.
- Anti-C5aR1 antibodies inhibited myeloid cell recruitment and activation, and reduced acute lung injury in mice.
Conclusions:
- The C5a-C5aR1 axis plays a critical role in COVID-19-associated acute respiratory distress syndrome.
- Targeting C5aR1 may be a viable therapeutic strategy to mitigate lung inflammation and injury in severe COVID-19.
Abstract:
Coronavirus disease 2019 (COVID-19) is a disease caused by infection with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and has resulted in a pandemic1. The C5a complement factor and its receptor C5aR1 (also known as CD88) have a key role in the initiation and maintenance of several inflammatory responses by recruiting and activating neutrophils and monocytes1. Here we provide a longitudinal analysis of immune responses, including phenotypic analyses of immune cells and assessments of the soluble factors that are present in the blood and bronchoalveolar lavage fluid of patients at various stages of COVID-19 severity, including those who were paucisymptomatic or had pneumonia or acute respiratory distress syndrome. The levels of soluble C5a were increased in proportion to the severity of COVID-19 and high expression levels of C5aR1 receptors were found in blood and pulmonary myeloid cells, which supports a role for the C5a-C5aR1 axis in the pathophysiology of acute respiratory distress syndrome. Anti-C5aR1 therapeutic monoclonal antibodies prevented the C5a-mediated recruitment and activation of human myeloid cells, and inhibited acute lung injury in human C5aR1 knock-in mice. These results suggest that blockade of the C5a-C5aR1 axis could be used to limit the infiltration of myeloid cells in damaged organs and prevent the excessive lung inflammation and endothelialitis that are associated with acute respiratory distress syndrome in patients with COVID-19.
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