Characterization of low-density granulocytes in COVID-19

Severe COVID-19 is characterized by extensive pulmonary complications, to which host immune responses are believed to play a role. As the major arm of innate immunity, neutrophils are one of the first cells recruited to the site of infection where their excessive activation can contribute to lung pa...

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Veröffentlicht in:PLoS pathogens 2021-07, Vol.17 (7), p.e1009721-e1009721
Hauptverfasser: Cabrera, Luz E, Pekkarinen, Pirkka T, Alander, Maria, Nowlan, Kirsten H. A, Nguyen, Ngoc Anh, Jokiranta, Suvi, Kuivanen, Suvi, Patjas, Anu, Mero, Sointu, Pakkanen, Sari H, Heinonen, Santtu, Kantele, Anu, Vapalahti, Olli, Kekäläinen, Eliisa, Strandin, Tomas
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Sprache:eng
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Zusammenfassung:Severe COVID-19 is characterized by extensive pulmonary complications, to which host immune responses are believed to play a role. As the major arm of innate immunity, neutrophils are one of the first cells recruited to the site of infection where their excessive activation can contribute to lung pathology. Low-density granulocytes (LDGs) are circulating neutrophils, whose numbers increase in some autoimmune diseases and cancer, but are poorly characterized in acute viral infections. Using flow cytometry, we detected a significant increase of LDGs in the blood of acute COVID-19 patients, compared to healthy controls. Based on their surface marker expression, COVID-19-related LDGs exhibit four different populations, which display distinctive stages of granulocytic development and most likely reflect emergency myelopoiesis. Moreover, COVID-19 LDGs show a link with an elevated recruitment and activation of neutrophils. Functional assays demonstrated the immunosuppressive capacities of these cells, which might contribute to impaired lymphocyte responses during acute disease. Taken together, our data confirms a significant granulocyte activation during COVID-19 and suggests that granulocytes of lower density play a role in disease progression.
ISSN:1553-7374
1553-7366
1553-7374
DOI:10.1371/journal.ppat.1009721