Elevated Calprotectin and Abnormal Myeloid Cell Subsets Discriminate Severe from Mild COVID-19.

Silvin, Aymeric; Chapuis, Nicolas; Dunsmore, Garett; Goubet, Anne-Gaëlle; Dubuisson, Agathe; Derosa, Lisa; Almire, Carole; Hénon, Clémence et al. · Cell · 2020

cross_sectional · Level IV

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Abstract

Blood myeloid cells are known to be dysregulated in coronavirus disease 2019 (COVID-19), caused by SARS-CoV-2. It is unknown whether the innate myeloid response differs with disease severity and whether markers of innate immunity discriminate high-risk patients. Thus, we performed high-dimensional flow cytometry and single-cell RNA sequencing of COVID-19 patient peripheral blood cells and detected disappearance of non-classical CD14<sup>Low</sup>CD16<sup>High</sup> monocytes, accumulation of HLA-DR<sup>Low</sup> classical monocytes (Human Leukocyte Antigen - DR isotype), and release of massive amounts of calprotectin (S100A8/S100A9) in severe cases. Immature CD10<sup>Low</sup>CD101<sup>-</sup>CXCR4<sup>+/-</sup> neutrophils with an immunosuppressive profile accumulated in the blood and lungs, suggesting emergency myelopoiesis. Finally, we show that calprotectin plasma level and a routine flow cytometry assay detecting decreased frequencies of non-classical monocytes could discriminate patients who develop a severe form of COVID-19, suggesting a predictive value that deserves prospective evaluation.

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