Suppressive myeloid cells are a hallmark of severe COVID-19
Author:
Schulte-Schrepping JonasORCID, Reusch NicoORCID, Paclik DanielaORCID, Baßler KevinORCID, Schlickeiser StephanORCID, Zhang Bowen, Krämer BenjaminORCID, Krammer TobiasORCID, Brumhard Sophia, Bonaguro LorenzoORCID, De Domenico Elena, Wendisch DanielORCID, Grasshoff Martin, Kapellos Theodore S.ORCID, Beckstette Michael, Pecht Tal, Saglam Adem, Dietrich OliverORCID, Mei Henrik E.ORCID, Schulz Axel R.ORCID, Conrad Claudia, Kunkel DésiréeORCID, Vafadarnejad EhsanORCID, Xu Cheng-Jian, Horne Arik, Herbert MiriamORCID, Drews Anna, Thibeault CharlotteORCID, Pfeiffer Moritz, Hippenstiel StefanORCID, Hocke AndreasORCID, Müller-Redetzky Holger, Heim Katrin-Moira, Machleidt FelixORCID, Uhrig Alexander, de Jarcy Laure BousquillonORCID, Jürgens Linda, Stegemann MiriamORCID, Glösenkamp Christoph R., Volk Hans-DieterORCID, Goffinet ChristineORCID, Raabe Jan, Kaiser Kim Melanie, Vinh Michael To, Rieke Gereon, Meisel ChristianORCID, Ulas ThomasORCID, Becker MatthiasORCID, Geffers RobertORCID, Witzenrath MartinORCID, Drosten ChristianORCID, Suttorp NorbertORCID, von Kalle ChristofORCID, Kurth FlorianORCID, Händler KristianORCID, Schultze Joachim L.ORCID, Aschenbrenner Anna CORCID, Li Yang, Nattermann JacobORCID, Sawitzki BirgitORCID, Saliba Antoine-EmmanuelORCID, Sander Leif ErikORCID,
Abstract
Abstract‘Severe Acute Respiratory Syndrome - Coronavirus-2’ (SARS-CoV-2) infection causes Coronavirus Disease 2019 (COVID-19), a mild to moderate respiratory tract infection in the majority of patients. A subset of patients, however, progresses to severe disease and respiratory failure with acute respiratory distress syndrome (ARDS). Severe COVID-19 has been associated with increased neutrophil counts and dysregulated immune responses. The mechanisms of protective immunity in mild forms and the pathogenesis of dysregulated inflammation in severe courses of COVID-19 remain largely unclear. Here, we combined two single-cell RNA-sequencing technologies and single-cell proteomics in whole blood and peripheral blood mononuclear cells (PBMC) to determine changes in immune cell composition and activation in two independent dual-center patient cohorts (n=46+n=54 COVID-19 samples), each with mild and severe cases of COVID-19. We observed a specific increase of HLA-DRhiCD11chiinflammatory monocytes that displayed a strong interferon (IFN)-stimulated gene signature in patients with mild COVID-19, which was absent in severe disease. Instead, we found evidence of emergency myelopoiesis, marked by the occurrence of immunosuppressive pre-neutrophils and immature neutrophils and populations of dysfunctional and suppressive mature neutrophils, as well as suppressive HLA-DRtomonocytes in severe COVID-19. Our study provides detailed insights into systemic immune response to SARS-CoV-2 infection and it reveals profound alterations in the peripheral myeloid cell compartment associated with severe courses of COVID-19.
Publisher
Cold Spring Harbor Laboratory
Reference103 articles.
1. Transcriptome meta-analysis deciphers a dysregulation in immune response-associated gene signatures during sepsis;Genes (Basel),2019 2. SCENIC: single-cell regulatory network inference and clustering 3. Olfactomedin-4 Is a Candidate Marker for a Pathogenic Neutrophil Subset in Septic Shock;Crit. Care Med,2017 4. Allan, R.P. , Barlow, M. , Byrne, M.P. , Cherchi, A. , Douville, H. , Fowler, H.J. , Gan, T.Y. , Pendergrass, A.G. , Rosenfeld, D. , Swann, A.L.S. , et al. (2020). Advances in understanding large-scale responses of the water cycle to climate change. Ann. N. Y. Acad. Sci. 5. destiny: diffusion maps for large-scale single-cell data in R
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