Single-cell transcriptome identifies FCGR3B upregulated subtype of alveolar macrophages in patients with critical COVID-19

Understanding host cell heterogeneity is critical for unraveling disease mechanism. Utilizing large-scale single-cell transcriptomics, we analyzed multiple tissue specimens from patients with life-threatening COVID-19 pneumonia, compared with healthy controls. We identified a subtype of monocyte-der...

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Veröffentlicht in:iScience 2021-09, Vol.24 (9), p.103030-103030, Article 103030
Hauptverfasser: Nassir, Nasna, Tambi, Richa, Bankapur, Asma, Al Heialy, Saba, Karuvantevida, Noushad, Khansaheb, Hamda Hassan, Zehra, Binte, Begum, Ghausia, Hameid, Reem Abdel, Ahmed, Awab, Deesi, Zulfa, Alkhajeh, Abdulmajeed, Uddin, K.M. Furkan, Akter, Hosneara, Safizadeh Shabestari, Seyed Ali, Almidani, Omar, Islam, Amirul, Gaudet, Mellissa, Kandasamy, Richard Kumaran, Loney, Tom, Tayoun, Ahmad Abou, Nowotny, Norbert, Woodbury-Smith, Marc, Rahman, Proton, Kuebler, Wolfgang M., Yaseen Hachim, Mahmood, Casanova, Jean-Laurent, Berdiev, Bakhrom K., Alsheikh-Ali, Alawi, Uddin, Mohammed
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Sprache:eng
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Zusammenfassung:Understanding host cell heterogeneity is critical for unraveling disease mechanism. Utilizing large-scale single-cell transcriptomics, we analyzed multiple tissue specimens from patients with life-threatening COVID-19 pneumonia, compared with healthy controls. We identified a subtype of monocyte-derived alveolar macrophages (MoAMs) where genes associated with severe COVID-19 comorbidities are significantly upregulated in bronchoalveolar lavage fluid of critical cases. FCGR3B consistently demarcated MoAM subset in different samples from severe COVID-19 cohorts and in CCL3L1-upregulated cells from nasopharyngeal swabs. In silico findings were validated by upregulation of FCGR3B in nasopharyngeal swabs of severe ICU COVID-19 cases, particularly in older patients and those with comorbidities. Additional lines of evidence from transcriptomic data and in vivo of severe COVID-19 cases suggest that FCGR3B may identify a specific subtype of MoAM in patients with severe COVID-19 that may present a novel biomarker for screening and prognosis, as well as a potential therapeutic target. [Display omitted] •Association of MoAM subtype with severe COVID-19 cases presented with comorbidities•Upregulated FCGR3B in CCL3L1 positive MoAM cells in severe COVID-19 cases•Upregulated FCGR3B within MoAM subtype as a potential marker for COVID-19 severity Molecular biology; Transcriptomics; Virology
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2021.103030