Longitudinal Multi-omics Analyses Identify Responses of Megakaryocytes, Erythroid Cells, and Plasmablasts as Hallmarks of Severe COVID-19.
Name:
Publisher version
View Source
Access full-text PDFOpen Access
View Source
Check access options
Check access options
Name:
Bernardes et al.pdf
Size:
8.355Mb
Format:
PDF
Description:
delayed Open Access puplication
Average rating
Cast your vote
You can rate an item by clicking the amount of stars they wish to award to this item.
When enough users have cast their vote on this item, the average rating will also be shown.
Star rating
Your vote was cast
Thank you for your feedback
Thank you for your feedback
Authors
Bernardes, Joana PMishra, Neha
Tran, Florian
Bahmer, Thomas
Best, Lena
Blase, Johanna I
Bordoni, Dora
Franzenburg, Jeanette
Geisen, Ulf
Josephs-Spaulding, Jonathan
Köhler, Philipp
Künstner, Axel
Rosati, Elisa
Aschenbrenner, Anna C
Bacher, Petra
Baran, Nathan
Boysen, Teide
Brandt, Burkhard
Bruse, Niklas
Dörr, Jonathan
Dräger, Andreas
Elke, Gunnar
Ellinghaus, David
Fischer, Julia
Forster, Michael
Franke, Andre
Franzenburg, Sören
Frey, Norbert
Friedrichs, Anette
Fuß, Janina
Glück, Andreas
Hamm, Jacob
Hinrichsen, Finn
Hoeppner, Marc P
Imm, Simon
Junker, Ralf
Kaiser, Sina
Kan, Ying H
Knoll, Rainer
Lange, Christoph
Laue, Georg
Lier, Clemens
Lindner, Matthias
Marinos, Georgios
Markewitz, Robert
Nattermann, Jacob
Noth, Rainer
Pickkers, Peter
Rabe, Klaus F
Renz, Alina
Röcken, Christoph
Rupp, Jan
Schaffarzyk, Annika
Scheffold, Alexander
Schulte-Schrepping, Jonas
Schunk, Domagoj
Skowasch, Dirk
Ulas, Thomas
Wandinger, Klaus-Peter
Wittig, Michael
Zimmermann, Johannes
Busch, Hauke
Hoyer, Bimba F
Kaleta, Christoph
Heyckendorf, Jan
Kox, Matthijs
Rybniker, Jan
Schreiber, Stefan
Schultze, Joachim L
Rosenstiel, Philip
Deutsche COVID-19 Omics Initiative (DeCOI)
Issue Date
2020-11-26
Metadata
Show full item recordAbstract
Temporal resolution of cellular features associated with a severe COVID-19 disease trajectory is needed for understanding skewed immune responses and defining predictors of outcome. Here, we performed a longitudinal multi-omics study using a two-center cohort of 14 patients. We analyzed the bulk transcriptome, bulk DNA methylome, and single-cell transcriptome (>358,000 cells, including BCR profiles) of peripheral blood samples harvested from up to 5 time points. Validation was performed in two independent cohorts of COVID-19 patients. Severe COVID-19 was characterized by an increase of proliferating, metabolically hyperactive plasmablasts. Coinciding with critical illness, we also identified an expansion of interferon-activated circulating megakaryocytes and increased erythropoiesis with features of hypoxic signaling. Megakaryocyte- and erythroid-cell-derived co-expression modules were predictive of fatal disease outcome. The study demonstrates broad cellular effects of SARS-CoV-2 infection beyond adaptive immune cells and provides an entry point toward developing biomarkers and targeted treatments of patients with COVID-19.Citation
mmunity. 2020 Dec 15;53(6):1296-1314.e9. doi: 10.1016/j.immuni.2020.11.017. Epub 2020 Nov 26.Affiliation
HIRI, Helmholtz-Institut für RNA-basierte Infektionsforschung, Josef-Shneider Strasse 2, 97080 Würzburg, Germany.; BRICS, Braunschweiger Zentrum für Systembiologie, Rebenring 56,38106 Braunschweig, Germany.Publisher
Elsevier (Cell Press)Journal
ImmunityPubMed ID
33296687Type
ArticleLanguage
enEISSN
1097-4180ae974a485f413a2113503eed53cd6c53
10.1016/j.immuni.2020.11.017
Scopus Count
The following license files are associated with this item:
- Creative Commons
Related articles
- Dynamic blood single-cell immune responses in patients with COVID-19.
- Authors: Huang L, Shi Y, Gong B, Jiang L, Zhang Z, Liu X, Yang J, He Y, Jiang Z, Zhong L, Tang J, You C, Jiang Q, Long B, Zeng T, Luo M, Zeng F, Zeng F, Wang S, Yang X, Yang Z
- Issue date: 2021 Mar 6
- Kinetic Multi-omic Analysis of Responses to SARS-CoV-2 Infection in a Model of Severe COVID-19.
- Authors: Cantwell AM, Singh H, Platt M, Yu Y, Lin YH, Ikeno Y, Hubbard G, Xiang Y, Gonzalez-Juarbe N, Dube PH
- Issue date: 2021 Sep 27
- Biomarkers and Immune Repertoire Metrics Identified by Peripheral Blood Transcriptomic Sequencing Reveal the Pathogenesis of COVID-19.
- Authors: Liu Y, Wu Y, Liu B, Zhang Y, San D, Chen Y, Zhou Y, Yu L, Zeng H, Zhou Y, Zhou F, Yang H, Yin L, Huang Y
- Issue date: 2021
- Epigenetic Landscapes of Single-Cell Chromatin Accessibility and Transcriptomic Immune Profiles of T Cells in COVID-19 Patients.
- Authors: Li S, Wu B, Ling Y, Guo M, Qin B, Ren X, Wang C, Yang H, Chen L, Liao Y, Liu Y, Peng X, Xu C, Wang Z, Shen Y, Chen J, Liu L, Niu B, Zhu M, Liu L, Li F, Zhu T, Zhu Z, Zhou X, Lu H
- Issue date: 2021
- Immune Response in Severe and Non-Severe Coronavirus Disease 2019 (COVID-19) Infection: A Mechanistic Landscape.
- Authors: Mukund K, Nayak P, Ashokkumar C, Rao S, Almeda J, Betancourt-Garcia MM, Sindhi R, Subramaniam S
- Issue date: 2021