Cell-free DNA maps COVID-19 tissue injury and risk of death and can cause tissue injury.
Biomarkers
/ analysis
COVID-19
/ blood
Cell-Free Nucleic Acids
/ analysis
Cohort Studies
DNA Methylation
Female
Humans
Male
Middle Aged
Multiple Organ Failure
/ blood
Organ Specificity
/ genetics
Outcome Assessment, Health Care
Prognosis
Prospective Studies
Reproducibility of Results
SARS-CoV-2
/ isolation & purification
Severity of Illness Index
United States
/ epidemiology
Bioinformatics
COVID-19
Inflammation
Molecular genetics
Journal
JCI insight
ISSN: 2379-3708
Titre abrégé: JCI Insight
Pays: United States
ID NLM: 101676073
Informations de publication
Date de publication:
08 04 2021
08 04 2021
Historique:
received:
12
01
2021
accepted:
02
03
2021
pubmed:
3
3
2021
medline:
22
4
2021
entrez:
2
3
2021
Statut:
epublish
Résumé
INTRODUCTIONThe clinical course of coronavirus 2019 (COVID-19) is heterogeneous, ranging from mild to severe multiorgan failure and death. In this study, we analyzed cell-free DNA (cfDNA) as a biomarker of injury to define the sources of tissue injury that contribute to such different trajectories.METHODSWe conducted a multicenter prospective cohort study to enroll patients with COVID-19 and collect plasma samples. Plasma cfDNA was subject to bisulfite sequencing. A library of tissue-specific DNA methylation signatures was used to analyze sequence reads to quantitate cfDNA from different tissue types. We then determined the correlation of tissue-specific cfDNA measures to COVID-19 outcomes. Similar analyses were performed for healthy controls and a comparator group of patients with respiratory syncytial virus and influenza.RESULTSWe found markedly elevated levels and divergent tissue sources of cfDNA in COVID-19 patients compared with patients who had influenza and/or respiratory syncytial virus and with healthy controls. The major sources of cfDNA in COVID-19 were hematopoietic cells, vascular endothelium, hepatocytes, adipocytes, kidney, heart, and lung. cfDNA levels positively correlated with COVID-19 disease severity, C-reactive protein, and D-dimer. cfDNA profile at admission identified patients who subsequently required intensive care or died during hospitalization. Furthermore, the increased cfDNA in COVID-19 patients generated excessive mitochondrial ROS (mtROS) in renal tubular cells in a concentration-dependent manner. This mtROS production was inhibited by a TLR9-specific antagonist.CONCLUSIONcfDNA maps tissue injury that predicts COVID-19 outcomes and may mechanistically propagate COVID-19-induced tissue injury.FUNDINGIntramural Targeted Anti-COVID-19 grant, NIH.
Identifiants
pubmed: 33651717
pii: 147610
doi: 10.1172/jci.insight.147610
pmc: PMC8119224
doi:
pii:
Substances chimiques
Biomarkers
0
Cell-Free Nucleic Acids
0
Types de publication
Journal Article
Multicenter Study
Research Support, N.I.H., Intramural
Langues
eng
Sous-ensembles de citation
IM
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