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10.1186/s13148-021-01102-9

http://scihub22266oqcxt.onion/10.1186/s13148-021-01102-9
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34034806!8148415!34034806
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suck abstract from ncbi

pmid34034806      Clin+Epigenetics 2021 ; 13 (1): 118
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  • Blood DNA methylation and COVID-19 outcomes #MMPMID34034806
  • Balnis J; Madrid A; Hogan KJ; Drake LA; Chieng HC; Tiwari A; Vincent CE; Chopra A; Vincent PA; Robek MD; Singer HA; Alisch RS; Jaitovich A
  • Clin Epigenetics 2021[May]; 13 (1): 118 PMID34034806show ga
  • BACKGROUND: There are no prior reports that compare differentially methylated regions of DNA in blood samples from COVID-19 patients to samples collected before the SARS-CoV-2 pandemic using a shared epigenotyping platform. We performed a genome-wide analysis of circulating blood DNA CpG methylation using the Infinium Human MethylationEPIC BeadChip on 124 blood samples from hospitalized COVID-19-positive and COVID-19-negative patients and compared these data with previously reported data from 39 healthy individuals collected before the pandemic. Prospective outcome measures such as COVID-19-GRAM risk-score and mortality were combined with methylation data. RESULTS: Global mean methylation levels did not differ between COVID-19 patients and healthy pre-pandemic controls. About 75% of acute illness-associated differentially methylated regions were located near gene promoter regions and were hypo-methylated in comparison with healthy pre-pandemic controls. Gene ontology analyses revealed terms associated with the immune response to viral infections and leukocyte activation; and disease ontology analyses revealed a predominance of autoimmune disorders. Among COVID-19-positive patients, worse outcomes were associated with a prevailing hyper-methylated status. Recursive feature elimination identified 77 differentially methylated positions predictive of COVID-19 severity measured by the GRAM-risk score. CONCLUSION: Our data contribute to the awareness that DNA methylation may influence the expression of genes that regulate COVID-19 progression and represent a targetable process in that setting.
  • |Aged[MESH]
  • |Aged, 80 and over[MESH]
  • |COVID-19/*blood/*mortality[MESH]
  • |DNA Methylation/*physiology[MESH]
  • |Female[MESH]
  • |Humans[MESH]
  • |Male[MESH]
  • |Middle Aged[MESH]
  • |New York/epidemiology[MESH]
  • |Prospective Studies[MESH]


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