Chronic Viral Reactivation and Associated Host Immune Response and Clinical Outcomes in Acute COVID-19 and Post-Acute Sequelae of COVID-19
Maguire, C.; Chen, J.; Rouphael, N.; Pickering, H.; Phan, H. V.; Glascock, A.; Chu, V.; Dandekar, R.; Corry, D.; Kheradmand, F.; Baden, L. R.; Selaky, R.; McComsey, G. A.; Haddad, E. K.; Cairns, C. B.; Pulendran, B.; Fernandez-Sesma, A.; Simon, V.; Metcalf, J. P.; Higuita, N. I. A.; Messer, W. B.; David, M. M.; Nadeau, K. C.; Kraft, M.; Bime, C.; Schaenman, J.; Erle, D.; Calfee, C. S.; Atkinson, M. A.; Brackenridge, S. C.; Ehrlich, L. I. R.; Montgomery, R. R.; Shaw, A. C.; Hough, C. L.; Geng, L. N.; Hafler, D. A.; Augustine, A. D.; Becker, P. M.; Peters, B.; Ozonoff, A.; Kim-Schulze, S. H.; Kr
Show abstract
Chronic viral infections are ubiquitous in humans, with individuals harboring multiple latent viruses that can reactivate during acute illnesses. Recent studies have suggested that SARS- CoV-2 infection can lead to reactivation of latent viruses such as Epstein-Barr Virus (EBV) and cytomegalovirus (CMV), yet, the extent and impact of viral reactivation in COVID-19 and its effect on the host immune system remain incompletely understood. Here we present a comprehensive multi-omic analysis of viral reactivation of all known chronically infecting viruses in 1,154 hospitalized COVID-19 patients, from the Immunophenotyping Assessment in a COVID-19 Cohort (IMPACC) study, who were followed prospectively for twelve months. We reveal significant reactivation of Herpesviridae, Enteroviridae, and Anelloviridae families during acute stage of COVID-19 (0-40 days post- hospitalization), each exhibiting distinct temporal dynamics. We also show that viral reactivation correlated with COVID-19 severity, demographic characteristics, and clinical outcomes, including mortality. Integration of cytokine profiling, cellular immunophenotyping, metabolomics, transcriptomics, and proteomics demonstrated virus-specific host responses, including elevated pro-inflammatory cytokines (e.g. IL-6, CXCL10, and TNF), increased activated CD4+ and CD8+ T-cells, and upregulation of cellular replication genes, independent of COVID-19 severity and SARS-CoV-2 viral load. Notably, persistent Anelloviridae reactivation during convalescence ([≥]3 months post-hospitalization) was associated with Post-Acute Sequelae of COVID-19 (PASC) symptoms, particularly physical function and fatigue. Our findings highlight a remarkable prevalence and potential impact of chronic viral reactivation on host responses and clinical outcomes during acute COVID-19 and long term PASC sequelae. Our data provide novel immune, transcriptomic, and metabolomic biomarkers of viral reactivation that may inform novel approaches to prognosticate, prevent, or treat acute COVID- 19 and PASC.
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