COVID-19 Reactivates Dormant Viruses, Offering Clues for Long COVID Treatment

August 5, 2026
COVID-19 Reactivates Dormant Viruses, Offering Clues for Long COVID Treatment
  • A multi-institutional Nature study shows that COVID-19 reactivates dormant viruses in hospitalized patients, expanding the understanding of chronically infecting viruses and their potential role in long COVID.

  • In long COVID, Anelloviridae are more prevalent among those with physical deficits, suggesting a possible biomarker for persistent impairment, with the signature remaining consistent from acute to convalescent stages.

  • Clinicians could test for reactivated viruses with existing diagnostics and may treat herpes-family viruses with antiviral drugs; the next step is to determine whether identifying and treating reactivated viruses improves outcomes for both acute and long COVID patients.

  • Immune responses show virus-specific patterns: EBV in PBMCs links to plasmablast expansion and higher EBV antibodies, while CMV associates with central memory T cell increases; both EBV and CMV relate to broader T cell activation when detected in multiple compartments.

  • Transcriptomic analyses reveal nasal reactivation of EBV, CMV, and HSV1 tied to upper-airway gene expression changes and pathways involving interleukin signaling, lymphocyte interactions, and neutrophil degranulation; PBMC signatures show RNA processing and translation downregulation with Anelloviridae and CMV, and replication pathways upregulated with EBV, CMV, HSV1.

  • Anelloviridae transcripts in PBMCs associate with transplant history, immunosuppressive medication use, shock, ICU admission, and myocardial infarction, indicating immunosuppression as a key driver of reactivation.

  • Boston Children’s Hospital researchers and collaborators from 15 institutions led the study, with Joann Diray Arce and Ofer Levy steering site and data coordination within the Precision Vaccines Program.

  • Key contributors from Boston Children’s include Ofer Levy and Joann Diray Arce, with researchers like Jing Chen, Annmarie Hoch, Al Ozonoff, Kinga Smolen, and Hanno Steen helping drive the work.

  • Reactivation occurred even in individuals with otherwise healthy immune systems, challenging the notion that only immunocompromised people experience bystander viral awakenings, though some participants were on immunosuppressants.

  • Plasma metabolomics show virus-associated shifts, including increases in urea, TMAP, long-chain fatty acids, and arginine metabolism alterations, with CMV often exerting the broadest impact; a shared signature includes reductions in certain metabolites like S-methylcysteine sulfoxide and 6-bromotryptophan.

  • Nearly half of participants showed reactivation of latent viruses, including CMV, EBV, and anelloviruses, which are typically harmless.

  • Limitations include an unvaccinated cohort infected early in the pandemic, raising questions about generalizability to today’s variants and immunity.

Summary based on 6 sources


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