A multimodal atlas of COVID-19 severity identifies hallmarks of dysregulated immunity
Slowikowski, K.; Sen, P.; Cosgriff, C. V.; Tantivit, J.; Eisenhaure, T.; LaSalle, T. J.; Manakongtreecheep, K.; Tirard, A.; Arnold, B. Y.; Pacheco-Navarro, A.; Yang, E. Y.-A.; Reyes, M.; Gonye, A.; Gushterova, I.; Russo, B.; Rojas-Lopez, M.; Sharma, N.; Thomas, M. F.; Sharova, T.; Frederick, D.; Lavin-Parsons, K.; Lilley, B.; McKaig, B.; Lodenstein, C.; Khanna, H.; Kays, K.; Charland, N.; Smith, N.; Ramesh, S.; Delorey, T. M.; Phillips, D.; Amir-Zilberstein, L.; Brown, E. M.; Benson, M.; Park, S.-M.; Tusi, B. K.; Pokatayev, V.; Hecht, C.; Pishesha, N.; Woolley, A. E.; Cosimi, L.; Rozenblatt-Ro
Show abstract
The alpha-variant wave of the COVID-19 pandemic provided a unique opportunity to study, at single-cell resolution, how near-universal exposure to the same pathogen can lead to either effective or dysfunctional immune responses in humans. Although single-cell RNA-sequencing studies have characterized immune cellular features of COVID-19, they have not shown how tocilizumab treatment changes these features at single-cell resolution, or which features might persist into convalescence. In this study, we analyzed 2.5 million circulating immune cells from 428 patients across time points (840 PBMC samples), encompassing three contemporaneous SARS-CoV-2 cohorts: acutely infected patients across five WHO disease severity levels and three time points, patients from the first randomized control trial to study the efficacy of tocilizumab in the management of COVID-19, and convalescent patients three months after infection. We used linear modeling to integrate multiple data types - including single-cell RNA-seq, CITE-seq, TCR and BCR sequencing, viral load measurements, viral neutralization assays, detection of 75 autoantibodies, HLA genotype data, and serum proteomics covering 1,463 targets - to derive the most comprehensive view to-date of the biological features of COVID-19 disease severity. Our findings show that myeloid-derived suppressor cells (MDSCs) act as a key immunologic pivot point in severe COVID-19. Myeloid dysfunction, which is marked by impaired antigen presentation, drives a non-productive adaptive immune response, as reflected by reduced expression of B and T cell gene programs involved in antigen recognition, immune synapse formation, and cytotoxicity. Severe disease is also linked to autoantibodies targeting type I interferons, influenced by specific HLA-DQB1 allelic variants, and strongly correlated with serum IL-6 levels. Tocilizumab treatment eliminates CLU-expressing MDSCs and ISG-positive myeloid subsets, restores antigen presentation, and reactivates productive adaptive immunity. These changes align with improved clinical outcomes and better clinical laboratory measures, including reduced CRP. While many immunologic abnormalities in acute severe COVID-19 resolve during convalescence 3-months post-infection, we observed persistently high ICOS expression in regulatory T cells, potentially linking acute infection to chronic post-COVID syndromes. Overall, we define distinct innate and adaptive host immune responses associated with acute, IL-6-responsive, and convalescent SARS-CoV-2 infection. Our multimodal and high-dimensional dataset with curated clinical metadata provides a foundational and clinically relevant resource for modeling host immune response biology in health and disease.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The legacy of maternal SARS-CoV-2 infection on the immunology of the neonate 96%
- High-throughput phenotyping reveals expansive genetic and structural underpinnings of immune variation 96%
- Spatial analysis of human lung cancer reveals organized immune hubs enriched for stem-like CD8 T cells and associated with immunotherapy response 96%
Similar papers in this journal
- Protective immune trajectories in early viral containment of non-pneumonic SARS-CoV-2 infection 97%
- CD4+ T cells display a spectrum of recall dynamics during re-infection with malaria parasites. 97%
- APMAT analysis reveals the association between CD8 T cell receptors, cognate antigen, and T cell phenotype and persistence 97%
Similar papers in this journal
- Post-infectious inflammatory disease in MIS-C features elevated cytotoxicity signatures and autoreactivity that correlates with severity 97%
- Early immune pathology and persistent dysregulation characterise severe COVID-19 96%
- Functional impairment of "helpless" CD8+ memory T cells is transient and driven by prolonged but finite cognate antigen presentation 96%
Similar papers in this journal
- An Immune Cell Atlas Reveals Dynamic COVID-19 Specific Neutrophil Programming Amenable to Dexamethasone Therapy 97%
- International multi-cohort analysis identifies novel framework for quantifying immune dysregulation in critical illness: results of the SUBSPACE consortium 97%
- Altered cellular and humoral immune responses following SARS-CoV-2 mRNA vaccination in patients with multiple sclerosis on anti-CD20 therapy 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.