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Global Absence and Targeting of Protective Immune States in Severe COVID-19
Alexis J Combes1,2,3, Tristan Courau1,2,3, Nicholas F Kuhn1,2
1Department of Pathology, San Francisco, 513 Parnassus Ave, HSW512, San Francisco, CA 94143-0511, USA.
Insights
Mild COVID-19 shows coordinated interferon-stimulated gene (ISG) expression across cells. Severe COVID-19 patients lack these ISG cells and have auto-antibodies that block ISG production, revealing immune self-attack.
Area of Science:
- Immunology
- Virology
- Pathology
Background:
- SARS-CoV-2 infection presents with a wide spectrum of disease severity.
- Understanding the cellular and molecular distinctions between mild and severe COVID-19 is crucial for effective treatment.
Conclusions:
- Severe COVID-19 is characterized by an overzealous, auto-directed antibody response that impairs the immune system's ability to mount an effective antiviral defense.
- These auto-antibodies against interferon-stimulated cells represent a key mechanism driving severe COVID-19 pathology.
- Targeting these auto-antibody responses offers a potential therapeutic strategy to restore immune function in severe COVID-19.
Abstract:
While SARS-CoV-2 infection has pleiotropic and systemic effects in some patients, many others experience milder symptoms. We sought a holistic understanding of the severe/mild distinction in COVID-19 pathology, and its origins. We performed a wholeblood preserving single-cell analysis protocol to integrate contributions from all major cell types including neutrophils, monocytes, platelets, lymphocytes and the contents of serum. Patients with mild COVID-19 disease display a coordinated pattern of interferonstimulated gene (ISG) expression across every cell population and these cells are systemically absent in patients with severe disease. Severe COVID-19 patients also paradoxically produce very high anti-SARS-CoV-2 antibody titers and have lower viral load as compared to mild disease. Examination of the serum from severe patients demonstrates that they uniquely produce antibodies with multiple patterns of specificity against interferon-stimulated cells and that those antibodies functionally block the production of the mild disease-associated ISG-expressing cells. Overzealous and autodirected antibody responses pit the immune system against itself in many COVID-19 patients and this defines targets for immunotherapies to allow immune systems to provide viral defense.
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