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March 27, 2026Cells2 citationsOpen Access

Neutrophil Extracellular Traps in Viral Infections: Regulation, Immune Consequences, and Pathogenic Outcomes

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CAClinton Njinju AsabaBGBella Nyemkuna GwanyamaHAHumblenoble Stembridge Ayuk

Key Points

  • The aim is to understand how neutrophil extracellular traps (NETs) function and their impact during viral infections.
  • Comprehensive review of molecular mechanisms driving NET formation and clearance.
  • Discussion on how viruses modulate NET processes and influence disease outcomes.
  • Analysis of pathways involving SYK, MAPKs, and NF-κB in NET formation and neutrophil death.
  • Examination of SARS-CoV-2 and hepatitis B virus as case studies.
  • Evaluation of emerging therapies for modulating NET formation and clearance.
  • NET formation is crucial for antiviral immune responses but can lead to tissue damage during excessive formation.
  • Impaired NET clearance correlates with chronic inflammation and conditions like long COVID and autoimmune hepatitis.
  • Viral components can exploit the NET formation process, contributing to immunopathology.

Abstract

Neutrophils are among the early responders of the innate immune system and play a key role in host defense against viral infections. Beyond their classical antimicrobial functions, neutrophils can engage in a specialized defense mechanism by releasing web-like extracellular DNA known as neutrophil extracellular traps (NETs). These extracellular traps are a mesh-like network of chromatin DNA decorated with cellular components, including histones, proteases, and antimicrobial enzymes, that function to contain and limit the spread of pathogens. While NET formation contributes to antiviral immunity, accumulating evidence indicates that excessive or dysregulated NET formation can significantly contribute to immunopathology during viral infections. Thus, depending on the context and outcome, NET formation may be viewed as a double-edged sword. Therefore, understanding the regulatory mechanisms governing NET formation and its harmful effects is critical for developing therapeutic strategies that enhance antiviral defense while minimizing tissue damage. In this review, we provide a comprehensive overview of the molecular mechanisms that drive NET formation and clearance, with a particular focus on how viruses modulate these processes to influence disease outcome. We also discuss the pathways underlying NET formation and subsequent neutrophil cell death (NETosis), including canonical and non-canonical pathways, and highlight key signaling axes involving SYK, MAPKs, and NF-κB. Using SARS-CoV-2 and hepatitis B virus as representative models, we examine how different viral components trigger, exploit, or evade NET targeting and how persistent accumulation of NETs can contribute to hyperinflammation, progressive tissue injury, and post-viral syndromes. We further explore emerging evidence linking impaired NET clearance and neutrophil heterogeneity, particularly low-density neutrophils (LDNs), to chronic inflammation and post-viral sequelae such as long COVID and autoimmune hepatitis. Finally, we summarize current and emerging therapeutic strategies aimed at modulating NET formation or enhancing NET clearance. Altogether, this review underscores the dual nature of NETs in viral infections, highlighting their potential roles in antiviral defense and tissue injury, and provides a framework for the development of targeted interventions to limit virus-induced immunopathology.

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Cite This Study

Asaba et al. (2026) studied this question.

synapsesocial.com/papers/69c6204c15a0a509bde18c20https://doi.org/10.3390/cells15070580
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