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May 8, 2026Current Opinion in Virology2 citationsOpen Access

Immunopathogenic insights into members of the class Bunyaviricetes: a comparative review of emerging zoonotic threats

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MCMark Anthony B CaselNCNam-Hyuk ChoJJJae U. Jung

Key Points

  • This review aims to analyze the immunopathogenesis of zoonotic viruses in the class Bunyaviricetes.
  • Comparative analysis of major human-pathogenic bunyaviricetes.
  • Illustration of innate immune evasion and cytokine modulation strategies.
  • Integration of molecular and immunological insights regarding immune-virus interactions.
  • Identified mechanisms where severe disease arises from viral interference with RIG-I/MDA5 signaling pathways.
  • Noted suppression of interferon responses leading to dysregulated inflammation.
  • Emphasized a lack of effective vaccines or targeted therapeutics, relying mainly on supportive care.

Abstract

The class Bunyaviricetes encompasses a diverse group of vector- and rodent-borne viruses, many of which are major human pathogens causing severe and often lethal diseases worldwide. These include Lassa fever virus ( Arenaviridae ), hantaviruses such as Hantaan and Andes viruses ( Hantaviridae ), Crimean-Congo hemorrhagic fever virus ( Nairoviridae ), La Crosse and Oropouche viruses ( Peribunyaviridae ), and Rift Valley fever, severe fever with thrombocytopenia syndrome, and Toscana viruses ( Phenuiviridae ). Clinical syndromes range from hemorrhagic fever with multiorgan failure, vascular leak, and shock to acute encephalitis and severe respiratory distress. Despite their public health impact, safe and effective vaccines or targeted therapeutics are lacking for most bunyaviricetes diseases, leaving supportive care as the primary intervention. This review provides a comparative analysis of the immunopathogenesis of major human-pathogenic bunyaviricetes, highlighting shared and virus-specific strategies for innate immune evasion, cytokine modulation, and host cell targeting. Severe disease often arises from viral interference with key sensing pathways, such as RIG-I/MDA5 and downstream IRF and NF-κB signaling, which either suppresses interferon responses or leads to dysregulated inflammation. By integrating molecular, immunological, and clinical insights, we outline how these immune-virus interactions shape disease trajectory and severity. Understanding these mechanisms is critical for guiding the rational design of vaccines, antivirals, and immunomodulatory therapies, and for strengthening preparedness against these persistent zoonotic threats.

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Cite This Study

Casel et al. (2026) studied this question.

synapsesocial.com/papers/69fd7ddcbfa21ec5bbf06155https://doi.org/10.1016/j.coviro.2026.101544
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Emerging orthobunyaviruses: genomic diversity, reassortment, and expanding public health risks2026
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  3. 3Climate change and the growing threat of bunyaviruses2026
  4. 4Emerging and re-emerging vector-borne and other zoonotic RNA viruses: pathogenesis, climate-driven dynamics, and strategies for global control2026 · 1 citations
  5. 5Immune evasion and pathogenesis of henipaviruses2026 · 4 citations