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February 11, 20260 citationsOpen Access

Avian-origin influenza A viruses tolerate elevated pyrexic temperatures in mammals.

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MTMatthew L. TurnbullYWYingxue WangSCSimon Clare

Key Points

  • The research aims to understand how avian-origin influenza A viruses replicate at elevated temperatures in mammals.
  • Comparison of avian and human influenza A virus isolates at various temperatures.
  • Use of mouse models to assess disease severity in relation to body temperature.
  • Assessment of PB1 polymerase subunits from different pandemic strains.
  • Avian-origin PB1 polymerase supports influenza A virus replication at higher temperatures.
  • A slight increase in body temperature in mice reduces disease severity.
  • Protection conferred by elevated temperature can be counteracted by febrile temperature-resistant PB1.

Abstract

Host body temperature can define a virus's replicative profile-influenza A viruses (IAVs) adapted to 40° to 42°C in birds are less temperature sensitive in vitro compared with human isolates adapted to 33° to 37°C. In this work, we show that avian-origin PB1 polymerase subunits enable IAV replication at elevated temperatures, including avian-origin PB1s from the 1918, 1957, and 1968 pandemic viruses. Using a model system to ensure biosafety, we show that a small increase in body temperature protects against severe disease in mice and that this protection is overcome by a febrile temperature-resistant PB1. These findings indicate that although elevated temperature itself can be a potent antiviral defense, it may not be effective against all influenza strains. These data inform both the clinical use of antipyretics and IAV surveillance efforts.

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Cite This Study

Turnbull et al. (2025) studied this question.

synapsesocial.com/papers/698c1c46267fb587c655e973https://doi.org/10.17863/cam.125739
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