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Referral : Science - Avian-origin influenza A viruses tolerate elevated pyrexic temperatures in mammals

Michael Coston

Editor, Senior Moderator
Referral : Science - Avian-origin influenza A viruses tolerate elevated pyrexic temperatures in mammals


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#18,964

While I try to focus primarily on open-access studies that allow me to read them in their entirety, and hopefully lift an excerpt or two, every once in awhile I'll find a paywalled or copyright restricted paper that seems worthy of referral.

Today we've a study, published behind a paywall in Science, which shows that that avian-origin PB1 segments make human-adapted influenza A viruses more tolerant of febrile temperatures (~40–41 °C) in vitro and in a mouse model with artificially elevated body temperature.

We've often talked about the fact that birds run `hotter’ than mammals, with a normal body temperature that hovers at or above 40°C, which would be considered a `fever level' in humans.

These viruses replicate primarily in the avian gut - which is several degrees warmer than the human airway - and it means that an avian virus must adapt to replicate at a lower temperature in order to become a bigger human threat.

One of the mutations we look for is (PB2-E627K); the swapping out of the amino acid Glutamic acid (E) at position 627 for Lysine (K) - which allows an influenza virus to replicate at the lower temperatures (roughly 33°C) normally found in the upper human respiratory tract (see Eurosurveillance: Genetic Analysis Of Novel H7N9 Virus).

Today's study looks at the impact of a different Avian-origin gene segment (PB1) and focuses on `two amino acid substitutions' (which, disappointingly are not specified in the abstract) that allow avian viruses to tolerate (and even thrive) at higher temperatures.

The human immune system's most obvious response to any infection is to mount a fever, which often slows or inhibits the replication of the invading pathogen. This is why many doctors suggest allowing a mild or moderate fever to run its course.​

But an influenza virus that is both tolerant of higher temperatures and replicates at the lower temperatures in the human airway would complicate matters considerably.

As the authors point out, the pandemic viruses of 1918, 1957, and 1968 all acquired an avian-origin PB1, which may help explain why they were
more virulent than seasonal flu.​

While I'm more than a little hobbled by my lack of access to the full paper, the Editor’s summary and graphical and text abstracts are interesting enough for me to recommend that you might want to take a deeper look.
.
https://afludiary.blogspot.com/2025/11/referral-science-avian-origin-influenza.html
 
University of Cambridge & Glasgow, UK. : Bird flu viruses are resistant to fever, making them a major threat to humans

Nov 28, 2025 at 04:26 PM EST
Bird flu strain shown to be fever-resistant amid first human death from H5N5

Full story


New research reveals that the bird flu viruses may be capable of replicating at temperatures higher than an average fever, a key bodily defense mechanism against severe infection. The international study led by the University of Cambridge and the University of Glasgow offers new details on how some viruses can be prevented from replicating by fever, while others may thrive.

“This study definitively highlights that a relatively small increase in body temperature can have a dramatic impact on disease outcome and that this protection can be mediated by temperature itself (as opposed to temperature stimulating immune responses),” Sam Wilson, a co-author of the study with Cambridge University, told Newsweek.

“Avian viruses are resistant to elevated temperature and this is likely one reason why avian viruses tend to cause more severe disease in humans,” Wilson added.​

First H5N5 death

The new study follows the reported death of an “older adult” from Washington state, who contracted the bird flu virus known as H5N5 last week.

The Washington State Department of Health said in a statement that testing confirmed “The virus as H5N5, making this the first recorded infection with this variant in a person globally.” The department added that “The result was confirmed by the Center for Disease Control and Prevention (CDC).”
​-snip-

What did the study find?

Researchers found that unlike the human flu, where the virus thrives in the upper respiratory tract, the avian influenza virus thrives in the lower respiratory tract. The temperature in the lower respiratory tract is higher, with body temperature typically sitting at 98.6 Fahrenheit, while the upper respiratory tract typically stays at 91.4 Fahrenheit.
-snip-


continued: https://san.com/cc/bird-flu-strain-shown-to-be-fever-resistant-amid-first-human-death-from-h5n5/


 
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