This site is not going to use any other name for H5N1 avian flu - even if the strain appears in a non-avian animal, like a cow, for instance.
A great explainer on this issue by
@thijskuiken :
(my bolding in item #19)
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Thijs Kuiken
@thijskuiken
1/n Changing the name of highly pathogenic avian influenza virus H5N1 into ‘bovine influenza A virus’ implies it has become endemic in cattle, a worst-case scenario! But how are influenza viruses actually classified? A thread:
#vogelgriep
bovinevetonline.com
AABP Decides to Reference Cattle Disease as Bovine Influenza A Virus (BIAV)
11:29 AM · Apr 16, 2024
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Thijs Kuiken
@thijskuiken
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2/n When we write ‘bird flu virus’ or ‘avian influenza virus’ in the context of the currently ongoing global outbreak, we really mean highly pathogenic avian influenza A virus H5N1. (This virus was first detected in a commercial goose farm in Guangdong province China, in 1996.
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3/n It there belongs to the so-called A/goose/Guangdong/1/96 lineage.) I will take its name apart and discuss the separate pieces: i. influenza A virus (rather than B, C, or D) ii. avian (rather than human, swine, equine, or bat) iii. H5 (rather than H1 to H18)
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4/n iv. N1 (rather than N1 to N11) v. highly pathogenic (rather than low pathogenic)
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5/n Let’s start: i. Influenza viruses can be divided into four major types: A (mainly in birds, swine, horses, humans, and bats), B (in humans and seals), C (in swine and humans), and D (in cattle). We are here dealing with an influenza A virus.
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6/n ii. Most influenza A viruses (except bat influenza A viruses) are considered to originate from wild aquatic birds, particularly species of dabbling ducks and gulls, in which they are endemic.
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7/n (Endemic means that the virus persists at a consistent level within a population with fairly predictable rates of infection and spread.)
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8/n However, they can spill over into chickens and other poultry species kept in farms and, if not dealt with appropriately, become endemic in poultry populations. The influenza A viruses that are endemic in birds, either wild or domestic, are called avian influenza A viruses.
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9/n From birds, avian influenza A viruses can spill over into mammals. Usually, there is no or only limited mammal-to-mammal transmission. On rare occasions, however, avian influenza A viruses persist in mammalian populations and become genetically adapted to them.
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10/n In that case, they are given the name of the species to which they have adapted: human influenza A viruses in people, swine influenza A viruses in pigs, and equine influenza A viruses in horses.
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11/n iii. Influenza A viruses have two kinds of proteins projecting from their surface. One is labelled H (for hemagglutinin), and there are 16 different H subtypes, H1 to H16. (In addition, bat influenza A viruses have H17 and H18.) We are here dealing with H5.
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Thijs Kuiken
@thijskuiken
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11/n iii. Influenza A viruses have two kinds of proteins projecting from their surface. One is labelled H (for hemagglutinin), and there are 16 different H subtypes, H1 to H16. (In addition, bat influenza A viruses have H17 and H18.) We are here dealing with H5.
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12/n iv. The other surface protein is labelled N (for neuraminidase), and there are 9 different N subtypes, N1 to N9. (In addition, bat influenza A viruses have N10 and N11.) We are here dealing with N1, but the virus has switched to other N subtypes in past, e.g. H5N8 and H5N6.
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13/n v. There is a special classification of avian influenza A viruses into low pathogenic or highly pathogenic. This classification refers only to the pathogenicity (that is, ability to cause disease) of these viruses in chickens, not in other species of birds, not in mammals.
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14/n Historically, the vast majority of avian influenza A viruses detected in wild aquatic birds were low pathogenic (but see below).
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15/n In poultry, however, and particularly in intensive poultry production systems, low pathogenic avian influenza A viruses of the subtypes H5 and H7 can mutate into highly pathogenic avian influenza A viruses. We are here dealing with a highly pathogenic form.
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16/n So, to put the name of the virus we are dealing with in the currently ongoing global outbreak together again, it is highly pathogenic avian influenza A virus H5N1.
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17/n Besides being endemic in poultry populations in some countries, it has spilled over into wild aquatic birds and appears to have become endemic in them also. This means that we nowadays can detect both low and highly pathogenic avian influenza A viruses in wild birds.
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18/n Besides spilling over into wild aquatic birds, it has spilled over into many other species of birds (>300 bird species in total). It also has spilled over into many species of mammals (>50 in total), including, since March 2024, in cattle in the USA.
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19/n However,
because the virus has *not* become endemic in any of the mammal species (including cattle) so far and has not shown clear genetic adaptation to those species, the appropriate name remains highly pathogenic avian influenza A virus H5N1.
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20/n Webster et al. 1992: Evolution and ecology of influenza A viruses (DOI: 10.1128/mr.56.1.152-179.1992).
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21/n Xu et al. 1999: Genetic characterization of the pathogenic influenza A/Goose/Guangdong/1/96 (H5N1) virus: similarity of its hemagglutinin gene to those of H5N1 viruses from the 1997 outbreaks in Hong Kong (doi: 10.1006/viro.1999.9820).
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22/n Olsen et al. 2006: Global patterns of influenza A virus in wild birds (doi: 10.1126/science.1122438). Brunotte et al. 2016: Chiropteran influenza viruses: flu from bats or a relic from the past? (doi: 10.1016/j.coviro.2016.02.003).
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23/n Dhingra et al. 2018: Geographical and historical patterns in the emergences of novel highly pathogenic avian influenza (HPAI) H5 and H7 viruses in poultry (doi: 10.3389/fvets.2018.00084).
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24/n Pohlmann et al. 2022: Has epizootic become enzootic? Evidence for a fundamental change in the infection dynamics of highly pathogenic avian influenza in Europe, 2021 (doi: 10.1128/mbio.00609-22).
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25/n Klaassen & Wille 2023: The plight and role of wild birds in the current bird flu panzootic (doi: 10.1038/s41559-023-02182-x). European Food Safety Authority et al. 2023: Avian influenza overview September-December 2023 (doi: 10.2903/j.efsa.2023.8539).
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26/n Kuiken et al. 2006: Host species barriers to influenza virus infections (doi: 10.1126/science.1122818).
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