Transmission of a human isolate of clade 2.3.4.4b A(H5N1) virus in ferrets.

Joanna A Pulit-Penaloza1 Jessica A Belser2 Nicole Brock2 Troy J Kieran2 Xiangjie Sun2 Claudia Pappas2 Hui Zeng2 Paul Carney2 Jessie Chang2 Brandon Bradley-Ferrell2 James Stevens2 Juan A De La Cruz2 Yasuko Hatta2 Han Di2 C Todd Davis2 Terrence M Tumpey2 Taronna R Maines2
Affiliations 2 institutions
  1. Influenza Division, National Center for Immunization and Respiratory Diseases, Centers for Disease Control and Prevention, Atlanta, GA, USA. [email protected].
  2. Influenza Division, National Center for Immunization and Respiratory Diseases, Centers for Disease Control and Prevention, Atlanta, GA, USA.

Abstract

Since 2020, there has been unprecedented global spread of highly pathogenic avian influenza A(H5N1) in wild bird populations with spillover into a variety of mammalian species and sporadically humans1. In March 2024, clade 2.3.4.4b A(H5N1) virus was first detected in dairy cattle in the USA, with subsequent detection in numerous states2, leading to more than a dozen confirmed human cases3,4. In this study, we used the ferret, a well-characterized animal model that permits concurrent investigation of viral pathogenicity and transmissibility5, in the evaluation of A/Texas/37/2024 (TX/37) A(H5N1) virus isolated from a dairy farm worker in Texas6. Here we show that the virus has a remarkable ability for robust systemic infection in ferrets, leading to high levels of virus shedding and spread to naive contacts. Ferrets inoculated with TX/37 rapidly exhibited a severe and fatal infection, characterized by viraemia and extrapulmonary spread. The virus efficiently transmitted in a direct contact setting and was capable of indirect transmission through fomites. Airborne transmission was corroborated by the detection of infectious virus shed into the air by infected animals, albeit at lower levels compared to those of the highly transmissible human seasonal and swine-origin H1 subtype strains. Our results show that despite maintaining an avian-like receptor-binding specificity, TX/37 exhibits heightened virulence, transmissibility and airborne shedding relative to other clade 2.3.4.4b virus isolated before the 2024 cattle outbreaks7, underscoring the need for continued public health vigilance.

Supporting text Virus Host Location
Influenza A Virus, H5N1 Subtype 300 Orthomyxoviridae Infections 228 Virus Shedding 51 Animals 1948 Disease Models, Animal 77 Ferrets 79 Hemagglutinin Glycoproteins, Influenza Virus 180 Humans 1440 Influenza, Human 286 Male 224 Polysaccharides 31 Receptors, Virus 204 Respiratory Aerosols and Droplets 5 Texas 14 Virulence 108

Evidence records

3 total
Zoonotic Surveillance
1 records · 1 evidence types
Evidence type
1 records
OVE8523
Key finding

Clade 2.3.4.4b A(H5N1) virus A/Texas/37/2024 (TX/37) was successfully isolated from a dairy farm worker in Texas.

Virus
Host
Location
Not specified
Supporting text

A/Texas/37/2024 (TX/37) A(H5N1) virus isolated from a dairy farm worker in Texas.

Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE8524
Key finding

Ferrets experimentally inoculated with A/Texas/37/2024 (TX/37) A(H5N1) developed severe and fatal systemic infection with viraemia and extrapulmonary spread.

Virus
Host
Location
Not specified
Supporting text

Ferrets inoculated with TX/37 rapidly exhibited a severe and fatal infection, characterized by viraemia and extrapulmonary spread.

Method
experimental inoculation | pathological observation
Experimental system
ferret animal model
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE8526
Key finding

A/Texas/37/2024 (TX/37) A(H5N1) virus maintained avian-like receptor-binding specificity despite its heightened virulence and transmissibility.

Virus
Host
Not specified
Location
Not specified
Supporting text

Our results show that despite maintaining an avian-like receptor-binding specificity, TX/37 exhibits heightened virulence, transmissibility and airborne shedding relative to other clade 2.3.4.4b virus isolated before the 2024 cattle outbreaks.

Method
receptor-binding specificity analysis
Receptors
avian-like receptor