Preparedness, prevention and control related to zoonotic avian influenza.

EFSA Panel on Animal Health and Animal Welfare (AHAW) ECDC Julio Alvarez1 Anette Boklund1 Sabine Dippel1 Fernanda Dórea1 Jordi Figuerola1 Mette S Herskin1 Virginie Michel1 Miguel Ángel Miranda Chueca1 Eleonora Nannoni1 Søren Saxmose Nielsen1 Romolo Nonno1 Anja B Riber1 Jan Arend Stegeman1 Karl Ståhl1 Hans-Hermann Thulke1 Frank Tuyttens1 Christoph Winckler1 Claire Brugerolles2 Thorsten Wolff2 Anna Parys2 Erika Lindh2 Neus Latorre-Margalef2 Marie-Anne Rameix Welti2 Ralf Dürrwald2 Ramona Trebbien2 Sylvie Van der Werf2 Magnus Gisslén2 Isabella Monne3 Alice Fusaro3 Claire Guinat3 Alessio Bortolami3 Leonidas Alexakis4 Theresa Enkirch4 Olov Svartstrom4 Katriina Willgert4 Francesca Baldinelli5 Ludovica Preite5 Malin Grant5 Alessandro Broglia5 Angeliki Melidou4
Affiliations 5 institutions
  1. EFSA Panel on Animal Health and Animal Welfare members.
  2. ECDC external experts.
  3. EFSA external experts.
  4. ECDC.
  5. EFSA.

Abstract

A risk assessment framework was developed to evaluate the zoonotic potential of avian influenza (AI), focusing on virus mutations linked to phenotypic traits related to mammalian adaptation identified in the literature. Virus sequences were screened for the presence of these mutations and their geographical, temporal and subtype-specific trends. Spillover events to mammals (including humans) and human seroprevalence studies were also reviewed. Thirty-four mutations associated with five phenotypic traits (increased receptor specificity, haemagglutinin stability, neuraminidase specificity, enhanced polymerase activity and evasion of innate immunity) were shortlisted. AI viruses (AIVs) carrying multiple adaptive mutations and traits belonged to both low and highly pathogenic subtypes, mainly to A(H9N2), A(H7N9), A(H5N6) and A(H3N8), were sporadic and primarily detected in Asia. In the EU/EEA, H5Nx viruses of clade 2.3.4.4b, which have increased opportunities for evolution due to widespread circulation in birds and occasional cases/outbreaks in mammals, have acquired the highest number of zoonotic traits. Adaptive traits, such as enhanced polymerase activity and immune evasion, were frequently acquired, while receptor-specific mutations remained rare. Globally, human cases remain rare, with the majority overall due to A(H5N1), A(H5N6), A(H7N9) and A(H9N2) that are among the subtypes that tend to have a higher number of adaptive traits. The main drivers of mammalian adaptation include virus and host characteristics, and external factors increasing AIV exposure of mammals and humans to wild and domestic birds (e.g. human activities and ecological factors). Comprehensive surveillance of AIVs targeting adaptive mutations with whole genome sequencing in animals and humans is essential for early detection of zoonotic AIVs and efficient implementation of control measures. All preparedness, preventive and control measures must be implemented under a One Health framework and tailored to the setting and the epidemiological situation; in particular, enhanced monitoring, biosecurity, genomic surveillance and global collaboration are critical for mitigating the zoonotic risks of AIV.

Supporting text Virus Host Location
avian influenza 57 birds 214 highly pathogenic avian influenza (HPAI) 6 mammals 99 mutations 7 preparedness 1 public health 37

Evidence records

2 total
Zoonotic Surveillance
2 records · 2 evidence types
Evidence type
1 records
OVE8867
Key finding

Avian influenza viruses of subtypes A(H9N2), A(H7N9), A(H5N6), and A(H3N8) carrying multiple adaptive mutations were detected in Asia.

Virus
Host
Not specified
Location
Supporting text

AI viruses (AIVs) carrying multiple adaptive mutations and traits belonged to both low and highly pathogenic subtypes, mainly to A(H9N2), A(H7N9), A(H5N6) and A(H3N8), were sporadic and primarily detected in Asia.

Method
whole genome sequencing | genomic surveillance
Sample type
virus sequences
Geographic raw
Asia
Evidence type
1 records
OVE8870
Key finding

Human seroprevalence studies have indicated prior exposure to avian influenza viruses.

Virus
Host
Location
Not specified
Supporting text

Spillover events to mammals (including humans) and human seroprevalence studies were also reviewed.

Method
seroprevalence study | serological testing