The role of vaccination and environmental factors on outbreaks of high pathogenicity avian influenza H5N1 in Bangladesh.

Ariful Islam1,2 Sarah Munro2 Mohammad Mahmudul Hassan3,4 Jonathan H Epstein2 Marcel Klaassen1
Affiliations 4 institutions
  1. Centre for Integrative Ecology, School of Life and Environmental Sciences, Deakin University, Melbourne, Victoria, Australia.
  2. EcoHealth Alliance, New York, NY 10018, USA.
  3. Queensland Alliance for One Health Sciences, School of Veterinary Science, University of Queensland, Brisbane, QLD, Australia.
  4. Faculty of Veterinary Medicine, Chattogram Veterinary and Animal Sciences University, Chattogram 4225, Bangladesh.

Abstract

High Pathogenicity Avian Influenza (HPAI) H5N1 outbreaks continue to wreak havoc on the global poultry industry and threaten the health of wild bird populations, with sporadic spillover in humans and other mammals, resulting in widespread calls to vaccinate poultry. Bangladesh has been vaccinating poultry since 2012, presenting a prime opportunity to study the effects of vaccination on HPAI H5N1circulation in both poultry and wild birds. We investigated the efficacy of vaccinating commercial poultry against HPAI H5N1 along with climatic and socio-economic factors considered potential drivers of HPAI H5N1 outbreak risk in Bangladesh. Using a multivariate modeling approach, we estimated that the rate of outbreaks was 18 times higher before compared to after vaccination, with winter months having a three times higher chance of outbreaks than summer months. Variables resulting in small but significant increases in outbreak rate were relatively low ambient temperatures for the time of year, literacy rate, chicken and duck density, crop density, and presence of highways; this may be attributable to low temperatures supporting viral survival outside the host, higher literacy driving reporting rate, density of the host reservoir, and spread of the virus through increased connectivity. Despite the substantial impact of vaccination on outbreaks, we note that HPAI H5N1 is still enzootic in Bangladesh; vaccinated poultry flocks have high rates of H5N1 prevalence, and spillover to wild birds has increased. Vaccination in Bangladesh thus bears the risk of supporting "silent spread," where the vaccine only provides protection against disease and not also infection. Our findings underscore that poultry vaccination can be part of holistic HPAI mitigation strategies when accompanied by monitoring to avoid silent spread.

Supporting text Virus Host Location
Bird flu 2 Chicken 9 Climate drivers 1 Epidemiology 48 Immunization 2 Poultry 130 Socio-economic factors 1

Evidence records

4 total
Zoonotic Surveillance
2 records · 2 evidence types
Evidence type
1 records
OVE7645
Key finding

Vaccinated poultry flocks in Bangladesh showed high rates of H5N1 prevalence, indicating continued viral circulation despite vaccination.

Virus
Host
Location
Supporting text

Despite the substantial impact of vaccination on outbreaks, we note that HPAI H5N1 is still enzootic in Bangladesh; vaccinated poultry flocks have high rates of H5N1 prevalence, and spillover to wild birds has increased.

Method
multivariate modeling approach | surveillance detection of H5N1 prevalence
Sample type
flock-level surveillance samples
Geographic raw
Bangladesh
Country inferred
BGD
Evidence type
1 records
OVE7643
Key finding

Higher densities of domestic chickens and ducks in Bangladesh were significantly associated with increased HPAI H5N1 outbreak rates, suggesting ecological maintenance linked to host population density.

Virus
Host
Location
Supporting text

Variables resulting in small but significant increases in outbreak rate were relatively low ambient temperatures for the time of year, literacy rate, chicken and duck density, crop density, and presence of highways; this may be attributable to low temperatures supporting viral survival outside the host, higher literacy driving reporting rate, density of the host reservoir, and spread of the virus through increased connectivity.

Method
multivariate modeling | ecological variable analysis
Geographic raw
Bangladesh
Country inferred
BGD
Transmission Evidence
2 records · 2 evidence types
Evidence type
1 records
OVE7642
Key finding

Outbreak modeling showed that HPAI H5N1 outbreaks in Bangladeshi poultry were 18 times more frequent before vaccination than after, with increased outbreaks during winter months.

Virus
Host
Location
Supporting text

We investigated the efficacy of vaccinating commercial poultry against HPAI H5N1 along with climatic and socio-economic factors considered potential drivers of HPAI H5N1 outbreak risk in Bangladesh. Using a multivariate modeling approach, we estimated that the rate of outbreaks was 18 times higher before compared to after vaccination, with winter months having a three times higher chance of outbreaks than summer months.

Method
multivariate modeling | vaccination impact analysis | epidemiological outbreak rate estimation
Transmission direction
same-species transmission
Geographic raw
Bangladesh
Country inferred
BGD
Outbreak setting
commercial poultry farms
Outbreak time
before and after vaccination periods
Outbreak scale
rate of outbreaks 18 times higher before vaccination; winter three times higher than summer
Evidence type
1 records
OVE7644
Key finding

Spillover of HPAI H5N1 from vaccinated poultry flocks to wild birds has increased in Bangladesh.

Virus
Host
Location
Supporting text

Despite the substantial impact of vaccination on outbreaks, we note that HPAI H5N1 is still enzootic in Bangladesh; vaccinated poultry flocks have high rates of H5N1 prevalence, and spillover to wild birds has increased.

Method
multivariate modeling of outbreak and prevalence data
Study design
epidemiological modeling and observational surveillance
Transmission direction
animal-to-animal
Geographic raw
Bangladesh