Transmission potential of influenza A/H7N9, February to May 2013, China.

Gerardo Chowell1 Lone Simonsen Sherry Towers Mark A Miller Cécile Viboud
Affiliations 1 institutions
  1. Division of International Epidemiology and Population Studies, Fogarty International Center, National Institutes of Health, 31 Center Dr, MSC 2220, Bethesda 20892-2220, Maryland, USA. [email protected].

Abstract

On 31 March 2013, the first human infections with the novel influenza A/H7N9 virus were reported in Eastern China. The outbreak expanded rapidly in geographic scope and size, with a total of 132 laboratory-confirmed cases reported by 3 June 2013, in 10 Chinese provinces and Taiwan. The incidence of A/H7N9 cases has stalled in recent weeks, presumably as a consequence of live bird market closures in the most heavily affected areas. Here we compare the transmission potential of influenza A/H7N9 with that of other emerging pathogens and evaluate the impact of intervention measures in an effort to guide pandemic preparedness. We used a Bayesian approach combined with a SEIR (Susceptible-Exposed-Infectious-Removed) transmission model fitted to daily case data to assess the reproduction number (R) of A/H7N9 by province and to evaluate the impact of live bird market closures in April and May 2013. Simulation studies helped quantify the performance of our approach in the context of an emerging pathogen, where human-to-human transmission is limited and most cases arise from spillover events. We also used alternative approaches to estimate R based on individual-level information on prior exposure and compared the transmission potential of influenza A/H7N9 with that of other recent zoonoses. Estimates of R for the A/H7N9 outbreak were below the epidemic threshold required for sustained human-to-human transmission and remained near 0.1 throughout the study period, with broad 95% credible intervals by the Bayesian method (0.01 to 0.49). The Bayesian estimation approach was dominated by the prior distribution, however, due to relatively little information contained in the case data. We observe a statistically significant deceleration in growth rate after 6 April 2013, which is consistent with a reduction in A/H7N9 transmission associated with the preemptive closure of live bird markets. Although confidence intervals are broad, the estimated transmission potential of A/H7N9 appears lower than that of recent zoonotic threats, including avian influenza A/H5N1, swine influenza H3N2sw and Nipah virus. Although uncertainty remains high in R estimates for H7N9 due to limited epidemiological information, all available evidence points to a low transmission potential. Continued monitoring of the transmission potential of A/H7N9 is critical in the coming months as intervention measures may be relaxed and seasonal factors could promote disease transmission in colder months.

Supporting text Virus Host Location
Disease Outbreaks 170 Models, Biological 16 Animals 1948 Bayes Theorem 32 China 229 Humans 1440 Influenza A Virus, H7N9 Subtype 87 Influenza in Birds 341 Influenza, Human 286 Poultry 112 Taiwan 3 Zoonoses 397

Evidence records

3 total
Transmission Evidence
3 records · 1 evidence types
Evidence type
3 records
OVE1578
Key finding

An outbreak of human infections with influenza A/H7N9 virus occurred in Eastern China beginning on 31 March 2013, expanding to 132 laboratory-confirmed cases across 10 provinces and Taiwan by 3 June 2013.

Virus
Host
Location
Supporting text

On 31 March 2013, the first human infections with the novel influenza A/H7N9 virus were reported in Eastern China. The outbreak expanded rapidly in geographic scope and size, with a total of 132 laboratory-confirmed cases reported by 3 June 2013, in 10 Chinese provinces and Taiwan.

Method
case reporting | epidemiological surveillance | laboratory confirmation
Transmission direction
animal-to-human
Geographic raw
Eastern China; 10 Chinese provinces; Taiwan
Country inferred
CHN
Outbreak setting
community outbreak investigation
Outbreak time
31 March 2013 to 3 June 2013
Outbreak scale
132 laboratory-confirmed cases
OVE1579
Key finding

Transmission of influenza A/H7N9 virus in China decreased following closure of live bird markets after 6 April 2013, as shown by statistical analysis of outbreak case data.

Virus
Host
Location
Supporting text

We observe a statistically significant deceleration in growth rate after 6 April 2013, which is consistent with a reduction in A/H7N9 transmission associated with the preemptive closure of live bird markets.

Method
statistical analysis | epidemiological modeling | Bayesian SEIR transmission modeling
Transmission direction
animal-to-human
Geographic raw
China
Country inferred
CHN
Outbreak setting
live bird markets
Outbreak time
after 6 April 2013
Outbreak scale
deceleration in growth rate of human cases
OVE1580
Key finding

Human infections with influenza A/H7N9 virus in China mostly arose from animal-to-human spillover rather than sustained human transmission.

Virus
Host
Location
Supporting text

On 31 March 2013, the first human infections with the novel influenza A/H7N9 virus were reported in Eastern China. Simulation studies helped quantify the performance of our approach in the context of an emerging pathogen, where human-to-human transmission is limited and most cases arise from spillover events.

Method
Bayesian SEIR transmission model | simulation studies | individual-level exposure data
Transmission direction
animal-to-human
Geographic raw
China