The need for pre-emptive control strategies for mpox in Asia and Oceania
Gregory Gan1, A Janhavi1, Guan Tong1
1Saw Swee Hock School of Public Health, National University of Singapore, Singapore.
Introduction:
The transmission dynamics of the recent mpox outbreak highlights the lack of infrastructure available to rapidly respond to novel STI outbreaks, of which Asia and Oceania remains particularly susceptible. Here, we simulate outbreaks in this setting and propose the use of pre-emptive vaccination within the men who have sex with men (MSM) community before the arrival and establishment of the virus.
Materials And Methods:
Using data driven heterogeneous sexual contact networks, we simulated outbreaks of mpox in Singapore, Hong Kong, and Sydney. An individual based SEIR compartmental model was used to simulate epidemic trajectories and the impact of different vaccination uptakes was assessed in their ability to avert or suppress outbreaks upon the arrival of mpox within the MSM populations.
Results:
The highly dense sexual networks of Singapore and Sydney experience rapid outbreaks, with infection peaks occurring at day 41 and 23 respectively, compared to Hong Kong which occurs at day 77. Across the simulations with no vaccination, 68.2%-89.7% of the MSM community will become infected with mpox across the different cities, over a simulation period of 1 year. By implementing vaccination strategies, the infection rate across the cities can be reduced to as low as 3.1% of the population (range: 3.1%-82.2%) depending on the implementation and uptake of the vaccine. Vaccination is also extremely effective in slowing the start of the epidemic, delaying the epidemic peak by 36-50 days in Hong Kong, or even preventing the outbreak of mpox.
Discussion:
With extremely dense and well-connected sexual contact networks, where 65.2%-83.2% of the population are connected to a super-spreader in the different contact networks, pre-emptive or immediate vaccination upon identification of the first case is strongly recommended to help better manage the outbreak of mpox and prevent potential straining of healthcare systems.
Insights
Pre-emptive vaccination for men who have sex with men (MSM) can significantly reduce mpox outbreaks in Asia and Oceania. Vaccination can lower infection rates from nearly 90% to as low as 3.1% and delay epidemic peaks.
Area of Science:
- Epidemiology
- Public Health
- Infectious Disease Modeling
Background:
- The recent mpox outbreak revealed gaps in responding to novel sexually transmitted infections (STIs), particularly in Asia and Oceania.
- Asia and Oceania are identified as susceptible regions requiring robust infrastructure for rapid STI outbreak response.
Purpose of the Study:
- To simulate mpox outbreaks in Asia and Oceania.
- To propose pre-emptive vaccination strategies for the men who have sex with men (MSM) community.
- To assess the effectiveness of vaccination in averting or suppressing mpox outbreaks.
Main Methods:
- Utilized data-driven, heterogeneous sexual contact networks to simulate mpox outbreaks in Singapore, Hong Kong, and Sydney.
- Employed an individual-based SEIR compartmental model to simulate epidemic trajectories.
- Assessed the impact of varying vaccination uptakes on outbreak suppression.
Main Results:
- Simulations showed rapid outbreaks in dense networks (Singapore, Sydney) with infection peaks at days 41 and 23, respectively, versus Hong Kong at day 77.
- Without vaccination, 68.2%-89.7% of the MSM population could be infected within a year.
- Vaccination strategies reduced infection rates to as low as 3.1% (range: 3.1%-82.2%) and delayed epidemic peaks by 36-50 days in Hong Kong, or prevented outbreaks entirely.
Conclusions:
- Extremely dense and well-connected sexual networks (65.2%-83.2% connected to super-spreaders) necessitate urgent intervention.
- Pre-emptive or immediate vaccination upon first case identification is strongly recommended.
- Vaccination is crucial for managing mpox outbreaks and preventing healthcare system strain.
Related Concept Videos
Antiplatelet Drugs: Prostaglandin Synthesis, P2Y12 and Glycoprotein IIb/IIIa Inhibitors
Prostaglandin synthesis inhibitors, exemplified by the widely known aspirin, wield their power by irreversibly acetylating...
Drug Control Governance: Regulatory Bodies and Their Impact


