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Feasibility of measles and rubella vaccination programmes for disease elimination: a modelling study
Amy K Winter1, Brian Lambert2, Daniel Klein3
1Department of Epidemiology and Biostatics and Center for the Ecology of Infectious Diseases, University of Georgia, Athens, GA, USA.
Background:
Marked reductions in the incidence of measles and rubella have been observed since the widespread use of the measles and rubella vaccines. Although no global goal for measles eradication has been established, all six WHO regions have set measles elimination targets. However, a gap remains between current control levels and elimination targets, as shown by large measles outbreaks between 2017 and 2019. We aimed to model the potential for measles and rubella elimination globally to inform a WHO report to the 73rd World Health Assembly on the feasibility of measles and rubella eradication.
Methods:
In this study, we modelled the probability of measles and rubella elimination between 2020 and 2100 under different vaccination scenarios in 93 countries of interest. We evaluated measles and rubella burden and elimination across two national transmission models each (Dynamic Measles Immunisation Calculation Engine [DynaMICE], Pennsylvania State University [PSU], Johns Hopkins University, and Public Health England models), and one subnational measles transmission model (Institute for Disease Modeling model). The vaccination scenarios included a so-called business as usual approach, which continues present vaccination coverage, and an intensified investment approach, which increases coverage into the future. The annual numbers of infections projected by each model, country, and vaccination scenario were used to explore if, when, and for how long the infections would be below a threshold for elimination.
Findings:
The intensified investment scenario led to large reductions in measles and rubella incidence and burden. Rubella elimination is likely to be achievable in all countries and measles elimination is likely in some countries, but not all. The PSU and DynaMICE national measles models estimated that by 2050, the probability of elimination would exceed 75% in 14 (16%) and 36 (39%) of 93 modelled countries, respectively. The subnational model of measles transmission highlighted inequity in routine coverage as a likely driver of the continuance of endemic measles transmission in a subset of countries.
Interpretation:
To reach regional elimination goals, it will be necessary to innovate vaccination strategies and technologies that increase spatial equity of routine vaccination, in addition to investing in existing surveillance and outbreak response programmes.
Funding:
WHO, Gavi, the Vaccine Alliance, US Centers for Disease Control and Prevention, and the Bill & Melinda Gates Foundation.
Insights
Measles and rubella elimination is achievable in some countries with intensified vaccination efforts, but inequities in coverage hinder global eradication. Increased investment in vaccination strategies and surveillance is crucial.
Area of Science:
- Epidemiology
- Public Health
- Mathematical Modeling
Background:
- Measles and rubella incidence has decreased due to widespread vaccination.
- Despite regional elimination targets, outbreaks persist, indicating a gap in current control.
- Global measles eradication has not been a formal goal, but feasibility is under review.
Purpose of the Study:
- To model the global potential for measles and rubella elimination.
- To inform a World Health Organization (WHO) report on the feasibility of measles and rubella eradication.
- To evaluate elimination probabilities under various vaccination scenarios.
Main Methods:
- Modeled measles and rubella elimination probabilities from 2020-2100 in 93 countries.
- Utilized multiple national (DynaMICE, PSU, JHU, PHE) and subnational (IDM) transmission models.
- Compared 'business as usual' vaccination coverage with an 'intensified investment' scenario.
Main Results:
- An intensified investment scenario significantly reduced measles and rubella incidence and burden.
- Rubella elimination is likely globally; measles elimination is probable in some, but not all, countries.
- By 2050, elimination probabilities exceeded 75% in 16% (PSU) and 39% (DynaMICE) of countries; subnational models highlighted coverage inequity.
Conclusions:
- Achieving regional measles and rubella elimination requires innovative vaccination strategies and technologies.
- Increased spatial equity in routine vaccination is essential.
- Investment in surveillance and outbreak response programs remains critical.
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