Quantifying the Impact of Switching From Rotarix to Rotavac Rotavirus Vaccine in Ghana
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The Journal of Infectious Diseases
Abstract
Background. Ghana introduced the Rotarix vaccine in April 2012 and switched to the Rotavac vaccine in January 2020.
Evaluating the health impact of this change is essential for national policy and can inform decisions in other countries.
Methods. We applied a previously validated mathematical model of rotavirus transmission in Navrongo, Ghana, to quantify the
health impact of switching from Rotarix to Rotavac among children under 2. We first simulated the model from January 2007 to
December 2019 using previously estimated model parameters from pre- and post-Rotarix surveillance data. We then refitted
the model to data from January 2020 to March 2023 to estimate Rotavac vaccine effectiveness parameters. To assess overall
vaccine effectiveness (OVE), we compared model simulations under the 2 vaccination scenarios (Rotarix and Rotavac) with a
counterfactual scenario assuming no vaccination.
Results. The model accurately captured both the trend and seasonality of postvaccination rotavirus cases, with a Spearman
correlation of 0.70. Compared to the no-vaccination scenario, the estimated OVE against moderate-to-severe rotavirus cases
was 21.7% (95% prediction interval [PI]: 17.4%–26.1%) in children under 2 years in Navrongo. Annual OVE ranged from 8.4%
(PI: 1.0%–21.0%) to 63.5% (PI: 39.0%–87.0%). Following the switch from Rotarix to Rotavac (2020–2023), we estimated a mean
relative OVE of 37.1% (PI: 27.5%–46.5%).
Conclusions. Our model offers a robust tool to support policymakers in Ghana and similar settings by evaluating current
rotavirus vaccine effectiveness, guiding vaccine switching decisions and informing introduction strategies in countries yet to
adopt immunization.
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Research Article
Citation
Asare, E. O., Lartey, B. L., Armah, G. E., & Pitzer, V. E. (2026). Quantifying the impact of switching from Rotarix to Rotavac rotavirus vaccine in Ghana. The Journal of Infectious Diseases, 233(5), e1253-e1260.
