Key result
Transmission models predict rotavirus vaccination cuts severe RVGE up to ~50% driven by indirect effects.
Why the study?
Transmission dynamic models have varied in quantifying the indirect protection from rotavirus vaccination in developed countries, and it is unclear if indirect benefits extend long term.
Does rotavirus vaccination provide indirect protection against severe RVGE in the short and long term?
Does rotavirus vaccination provide indirect protection against severe RVGE in the short and long term?
Transmission dynamic models predict that rotavirus vaccination provides substantial short-term indirect protection, though this may be partially offset long-term by a shift in disease burden to older unvaccinated individuals.
Models suggest short-term indirect protection from rotavirus vaccination; leaves open long-term age-specific burden shifts.
Early observations from countries that have introduced rotavirus vaccination suggest that there may be indirect protection for unvaccinated individuals, but it is unclear whether these benefits will extend to the long term. Transmission dynamic models have attempted to quantify the indirect protection that might be expected from rotavirus vaccination in developed countries, but results have varied. To better understand the magnitude and sources of variability in model projections, we undertook a comparative analysis of transmission dynamic models for rotavirus. We fit five models to reported rotavirus gastroenteritis (RVGE) data from England and Wales, and evaluated outcomes for short- and long-term vaccination effects. All of our models reproduced the important features of rotavirus epidemics in England and Wales. Models predicted that during the initial year after vaccine introduction, incidence of severe RVGE would be reduced 1.8-2.9 times more than expected from the direct effects of the vaccine alone (28-50% at 90% coverage), but over a 5-year period following vaccine introduction severe RVGE would be reduced only by 1.1-1.7 times more than expected from the direct effects (54-90% at 90% coverage). Projections for the long-term reduction of severe RVGE ranged from a 55% reduction at full coverage to elimination with at least 80% coverage. Our models predicted short-term reductions in the incidence of RVGE that exceeded estimates of the direct effects, consistent with observations from the United States and other countries. Some of the models predicted that the short-term indirect benefits may be offset by a partial shifting of the burden of RVGE to older unvaccinated individuals. Nonetheless, even when such a shift occurs, the overall reduction in severe RVGE is considerable. Discrepancies among model predictions reflect uncertainties about age variation in the risk and reporting of RVGE, and the duration of natural and vaccine-induced immunity, highlighting important questions for future research.
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Pitzer et al. (2012) studied Rotavirus gastroenteritis (RVGE). Rotavirus vaccination vs. Direct effects of vaccine alone was evaluated on Reduction in incidence of severe RVGE. Transmission dynamic models predicted that in the first year after introduction, rotavirus vaccination would reduce severe gastroenteritis incidence by 28-50% at 90% coverage, which is 1.8-2.9 times more than expected from direct effects alone.
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