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Analysis of a meningococcal meningitis outbreak in Niger - potential effectiveness of reactive prophylaxis
Matt D T Hitchings1, Matthew E Coldiron2, Rebecca F Grais2
1Center for Communicable Disease Dynamics and Department of Epidemiology, Harvard T. H. Chan School of Public Health, Boston, MA, United States of America.
Background:
Seasonal epidemics of bacterial meningitis in the African Meningitis Belt carry a high burden of disease and mortality. Reactive mass vaccination is used as a control measure during epidemics, but the time taken to gain immunity from the vaccine reduces the flexibility and effectiveness of these campaigns. Targeted reactive antibiotic prophylaxis could be used to supplement reactive mass vaccination and further reduce the incidence of meningitis, and the potential effectiveness and efficiency of these strategies should be explored.
Methods And Findings:
Data from an outbreak of meningococcal meningitis in Niger, caused primarily by Neisseria meningitidis serogroup C, is used to estimate clustering of meningitis cases at the household and village level. In addition, reactive antibiotic prophylaxis and reactive vaccination strategies are simulated to estimate their potential effectiveness and efficiency, with a focus on the threshold and spatial unit used to declare an epidemic and initiate the intervention. There is village-level clustering of suspected meningitis cases after an epidemic has been declared in a health area. Risk of suspected meningitis among household contacts of a suspected meningitis case is no higher than among members of the same village. Village-wide antibiotic prophylaxis can target subsequent cases in villages: across of range of parameters pertaining to how the intervention is performed, up to 220/672 suspected cases during the season are potentially preventable. On the other hand, household prophylaxis targets very few cases. In general, the village-wide strategy is not very sensitive to the method used to declare an epidemic. Finally, village-wide antibiotic prophylaxis is potentially more efficient than mass vaccination of all individuals at the beginning of the season, and than the equivalent reactive vaccination strategy.
Conclusions:
Village-wide antibiotic prophylaxis should be considered and tested further as a response against outbreaks of meningococcal meningitis in the Meningitis Belt, as a supplement to reactive mass vaccination.
Insights
Village-wide antibiotic prophylaxis shows promise for controlling bacterial meningitis outbreaks in the African Meningitis Belt. This strategy may be more effective and efficient than mass vaccination, especially when supplementing existing campaigns.
Area of Science:
- Epidemiology
- Public Health
- Infectious Disease Control
Background:
- Seasonal bacterial meningitis epidemics in the African Meningitis Belt cause significant disease and mortality.
- Reactive mass vaccination is a control measure, but delayed immunity limits its effectiveness.
- Targeted antibiotic prophylaxis could enhance control and reduce meningitis incidence.
Purpose of the Study:
- To explore the potential effectiveness and efficiency of targeted reactive antibiotic prophylaxis.
- To analyze clustering of meningitis cases at household and village levels during an outbreak.
- To evaluate intervention thresholds and spatial units for epidemic declaration.
Main Methods:
- Utilized data from a Neisseria meningitidis serogroup C outbreak in Niger.
- Simulated reactive antibiotic prophylaxis and vaccination strategies.
- Estimated case prevention and intervention efficiency under various parameters.
Main Results:
- Meningitis cases exhibit village-level clustering post-epidemic declaration.
- Household contact risk is not higher than village-level risk.
- Village-wide antibiotic prophylaxis could prevent a substantial number of cases (up to 220/672).
- Village-wide prophylaxis is potentially more efficient than mass vaccination or reactive vaccination.
Conclusions:
- Village-wide antibiotic prophylaxis warrants further investigation and testing.
- It should be considered as a supplementary response to meningococcal meningitis outbreaks.
- This strategy can augment reactive mass vaccination efforts in the Meningitis Belt.
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