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Published on: August 19, 2021
Assessing the effectiveness of intervention to prevent plague through community and animal-based survey
Soanandrasana Rahelinirina1, Soloandry Rahajandraibe2, Sitraka Rakotosamimanana3
1Plague Unit, Institut Pasteur de Madagascar, Antananarivo, Madagascar.
Abstract:
Bubonic plague, transmitted by infected flea bites, is the most common form of plague and, left untreated, can progress to the pneumonic form, which is highly contagious. Surveillance focusing on reservoir and vector is considered to be the main approach to prevent plague. Common rodent control methods include the use of rodenticide and snap traps but, in a plague context, the dispersal of fleas from killed animals may pose a serious health threat. Therefore, there is a need for strategies which address reservoir and vector control. The aim of this study was to assess the effects of combination of reservoir and vector control through community-based surveillance. Activities were implemented by local previously trained community agents in two active plague foci in Madagascar. Kartman bait stations containing rodenticide and insecticide were placed indoors while live traps were set outdoors. Small mammals were identified and killed with their fleas. Effectiveness of control measures was evaluated by comparison of plague incidence two years before and after intervention using data on reported human cases of plague from the Central Laboratory of Plague. A total of 4,302 small mammals were captured, with the predominance of the black rat Rattus rattus. Our results found a reduction in plague incidence in the treated site for at least two years after treatment. Community-based interventions played an important role in reducing contact between humans-rodents-fleas. Our study confirms the importance of animal surveillance during the low plague transmission season. The combination of reservoir and vector control with community involvement may be effective at reducing the risks of plague spillover to humans. The strategy of using Kartman bait stations indoors with live traps outdoors can be used to refine proactive plague prevention, however, due to the potential development of resistance to pesticides in flea and rat populations, overuse should be considered.
Insights
Community-based plague control combining rodent and flea management significantly reduced human plague cases in Madagascar. This integrated strategy, using bait stations and traps, proved effective for at least two years.
Area of Science:
- Veterinary Public Health
- Epidemiology
- Zoonotic Disease Control
Background:
- Bubonic plague, primarily spread by flea bites, can evolve into highly contagious pneumonic plague.
- Current plague prevention relies on reservoir and vector surveillance, but rodent control methods can pose risks.
- Effective strategies are needed to simultaneously manage both plague reservoirs and vectors.
Purpose of the Study:
- To evaluate the impact of combined reservoir and vector control interventions on plague incidence.
- To assess the effectiveness of community-based surveillance in plague prevention.
- To determine the efficacy of using Kartman bait stations and live traps in plague foci.
Main Methods:
- Community agents implemented interventions in two active plague foci in Madagascar.
- Indoor Kartman bait stations (rodenticide and insecticide) and outdoor live traps were utilized.
- Small mammals and their fleas were captured, identified, and processed; plague incidence was compared pre- and post-intervention.
Main Results:
- A total of 4,302 small mammals were captured, predominantly Rattus rattus.
- Plague incidence decreased significantly in the intervention sites for at least two years post-treatment.
- Community involvement was crucial in reducing human-rodent-flea contact.
Conclusions:
- Integrated reservoir and vector control, involving the community, effectively reduces plague transmission to humans.
- The combined use of indoor bait stations and outdoor live traps offers a refined approach to proactive plague prevention.
- Continued surveillance during low transmission seasons and consideration of pesticide resistance are vital for sustained control.
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