Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

P-163. Efficacy of Wolbachia-mediated sterility to suppress dengue

View through CrossRef
Abstract Background Vector control remains the primary means to mitigate the spread of dengue. Matings between male Aedes aegypti mosquitoes infected with the wAlbB strain of Wolbachia and wildtype females yield non-viable eggs (Wolbachia-Aedes). We evaluated the efficacy of Wolbachia-Aedes to suppress dengue incidence. We present data comprising a field trial of 607,872 residents over 5 years. Methods We utilized the synthetic control method and trial emulation approach to evaluate large-scale field trials in Singapore involving the deployment of Wolbachia-Aedes for dengue control via vector population suppression, from epidemiological week (EW) 27, 2018, to EW 26, 2022. We selected two large towns (Yishun and Tampines) to adopt an expanding release strategy and two smaller towns (Bukit Batok and Choa Chu Kang) to adopt a targeted-release approach. All intervention and control locations practised the same baseline dengue control protocol. The main outcome was weekly dengue incidence rate caused by any dengue virus serotype (in the case of the synthetic control method) and risk of being test positive for dengue (when using the trial emulation approach). We used incidence data collected by the Singapore Ministry of Health as well as a nationally representative dengue test positive/negative database to assess the efficacy of the interventions, To compare interventions, we used the synthetic control method or constrained randomization protocols to generate appropriate counterfactuals for the intervention towns selected from a combination of 30 control towns from EW 1, 2014 to EW 26, 2022. Results Our study comprised an at-risk population of 607 872 individuals living in intervention sites and 3 894 544 individuals living in control sites. Interventions demonstrated up to 77⋅28% (121/156, 95% CI 75⋅81–78⋅58) intervention efficacy despite incomplete coverage across all towns. Intervention efficacies increased as release coverage increased across all intervention sites. Secondary analysis showed that these intervention effects were replicated across all age groups and both sexes for intervention sites. Conclusion Wolbachia-mediated incompatible insect technique can strengthen dengue control in tropical cities, where dengue burden is the greatest. Disclosures All Authors: No reported disclosures
Oxford University Press (OUP)
Title: P-163. Efficacy of Wolbachia-mediated sterility to suppress dengue
Description:
Abstract Background Vector control remains the primary means to mitigate the spread of dengue.
Matings between male Aedes aegypti mosquitoes infected with the wAlbB strain of Wolbachia and wildtype females yield non-viable eggs (Wolbachia-Aedes).
We evaluated the efficacy of Wolbachia-Aedes to suppress dengue incidence.
We present data comprising a field trial of 607,872 residents over 5 years.
Methods We utilized the synthetic control method and trial emulation approach to evaluate large-scale field trials in Singapore involving the deployment of Wolbachia-Aedes for dengue control via vector population suppression, from epidemiological week (EW) 27, 2018, to EW 26, 2022.
We selected two large towns (Yishun and Tampines) to adopt an expanding release strategy and two smaller towns (Bukit Batok and Choa Chu Kang) to adopt a targeted-release approach.
All intervention and control locations practised the same baseline dengue control protocol.
The main outcome was weekly dengue incidence rate caused by any dengue virus serotype (in the case of the synthetic control method) and risk of being test positive for dengue (when using the trial emulation approach).
We used incidence data collected by the Singapore Ministry of Health as well as a nationally representative dengue test positive/negative database to assess the efficacy of the interventions, To compare interventions, we used the synthetic control method or constrained randomization protocols to generate appropriate counterfactuals for the intervention towns selected from a combination of 30 control towns from EW 1, 2014 to EW 26, 2022.
Results Our study comprised an at-risk population of 607 872 individuals living in intervention sites and 3 894 544 individuals living in control sites.
Interventions demonstrated up to 77⋅28% (121/156, 95% CI 75⋅81–78⋅58) intervention efficacy despite incomplete coverage across all towns.
Intervention efficacies increased as release coverage increased across all intervention sites.
Secondary analysis showed that these intervention effects were replicated across all age groups and both sexes for intervention sites.
Conclusion Wolbachia-mediated incompatible insect technique can strengthen dengue control in tropical cities, where dengue burden is the greatest.
Disclosures All Authors: No reported disclosures.

Related Results

Variable Inhibition of Zika Virus Replication by Different Wolbachia Strains in Mosquito Cell Cultures
Variable Inhibition of Zika Virus Replication by Different Wolbachia Strains in Mosquito Cell Cultures
ABSTRACT Mosquito-borne arboviruses are a major source of human disease. One strategy to reduce arbovirus disease is to reduce the mosquito's ability to tran...
Dengue spatial dynamics : the example of Northern Vietnam
Dengue spatial dynamics : the example of Northern Vietnam
Dynamique spatiale de la dengue : l'exemple du Nord Vietnam Alors que l’épidémiologie de la dengue dans le sud du Vietnam est caractérisée par un régime d’hyper-end...
Identification of Wolbachia Strains in Two Sibling Species of Neoseiulus Predatory Mites and Their Prey
Identification of Wolbachia Strains in Two Sibling Species of Neoseiulus Predatory Mites and Their Prey
Wolbachia screening in mites is necessary for understanding of how their biological functions can be affected, including development of approaches to induce parthenogenesis, making...
Modelling the ecological dynamics of mosquito populations with multiple co-circulating Wolbachia strains
Modelling the ecological dynamics of mosquito populations with multiple co-circulating Wolbachia strains
Abstract Wolbachia intracellular bacteria successfully reduce the transmissibility of arthropod-borne viruses (arboviruses) when introduced into virus-carrying vectors such...
Sequencing and Analysis of Wolbachia Strains from A and B Supergroups Detected in Sylvatic Mosquitoes from Brazil
Sequencing and Analysis of Wolbachia Strains from A and B Supergroups Detected in Sylvatic Mosquitoes from Brazil
Wolbachia are endosymbiotic bacteria that infect a wide range of arthropods and filarial nematodes, often manipulating host reproduction. The efficacy of Wolbachia-based interventi...

Back to Top