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Vector Competence Analyses on Aedes aegypti Mosquitoes using Zika Virus
Published on: May 31, 2020
Modeling the spread of the Zika virus by sexual and mosquito transmission
Saitel Agudelo1, Mario Ventresca2
1Universidad Nacional de Colombia, Bogota, Bogota, D.C, Colombia.
Abstract:
Zika Virus (ZIKV) is a flavivirus that is transmitted predominantly by the Aedes species of mosquito, but also through sexual contact, blood transfusions, and congenitally from mother to child. Although approximately 80% of ZIKV infections are asymptomatic and typical symptoms are mild, multiple studies have demonstrated a causal link between ZIKV and severe diseases such as Microcephaly and Guillain Barré Syndrome. Two goals of this study are to improve ZIKV models by considering the spread dynamics of ZIKV as both a vector-borne and sexually transmitted disease, and also to approximate the degree of under-reporting. In order to accomplish these objectives, we propose a compartmental model that allows for the analysis of spread dynamics as both a vector-borne and sexually transmitted disease, and fit it to the ZIKV incidence reported to the National System of Public Health Surveillance in 27 municipalities of Colombia between January 1 2015 and December 31 2017. We demonstrate that our model can represent the infection patterns over this time period with high confidence. In addition, we argue that the degree of under-reporting is also well estimated. Using the model we assess potential viability of public health scenarios for mitigating disease spread and find that targeting the sexual pathway alone has negligible impact on overall spread, but if the proportion of risky sexual behavior increases then it may become important. Targeting mosquitoes remains the best approach of those considered. These results may be useful for public health organizations and governments to construct and implement suitable health policies and reduce the impact of the Zika outbreaks.
Insights
This study models Zika virus (ZIKV) spread through mosquito and sexual transmission, finding mosquito control is most effective. The model also estimates under-reporting, informing public health strategies for Zika outbreaks.
Area of Science:
- Epidemiology
- Mathematical Modeling
- Public Health
Background:
- Zika virus (ZIKV) is a flavivirus transmitted by Aedes mosquitoes, sexual contact, blood transfusions, and congenitally.
- While often asymptomatic or mild, ZIKV is causally linked to severe conditions like Microcephaly and Guillain Barré Syndrome.
Purpose of the Study:
- To enhance ZIKV epidemiological models by incorporating vector-borne and sexual transmission dynamics.
- To estimate the extent of under-reporting in ZIKV surveillance data.
- To evaluate public health intervention strategies for mitigating ZIKV spread.
Main Methods:
- Development of a compartmental model analyzing ZIKV spread via vector-borne and sexual routes.
- Fitting the model to ZIKV incidence data from 27 Colombian municipalities (2015-2017).
- Assessment of public health scenarios to determine effective mitigation strategies.
Main Results:
- The proposed model accurately represents ZIKV infection patterns and estimates under-reporting with high confidence.
- Targeting mosquito vectors is the most effective intervention strategy identified.
- Interventions targeting only the sexual transmission route show negligible impact unless risky sexual behavior significantly increases.
Conclusions:
- Mathematical modeling provides valuable insights into ZIKV transmission dynamics and under-reporting.
- Integrated strategies focusing on vector control are crucial for managing ZIKV outbreaks.
- Understanding transmission routes and under-reporting is essential for effective public health policy development.

