Logo image
Mechanical transmission of dengue virus by Aedes aegypti may influence disease transmission dynamics during outbreaks
期刊文章   開放取用(OA)

Mechanical transmission of dengue virus by Aedes aegypti may influence disease transmission dynamics during outbreaks

Hsing-Han Li, Matthew P. Su, Shih-Cheng Wu, Hsiao-Hui Tsou, Meng-Chun Chang, Yu-Chieh Cheng, Kuen-Nan Tsai, Hsin-Wei Wang, Guan-Hua Chen, Cheng-Kang Tang, …
eBioMedicine, 卷.94, 104723
08/2023
PMID: 37487418

摘要

Aedes aegypti mosquito Animal models of dengue virus Dengue transmission Mathematical modelling of disease outbreak Biochemistry Genetics and Molecular Biology (all)
Background: Dengue virus outbreaks are increasing in number and severity worldwide. Viral transmission is assumed to require a minimum time period of viral replication within the mosquito midgut. It is unknown if alternative transmission periods not requiring replication are possible. Methods: We used a mouse model of dengue virus transmission to investigate the potential of mechanical transmission of dengue virus. We investigated minimal viral titres necessary for development of symptoms in bitten mice and used resulting parameters to inform a new model of dengue virus transmission within a susceptible population. Findings: Naïve mice bitten by mosquitoes immediately after they took partial blood meals from dengue infected mice showed symptoms of dengue virus, followed by mortality. Incorporation of mechanical transmission into mathematical models of dengue virus transmission suggest that this supplemental transmission route could result in larger outbreaks which peak sooner. Interpretation: The potential of dengue transmission routes independent of midgut viral replication has implications for vector control strategies that target mosquito lifespan and suggest the possibility of similar mechanical transmission routes in other disease-carrying mosquitoes. Funding: This study was funded by grants from the National Health Research Institutes, Taiwan (04D2-MMMOST02), the Human Frontier Science Program (RGP0033/2021), the National Institutes of Health (1R01AI143698-01A1, R01AI151004 and DP2AI152071) and the Ministry of Science and Technology, Taiwan (MOST104-2321-B-400-016).

檔案與連結 (1)

url
https://doi.org/10.1016/j.ebiom.2023.104723檢視
已出版(紀錄版本) 開放

相關連結

指標

1 檢視次數

詳細資料

Logo image