Rapid and Non-Invasive Detection of Aedes aegypti Co-Infected with Zika and Dengue Viruses Using Near Infrared Spectroscopy

虫媒病毒 登革热 寨卡病毒 埃及伊蚊 爆发 病毒学 登革热病毒 生物 基孔肯雅 传输(电信) 病毒 生态学 计算机科学 电信 幼虫
作者
Gabriela A. Garcia,Anton Lord,Lílha Maria Barbosa dos Santos,Tharanga N. Kariyawasam,Mariana Rocha David,Dinair Couto‐Lima,Aline Tátila-Ferreira,Márcio G. Pavan,Maggy T. Sikulu-Lord,Rafael Maciel‐de‐Freitas
出处
期刊:Viruses [Multidisciplinary Digital Publishing Institute]
卷期号:15 (1): 11-11 被引量:3
标识
DOI:10.3390/v15010011
摘要

The transmission of dengue (DENV) and Zika (ZIKV) has been continuously increasing worldwide. An efficient arbovirus surveillance system is critical to designing early-warning systems to increase preparedness of future outbreaks in endemic countries. The Near Infrared Spectroscopy (NIRS) is a promising high throughput technique to detect arbovirus infection in Ae. aegypti with remarkable advantages such as cost and time effectiveness, reagent-free, and non-invasive nature over existing molecular tools for similar purposes, enabling timely decision making through rapid detection of potential disease. Our aim was to determine whether NIRS can differentiate Ae. aegypti females infected with either ZIKV or DENV single infection, and those coinfected with ZIKV/DENV from uninfected ones. Using 200 Ae. aegypti females reared and infected in laboratory conditions, the training model differentiated mosquitoes into the four treatments with 100% accuracy. DENV-, ZIKV-, and ZIKV/DENV-coinfected mosquitoes that were used to validate the model could be correctly classified into their actual infection group with a predictive accuracy of 100%, 84%, and 80%, respectively. When compared with mosquitoes from the uninfected group, the three infected groups were predicted as belonging to the infected group with 100%, 97%, and 100% accuracy for DENV-infected, ZIKV-infected, and the co-infected group, respectively. Preliminary lab-based results are encouraging and indicate that NIRS should be tested in field settings to evaluate its potential role to monitor natural infection in field-caught mosquitoes.
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