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A New High-Throughput Tool to Screen Mosquito-Borne Viruses in Zika Virus Endemic/Epidemic Areas

机译:一种新的高通量工具,可在寨卡病毒流行/流行区域筛查蚊媒病毒

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Mosquitoes are vectors of arboviruses affecting animal and human health. Arboviruses circulate primarily within an enzootic cycle and recurrent spillovers contribute to the emergence of human-adapted viruses able to initiate an urban cycle involving anthropophilic mosquitoes. The increasing volume of travel and trade offers multiple opportunities for arbovirus introduction in new regions. This scenario has been exemplified recently with the Zika pandemic. To incriminate a mosquito as vector of a pathogen, several criteria are required such as the detection of natural infections in mosquitoes. In this study, we used a high-throughput chip based on the BioMark? Dynamic arrays system capable of detecting 64 arboviruses in a single experiment. A total of 17,958 mosquitoes collected in Zika-endemic/epidemic countries (Brazil, French Guiana, Guadeloupe, Suriname, Senegal, and Cambodia) were analyzed. Here we show that this new tool can detect endemic and epidemic viruses in different mosquito species in an epidemic context. Thus, this fast and low-cost method can be suggested as a novel epidemiological surveillance tool to identify circulating arboviruses.
机译:蚊子是影响动物和人类健康的虫媒病毒的载体。虫媒病毒主要在一个生化周期内传播,经常性的外溢导致人类适应性病毒的出现,这种病毒能够引发涉及嗜人性蚊子的城市周期。旅行和贸易量的增加为在新地区引入虫媒病毒提供了多种机会。最近,寨卡病毒大流行就是这种情况的例证。为了使蚊子成为病原体的媒介,需要一些标准,例如检测蚊子中的自然感染。在这项研究中,我们使用了基于BioMark?的高通量芯片。能够在单个实验中检测64种虫媒病毒的动态阵列系统。分析了在寨卡流行/流行国家(巴西,法属圭亚那,瓜德罗普岛,苏里南,塞内加尔和柬埔寨)收集的总共17958只蚊子。在这里,我们证明了这种新工具可以在流行环境中检测不同蚊子中的地方性和流行性病毒。因此,这种快速且低成本的方法可以被建议作为一种新型的流行病学监测工具来鉴定循环虫媒病毒。

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