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Differential outcomes of Zika virus infection in Aedes aegypti orally challenged with infectious blood meals and infectious protein meals

机译:埃及伊蚊感染感染性血粉和感染性蛋白粉对寨卡病毒感染的不同结局

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摘要

BackgroundInfection of mosquitoes is an essential step for the transmission of mosquito-borne arboviruses in nature. Engorgement of infectious blood meals from viremic infected vertebrate hosts allows the entry of viruses and initiates infection of midgut epithelial cells. Historically, the infection process of arboviruses in mosquitoes has been studied through the engorgement of mosquitoes from viremic laboratory animals or from artificial feeders containing blood mixed with viruses harvested from cell cultures. The latter approach using so-called artificial blood meals is more frequently used since it is readily optimized to maximize viral titer, negates the use of animals and can be used with viruses for which there are no small animal models. Use of artificial blood meals has enabled numerous studies on mosquito infections with a wide variety of viruses; however, as described here, with suitable modification it can also be used to study the interplay between infection, specific blood components, and physiological consequences associated with blood engorgement. For hematophagous female mosquitoes, blood is the primary nutritional source supporting all physiological process including egg development, and also influences neurological processes and behaviors such as host-seeking. Interactions between these blood-driven vector biological processes and arbovirus infection that is mediated via blood engorgement have not yet been specifically studied. This is in part because presentation of virus in whole blood inevitably induces enzymatic digestion processes, hormone driven oogenesis, and other biological changes. In this study, the infection process of Zika virus (ZIKV) in Aedes aegypti was characterized by oral exposure via viral suspension meals within minimally bovine serum albumin complemented medium or within whole blood. The use of bovine serum albumin in infectious meals provides an opportunity to evaluate the role of serum albumin during the process of flavivirus infection in mosquitoes.
机译:背景技术蚊子感染是自然传播蚊媒虫媒病毒的重要步骤。来自病毒感染的脊椎动物宿主的传染性血粉的聚集使病毒进入并开始感染中肠上皮细胞。从历史上看,虫媒病毒在蚊子中的感染过程是通过从病毒性实验动物或人工血液中掺入含有血液和从细胞培养物中收获的病毒的人工饲养的蚊子进食来研究的。使用所谓的人造血粉的后一种方法被更频繁地使用,因为它易于优化以最大化病毒效价,否定了动物的使用并且可以与没有小动物模型的病毒一起使用。人造血粉的使用已使人们对各种病毒引起的蚊子感染进行了大量研究。但是,如此处所述,经过适当的修改,它也可以用于研究感染,特定血液成分以及与血液充血有关的生理后果之间的相互作用。对于食血性雌性蚊子来说,血液是支持包括卵子发育在内的所有生理过程的主要营养来源,并且还会影响神经过程和行为,例如寻求宿主。这些血液驱动的载体生物学过程与通过血液充血介导的虫媒病毒感染之间的相互作用尚未得到专门研究。这部分是因为在全血中呈递病毒不可避免地会引起酶消化过程,激素驱动的卵子发生以及其他生物学变化。在这项研究中,埃及伊蚊的寨卡病毒(ZIKV)感染过程的特征是通过在最小牛血清白蛋白补充培养基或全血中通过病毒悬浮粉口服暴露。在传染性膳食中使用牛血清白蛋白为评估血清白蛋白在蚊子中黄病毒感染过程中的作用提供了机会。

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