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节肢动物传播感染模型在生物安全3级农业(BSL-3Ag)和生物安全4级生物防护中的应用

The Use of Arthropod-Borne Challenge Models in BSL-3Ag and BSL-4 Biocontainment.

作者信息

Higgs Stephen, Vanlandingham Dana L, Huang Yan-Jang S, Thangamani Saravanan

出版信息

ILAR J. 2022 Jan 7;61(1):18-31. doi: 10.1093/ilar/ilab013.

Abstract

The study of many arthropod-borne pathogens requires high biosafety considerations, including the use of specialized facilities and equipment for arthropod containment. Mosquito- and tick-borne viruses such as yellow fever, West Nile, and Crimean Congo hemorrhagic fever viruses require facilities that are suitable for housing vertebrates. Multidisciplinary studies that incorporate the vector, vertebrate, and pathogens are essential for a complete understanding of the interactions between these transmission cycle components, especially if they aim to evaluate and model relative susceptibilities of different arthropods and vertebrates to infection and transmission between these. Under laboratory conditions, these studies can be relatively simple, for example, involving colonized arthropods, small animals, and attenuated viruses. Other studies are complex with large animals, high-biocontainment pathogens, and field-collected arthropods. These require a higher level of containment and special design considerations. Both of these types of experiments have their relative merits. A thorough understanding of the issues related to these types of studies and the benefits and drawbacks to using various challenge models will enable the researcher to develop realistic goals for various experiments. This review examines the varied issues that should be considered prior to starting these experiments and covers the basics from the procurement of various arthropods, rearing, high-containment facilities and operational issues specific to work with arthropods, types of infection experiments, and specific issues with arthropod and animal experiments in biosafety levels 3 and 4.

摘要

对许多节肢动物传播的病原体进行研究需要高度重视生物安全,包括使用专门的设施和设备来控制节肢动物。黄热病、西尼罗河病毒和克里米亚刚果出血热病毒等蚊媒和蜱媒病毒需要适合饲养脊椎动物的设施。整合媒介、脊椎动物和病原体的多学科研究对于全面理解这些传播循环组成部分之间的相互作用至关重要,特别是当这些研究旨在评估和模拟不同节肢动物和脊椎动物对感染以及它们之间传播的相对易感性时。在实验室条件下,这些研究可能相对简单,例如,涉及饲养的节肢动物、小型动物和减毒病毒。其他研究则较为复杂,涉及大型动物、高生物安全病原体和野外采集的节肢动物。这些需要更高水平的生物安全防护和特殊的设计考量。这两类实验都有其相对优点。深入了解与这些类型研究相关的问题以及使用各种攻毒模型的利弊,将使研究人员能够为各种实验制定切实可行的目标。本综述探讨了在开展这些实验之前应考虑的各种问题,涵盖了从各类节肢动物的采购、饲养、高生物安全设施以及节肢动物相关工作的操作问题、感染实验类型,到生物安全3级和4级中节肢动物和动物实验的具体问题等基础知识。

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