Talactac Melbourne Rio, Hernandez Emmanuel P, Fujisaki Kozo, Tanaka Tetsuya
Department of Clinical and Population Health, College of Veterinary Medicine and Biomedical Sciences, Cavite State University, Cavite, Philippines.
Laboratory of Infectious Diseases, Joint Faculty of Veterinary Medicine, Kagoshima University, Kagoshima, Japan.
Front Physiol. 2018 Dec 4;9:1728. doi: 10.3389/fphys.2018.01728. eCollection 2018.
To fully unravel the ixodid ticks' role as vectors of viral pathogens, their susceptibility to new control measures, and their ability to develop acaricide resistance, acclimatization of ticks under laboratory conditions is greatly needed. However, the unique and complicated feeding behavior of these ticks compared to that of other hematophagous arthropods requires efficient and effective techniques to infect them with tick-borne viruses (TBVs). In addition, relatively expensive maintenance of animals for blood feeding and associated concerns about animal welfare critically limit our understanding of TBVs. This mini review aims to summarize the current knowledge about the artificial infection of hard ticks with viral pathogens, which is currently used to elucidate virus transmission and vector competence and to discover immune modulators related to tick-virus interactions. This review will also present the advantages and limitations of the current techniques for tick infection. Fortunately, new artificial techniques arise, and the limitations of current protocols are greatly reduced as researchers continuously improve, streamline, and standardize the laboratory procedures to lower cost and produce better adoptability. In summary, convenient and low-cost techniques to study the interactions between ticks and TBVs provide a great opportunity to identify new targets for the future control of TBVs.
为了全面阐明硬蜱作为病毒病原体传播媒介的作用、它们对新控制措施的敏感性以及产生杀螨剂抗性的能力,在实验室条件下对蜱进行驯化是非常必要的。然而,与其他吸血节肢动物相比,这些蜱独特而复杂的取食行为需要高效有效的技术来使其感染蜱传病毒(TBV)。此外,用于供血的动物维护成本相对较高,以及对动物福利的相关担忧,严重限制了我们对蜱传病毒的了解。本综述旨在总结目前关于硬蜱人工感染病毒病原体的知识,目前该方法用于阐明病毒传播和媒介能力,并发现与蜱 - 病毒相互作用相关的免疫调节剂。本综述还将介绍当前蜱感染技术的优点和局限性。幸运的是,新的人工技术不断涌现,随着研究人员不断改进、简化和规范实验室程序以降低成本并提高适应性,当前方案的局限性大大降低。总之,研究蜱与蜱传病毒相互作用的便捷低成本技术为确定未来控制蜱传病毒的新靶点提供了绝佳机会。