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Counterattacking the tick bite: towards a rational design of anti-tick vaccines targeting pathogen transmission

机译:反击the虫叮咬:针对针对病原体传播的抗-虫疫苗的合理设计

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Abstract Hematophagous arthropods are responsible for the transmission of a variety of pathogens that cause disease in humans and animals. Ticks of the Ixodes ricinus complex are vectors for some of the most frequently occurring human tick-borne diseases, particularly Lyme borreliosis and tick-borne encephalitis virus (TBEV). The search for vaccines against these diseases is ongoing. Efforts during the last few decades have primarily focused on understanding the biology of the transmitted viruses, bacteria and protozoans, with the goal of identifying targets for intervention. Successful vaccines have been developed against TBEV and Lyme borreliosis, although the latter is no longer available for humans. More recently, the focus of intervention has shifted back to where it was initially being studied which is the vector. State of the art technologies are being used for the identification of potential vaccine candidates for anti-tick vaccines that could be used either in humans or animals. The study of the interrelationship between ticks and the pathogens they transmit, including mechanisms of acquisition, persistence and transmission have come to the fore, as this knowledge may lead to the identification of critical elements of the pathogens’ life-cycle that could be targeted by vaccines. Here, we review the status of our current knowledge on the triangular relationships between ticks, the pathogens they carry and the mammalian hosts, as well as methods that are being used to identify anti-tick vaccine candidates that can prevent the transmission of tick-borne pathogens.
机译:摘要食血节肢动物负责传播各种导致人类和动物疾病的病原体。 x虫I虫病的are虫是某些人类最常见的tick虫传播疾病的媒介,尤其是莱姆疏螺旋体病和tick传播脑炎病毒(TBEV)。正在寻找针对这些疾病的疫苗。最近几十年的努力主要集中在了解传播的病毒,细菌和原生动物的生物学上,目的是确定干预目标。已经开发出成功的针对TBEV和莱姆病的疫苗,尽管后者已不再为人类所用。最近,干预的重点已经转移到最初被研究的媒介。目前正在使用最先进的技术来识别可用于人类或动物的抗t虫疫苗的潜在候选疫苗。对tick和它们传播的病原体之间的相互关系(包括获取,持久性和传播机制)的研究已经成为人们关注的焦点,因为这种知识可能会导致确定病原体生命周期的关键要素,而这些要素可能是目标。疫苗。在这里,我们回顾了我们对壁虱,它们携带的病原体和哺乳动物宿主之间的三角关系的当前知识的现状,以及用于识别可以防止壁虱传播的抗壁虱疫苗候选者的方法。病原体。

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