Laboratory of Cells Interactions, Institute of Biological Sciences, Universidade Federal de Minas Gerais, Belo Horizonte, Minas Gerais, 31270-901, Brazil.
Microbial Biotechnoloy Laboratory, Biochemistry, Federal University of São João Del-Rei, Divinópolis, MG, 35501-296, Brazil.
Ticks Tick Borne Dis. 2021 May;12(3):101631. doi: 10.1016/j.ttbdis.2020.101631. Epub 2021 Jan 8.
Ticks are considered the most important vectors in veterinary medicine with a profound impact on animal health worldwide, as well as being key vectors of diseases affecting household pets. The leading strategy applied to dog tick control is the continued use of acaricides. However, this approach is not sustainable due to surging tick resistance, growing public concern over pesticide residues in food and in the environment, and the rising costs associated with their development. In contrast, tick vaccines are a cost-effective and environmentally friendly alternative against tick-borne diseases by controlling vector infestations and reducing pathogen transmission. These premises have encouraged researchers to develop an effective vaccine against ticks, with several proteins having been characterized and used in native, synthetic, and recombinant forms as antigens in immunizations. The growing interaction between domestic pets and people underscores the importance of developing new tick control measures that require effective screening platforms applied to vaccine development. However, as reviewed in this paper, very little progress has been made in controlling ectoparasite infestations in pets using the vaccine approach. The control of tick infestations and pathogen transmission could be obtained through immunization programs aimed at reducing the tick population and interfering in the pathogenic transmission that affects human and animal health on a global scale.
蜱虫被认为是兽医领域最重要的传播媒介,对全球动物健康有着深远的影响,同时也是影响家庭宠物疾病的关键传播媒介。用于犬蜱虫防治的主要策略是持续使用杀蜱剂。然而,由于蜱虫抗药性的不断增强、公众对食品和环境中农药残留的日益关注,以及开发这些农药的成本不断上升,这种方法已不可持续。相比之下,蜱虫疫苗通过控制媒介滋生和减少病原体传播,是一种针对蜱传疾病的具有成本效益和环保的替代方法。这些前提条件促使研究人员开发出一种有效的蜱虫疫苗,已有多种蛋白质被鉴定,并以天然、合成和重组形式作为抗原用于免疫接种。随着家养宠物与人类之间的互动日益增加,开发新的蜱虫防治措施变得尤为重要,这需要有效的筛选平台应用于疫苗开发。然而,正如本文所综述的,利用疫苗方法控制宠物的外寄生虫感染方面几乎没有取得什么进展。通过旨在减少蜱虫数量和干扰影响全球人类和动物健康的致病传播的免疫计划,可以实现蜱虫滋生和病原体传播的控制。