Maritz-Olivier Christine, Stutzer Christian, Jongejan Frans, Neitz Albert W H, Gaspar Anabella R M
Department of Biochemistry, University of Pretoria, Pretoria, 0002, South Africa.
Trends Parasitol. 2007 Sep;23(9):397-407. doi: 10.1016/j.pt.2007.07.005. Epub 2007 Jul 26.
For ticks, a significant obstacle in obtaining a blood meal is counteracting the hemostatic system of the host. To this end, ticks have developed a broad array of anti-hemostatics, which is reflected in the presence of structurally related tick proteins with different functions. Disruption of blood flow which blocks successful tick feeding makes anti-hemostatics attractive targets for anti-tick vaccines. Moreover, the limited number of drugs currently available for a range of important cardio-vascular diseases makes ticks a potential source of novel therapeutics. This review aims to summarize the key features of tick anti-hemostatics, their structures, mode of action and possible future application as vaccines and novel therapeutic agents.
对于蜱虫而言,获取血餐的一个重大障碍是对抗宿主的止血系统。为此,蜱虫已进化出一系列广泛的抗止血物质,这体现在存在具有不同功能但结构相关的蜱虫蛋白。血流中断会阻碍蜱虫成功进食,这使得抗止血物质成为抗蜱疫苗的有吸引力的靶点。此外,目前可用于一系列重要心血管疾病的药物数量有限,这使得蜱虫成为新型治疗药物的潜在来源。本综述旨在总结蜱虫抗止血物质的关键特征、它们的结构、作用方式以及作为疫苗和新型治疗药物的可能未来应用。