Department of Virology I, National Institute of Infectious Diseases, Musashimurayama-shi, Tokyo 208-8501, Japan.
Viruses. 2021 Apr 6;13(4):627. doi: 10.3390/v13040627.
Severe fever with thrombocytopenia syndrome (SFTS), which is caused by SFTS virus (SFTSV), is a tick-borne emerging zoonosis with a high case-fatality rate. At present, there is no approved SFTS vaccine, although the development of a vaccine would be one of the best strategies for preventing SFTS. This article focused on studies aimed at establishing small animal models of SFTS that are indispensable for evaluating vaccine candidates, developing these vaccine candidates, and establishing more practical animal models for evaluation. Innate immune-deficient mouse models, a hamster model, an immunocompetent ferret model and a cat model have been developed for SFTS. Several vaccine candidates for SFTS have been developed, and their efficacy has been confirmed using these animal models. The candidates consist of live-attenuated virus-based, viral vector-based, or DNA-based vaccines. SFTS vaccines are expected to be used for humans and companion dogs and cats. Hence for practical use, the vaccine candidates should be evaluated for efficacy using not only nonhuman primates but also dogs and cats. There is no practical nonhuman primate model of SFTS; however, the cat model is available to evaluate the efficacy of these candidate SFTS vaccines on domesticated animals.
严重发热伴血小板减少综合征(SFTS)由发热伴血小板减少综合征病毒(SFTSV)引起,是一种具有高病死率的蜱传新发传染病。目前尚无批准的 SFTS 疫苗,尽管疫苗的开发将是预防 SFTS 的最佳策略之一。本文重点介绍了 SFTS 小动物模型的研究,这些模型对于评估疫苗候选物、开发这些疫苗候选物以及建立更实用的动物模型进行评估是必不可少的。已经建立了用于 SFTS 的先天免疫缺陷小鼠模型、仓鼠模型、免疫功能正常的雪貂模型和猫模型。已经开发了几种 SFTS 的疫苗候选物,并使用这些动物模型证实了它们的疗效。候选物包括基于活减毒病毒、基于病毒载体和基于 DNA 的疫苗。SFTS 疫苗有望用于人类和伴侣犬猫。因此,为了实际应用,候选疫苗不仅应在非人类灵长类动物中进行评估,还应在犬和猫中进行评估。目前尚无实用的 SFTS 非人类灵长类动物模型;然而,猫模型可用于评估这些候选 SFTS 疫苗在驯化动物中的疗效。