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A Novel Highly Reproducible and Lethal Nonhuman Primate Model for Orthopox Virus Infection

机译:用于正痘病毒感染的新型高度可重复和致死的非人灵长类动物模型

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摘要

The intentional re-introduction of Variola virus (VARV), the agent of smallpox, into the human population is of great concern due its bio-terroristic potential. Moreover, zoonotic infections with Cowpox (CPXV) and Monkeypox virus (MPXV) cause severe diseases in humans. Smallpox vaccines presently available can have severe adverse effects that are no longer acceptable. The efficacy and safety of new vaccines and antiviral drugs for use in humans can only be demonstrated in animal models. The existing nonhuman primate models, using VARV and MPXV, need very high viral doses that have to be applied intravenously or intratracheally to induce a lethal infection in macaques. To overcome these drawbacks, the infectivity and pathogenicity of a particular CPXV was evaluated in the common marmoset (Callithrix jacchus). A CPXV named calpox virus was isolated from a lethal orthopox virus (OPV) outbreak in New World monkeys. We demonstrated that marmosets infected with calpox virus, not only via the intravenous but also the intranasal route, reproducibly develop symptoms resembling smallpox in humans. Infected animals died within 1–3 days after onset of symptoms, even when very low infectious viral doses of 56102 pfu were applied intranasally. Infectious virus was demonstrated in blood, saliva and all organs analyzed. We present the first characterization of a new OPV infection model inducing a disease in common marmosets comparable to smallpox in humans. Intranasal virus inoculation mimicking the natural route of smallpox infection led to reproducible infection. In vivo titration resulted in an MID50 (minimal monkey infectious dose 50%) of 8.36102 pfu of calpox virus which is approximately 10,000-fold lower than MPXV and VARV doses applied in the macaque models. Therefore, the calpox virus/marmoset model is a suitable nonhuman primate model for the validation of vaccines and antiviral drugs. Furthermore, this model can help study mechanisms of OPV pathogenesis.
机译:天花病原体天花病毒(VARV)有意向人类重新引入,由于其具有生物恐怖潜力,因此备受关注。此外,牛痘(CPXV)和猴痘病毒(MPXV)的人畜共患感染会导致人类严重疾病。目前可用的天花疫苗可能会产生严重的不良反应,不再是可以接受的。用于人类的新疫苗和抗病毒药物的功效和安全性只能在动物模型中得到证明。现有的使用VARV和MPXV的非人类灵长类动物模型需要非常高的病毒剂量,必须通过静脉内或气管内应用以诱导猕猴的致命感染。为了克服这些缺点,在普通mar猴(Callithrix jacchus)中评估了特定CPXV的传染性和致病性。从新世界猴中的致死性正痘病毒(OPV)爆发中分离出一种名为calpox病毒的CPXV。我们证明,不仅经静脉内而且经鼻内途径感染了痘痘病毒的mar猴都可重复性地出现类似于人天花的症状。即使在鼻内应用56102 pfu的极低感染性病毒剂量后,感染动物也可在症状发作后1-3天内死亡。在血液,唾液和所有器官中均显示出传染性病毒。我们提出了一种新的OPV感染模型的第一个特征,该模型在普通mar猴中诱发与人类天花相当的疾病。模仿天花感染的自然途径的鼻内病毒接种导致可再现的感染。体内滴定导致头尾病毒的MID50(最小猴子感染剂量50%)为8.36102 pfu,比猕猴模型中的MPXV和VARV剂量低约10,000倍。因此,牛痘病毒/ mar猴模型是用于验证疫苗和抗病毒药物的合适的非人类灵长类动物模型。此外,该模型可以帮助研究OPV发病机理。

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