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首页> 外文期刊>PLOS Neglected Tropical Diseases >A Non Mouse-Adapted Dengue Virus Strain as a New Model of Severe Dengue Infection in AG129 Mice
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A Non Mouse-Adapted Dengue Virus Strain as a New Model of Severe Dengue Infection in AG129 Mice

机译:一种非小鼠适应登革热病毒株作为AG129小鼠严重登革热感染的新模型。

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摘要

The spread of dengue (DEN) worldwide combined with an increased severity of the DEN-associated clinical outcomes have made this mosquito-borne virus of great global public health importance. Progress in understanding DEN pathogenesis and in developing effective treatments has been hampered by the lack of a suitable small animal model. Most of the DEN clinical isolates and cell culture-passaged DEN virus strains reported so far require either host adaptation, inoculation with a high dose and/or intravenous administration to elicit a virulent phenotype in mice which results, at best, in a productive infection with no, few, or irrelevant disease manifestations, and with mice dying within few days at the peak of viremia. Here we describe a non-mouse-adapted DEN2 virus strain (D2Y98P) that is highly infectious in AG129 mice (lacking interferon-α/β and -γ receptors) upon intraperitoneal administration. Infection with a high dose of D2Y98P induced cytokine storm, massive organ damage, and severe vascular leakage, leading to haemorrhage and rapid death of the animals at the peak of viremia. In contrast, very interestingly and uniquely, infection with a low dose of D2Y98P led to asymptomatic viral dissemination and replication in relevant organs, followed by non-paralytic death of the animals few days after virus clearance, similar to the disease kinetic in humans. Spleen damage, liver dysfunction and increased vascular permeability, but no haemorrhage, were observed in moribund animals, suggesting intact vascular integrity, a cardinal feature in DEN shock syndrome. Infection with D2Y98P thus offers the opportunity to further decipher some of the aspects of dengue pathogenesis and provides a new platform for drug and vaccine testing.
机译:登革热(DEN)在全球范围内的传播以及与DEN相关的临床结果的日益严重,使得这种由蚊子传播的病毒在全球公共卫生中具有重要意义。缺乏合适的小动物模型阻碍了对DEN发病机理的理解和开发有效治疗方法的进展。迄今报道的大多数DEN临床分离株和传代细胞培养的DEN病毒株都需要宿主适应,高剂量接种和/或静脉内给药以在小鼠中引起强毒表型,最多可导致生产性感染。没有,很少或不相关的疾病表现,并且小鼠在病毒血症高峰时几天内死亡。在这里,我们描述了一种非小鼠适应性的DEN2病毒株(D2Y98P),在腹膜内给药后在AG129小鼠中高度感染(缺乏干扰素-α/β和-γ受体)。用高剂量的D2Y98P感染可引起细胞因子风暴,大量器官损伤和严重的血管渗漏,从而在病毒血症高峰期导致动物出血和迅速死亡。相反,非常有趣和独特的是,用低剂量的D2Y98P感染导致相关器官无症状的病毒传播和复制,随后在病毒清除后几天无麻痹性死亡,类似于人类的疾病动力学。在垂死的动物中观察到脾脏受损,肝功能障碍和血管通透性增加,但未见出血,表明血管完整,这是DEN休克综合症的主要特征。因此,D2Y98P感染提供了进一步破译登革热发病机制某些方面的机会,并为药物和疫苗测试提供了新的平台。

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