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Simian Varicella Virus Infects Enteric Neurons and α4β7 Integrin-Expressing Gut-Tropic T-Cells in Nonhuman Primates

机译:猿猴水痘病毒感染非人类灵长类动物的肠神经元和表达α4β7整合素的肠道T细胞。

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摘要

The pathogenesis of enteric zoster, a rare debilitating complication of reactivation of latent varicella-zoster virus (VZV) in the enteric nervous system (ENS), is largely unknown. Infection of monkeys with the closely related Varicellovirus simian varicella virus (SVV) mimics VZV disease in humans. In this study, we determined the applicability of the SVV nonhuman primate model to study Varicellovirus infection of the ENS. We confirmed VZV infection of the gut in latently infected adults and demonstrated that SVV DNA was similarly present in gut of monkeys latently infected with SVV using quantitative real-time PCR. In situ analyses showed that enteric neurons expressed SVV open reading frame (ORF) 63 RNA, but not viral nucleocapsid proteins, suggestive of latent ENS infection. During primary infection, SVV-infected T-cells were detected in gut-draining mesenteric lymph nodes and located in close vicinity to enteric nerves in the gut. Furthermore, flow cytometric analysis of blood from acutely SVV-infected monkeys demonstrated that virus-infected T-cells expressed the gut-homing receptor α4β7 integrin. Collectively, the data demonstrate that SVV infects ENS neurons during primary infection and supports the role of T-cells in virus dissemination to the gut. Because SVV reactivation can be experimentally induced, the SVV nonhuman primate model holds great potential to study the pathogenesis of enteric zoster.
机译:肠带状疱疹的发病机理是未知的,在肠道神经系统(ENS)中潜伏的水痘-带状疱疹病毒(VZV)复活是一种罕见的使人衰弱的并发症。用密切相关的水痘病毒猿猴水痘病毒(SVV)感染猴子可模仿人类的VZV疾病。在这项研究中,我们确定了SVV非人类灵长类动物模型在研究ENS水痘病毒感染中的适用性。我们在定量感染的成人中证实了肠道的VZV感染,并证明了使用定量实时PCR在潜伏着SVV的猴子的肠道中同样存在SVV DNA。原位分析显示,肠神经元表达SVV开放阅读框(ORF)63 RNA,但不表达病毒核衣壳蛋白,提示潜在的ENS感染。在初次感染期间,在引流肠的肠系膜淋巴结中检测到SVV感染的T细胞,并位于肠中肠神经附近。此外,对急性SVV感染的猴子的血液进行流式细胞术分析表明,感染病毒的T细胞表达了肠归巢受体α4β7整联蛋白。总体而言,数据表明,SVV在初次感染期间感染ENS神经元,并支持T细胞在病毒向肠道传播中的作用。由于可以通过实验诱导SVV激活,因此SVV非人类灵长类动物模型在研究肠道带状疱疹的发病机理方面具有巨大潜力。

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