首页> 外文期刊>American journal of transplantation: official journal of the American Society of Transplantation and the American Society of Transplant Surgeons >Acute West Nile Virus Meningoencephalitis Diagnosed Via Metagenomic Deep Sequencing of Cerebrospinal Fluid in a Renal Transplant Patient
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Acute West Nile Virus Meningoencephalitis Diagnosed Via Metagenomic Deep Sequencing of Cerebrospinal Fluid in a Renal Transplant Patient

机译:急性西部尼罗河病毒脑膜炎通过颅骨液中的颅骨液中诊断为肾移植患者

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摘要

Solid organ transplant patients are vulnerable to suffering neurologic complications from a wide array of viral infections and can be sentinels in the population who are first to get serious complications from emerging infections like the recent waves of arboviruses, including West Nile virus, Chikungunya virus, Zika virus, and Dengue virus. The diverse and rapidly changing landscape of possible causes of viral encephalitis poses great challenges for traditional candidate-based infectious disease diagnostics that already fail to identify a causative pathogen in approximately 50% of encephalitis cases. We present the case of a 14-year-old girl on immunosuppression for a renal transplant who presented with acute meningoencephalitis. Traditional diagnostics failed to identify an etiology. RNA extracted from her cerebrospinal fluid was subjected to unbiased metagenomic deep sequencing, enhanced with the use of a Cas9-based technique for host depletion. This analysis identified West Nile virus (WNV). Convalescent serum serologies subsequently confirmed WNV seroconversion. These results support a clear clinical role for metagenomic deep sequencing in the setting of suspected viral encephalitis, especially in the context of the high-risk transplant patient population.
机译:固体器官移植患者易患来自各种病毒感染的患有神经系统并发症,并且可以是群体中的哨兵,首先是从新兴感染的人群中获得严重并发症,如最近的野兽病毒,包括西尼罗河病毒,Chikungunya病毒,Zika病毒和登革热病毒。在传统的候选的传染病诊断造成大约50%的脑炎病例中,多样化和迅速地变化的病毒性脑炎可能原因的景观巨大挑战。我们展示了一个14岁女孩的免疫抑制案例,用于呈现急性脑膜炎的肾移植。传统诊断未能识别病因。从她的脑脊液中提取的RNA进行无偏偏心的偏心测序,通过使用基于CAS9的宿主耗尽来增强。该分析确定了西尼罗病毒(WNV)。随后临时血清血清素随后证实了WNV血清转化。这些结果支持在疑似病毒脑炎的环境中进行雌噬细胞深度测序的明确临床作用,特别是在高危移植患者人群的背景下。

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