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2012-2019 年孟加拉国蝙蝠栖息地溢出事件后尼帕病毒检测。

Nipah Virus Detection at Bat Roosts after Spillover Events, Bangladesh, 2012-2019.

出版信息

Emerg Infect Dis. 2022 Jul;28(7):1384-1392. doi: 10.3201/eid2807.212614.

Abstract

Knowledge of the dynamics and genetic diversity of Nipah virus circulating in bats and at the human-animal interface is limited by current sampling efforts, which produce few detections of viral RNA. We report a series of investigations at Pteropus medius bat roosts identified near the locations of human Nipah cases in Bangladesh during 2012-2019. Pooled bat urine was collected from 23 roosts; 7 roosts (30%) had >1 sample in which Nipah RNA was detected from the first visit. In subsequent visits to these 7 roosts, RNA was detected in bat urine up to 52 days after the presumed exposure of the human case-patient, although the probability of detection declined rapidly with time. These results suggest that rapidly deployed investigations of Nipah virus shedding from bat roosts near human cases could increase the success of viral sequencing compared with background surveillance and could enhance understanding of Nipah virus ecology and evolution.

摘要

目前的采样工作对蝙蝠和人畜接触界面中尼帕病毒的动态和遗传多样性的了解有限,这些采样工作很少能检测到病毒 RNA。我们报告了在孟加拉国 2012-2019 年期间人类尼帕病例发生地点附近的中棕果蝠(Pteropus medius)蝙蝠栖息地进行的一系列调查。从 23 个栖息地中收集了蝙蝠尿液混合样本;在首次访问的 7 个栖息地中,有超过 1 个样本检测到尼帕病毒 RNA。在随后对这 7 个栖息地的访问中,在疑似人类病例患者暴露后的 52 天内,仍能从蝙蝠尿液中检测到 RNA,但检测的可能性随时间迅速下降。这些结果表明,与背景监测相比,在人类病例附近的蝙蝠栖息地中快速部署对尼帕病毒脱落的调查,可以提高病毒测序的成功率,并有助于了解尼帕病毒的生态和进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23ab/9239894/f1627c68f723/21-2614-F1.jpg

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