Suppr超能文献

高致病性禽流感 H5N1 病毒感染野生赤狐(Vulpes vulpes)表现出嗜神经性和适应性病毒突变。

Highly Pathogenic Avian Influenza H5N1 Virus Infections in Wild Red Foxes (Vulpes vulpes) Show Neurotropism and Adaptive Virus Mutations.

机构信息

Wageningen Bioveterinary Research, Lelystad, the Netherlands.

Dutch Wildlife Health Centre, Utrecht University, Utrecht, the Netherlands.

出版信息

Microbiol Spectr. 2023 Feb 14;11(1):e0286722. doi: 10.1128/spectrum.02867-22. Epub 2023 Jan 23.

Abstract

During the 2020 to 2022 epizootic of highly pathogenic avian influenza virus (HPAI), several infections of mammalian species were reported in Europe. In the Netherlands, HPAI H5N1 virus infections were detected in three wild red foxes (Vulpes vulpes) that were submitted with neurological symptoms between December of 2021 and February of 2022. A histopathological analysis demonstrated that the virus was mainly present in the brain, with limited or no detection in the respiratory tract or other organs. Limited or no virus shedding was observed in throat and rectal swabs. A phylogenetic analysis showed that the three fox viruses were not closely related, but they were related to HPAI H5N1 clade 2.3.4.4b viruses that are found in wild birds. This suggests that the virus was not transmitted between the foxes. A genetic analysis demonstrated the presence of the mammalian adaptation E627K in the polymerase basic two (PB2) protein of the two fox viruses. In both foxes, the avian (PB2-627E) and the mammalian (PB2-627K) variants were present as a mixture in the virus population, which suggests that the mutation emerged in these specific animals. The two variant viruses were isolated, and virus replication and passaging experiments were performed. These experiments showed that the mutation PB2-627K increases the replication of the virus in mammalian cell lines, compared to the chicken cell line, and at the lower temperatures of the mammalian upper respiratory tract. This study showed that the HPAI H5N1 virus is capable of adaptation to mammals; however, more adaptive mutations are required to allow for efficient transmission between mammals. Therefore, surveillance in mammals should be expanded to closely monitor the emergence of zoonotic mutations for pandemic preparedness. Highly pathogenic avian influenza (HPAI) viruses caused high mortality among wild birds from 2021 to 2022 in the Netherlands. Recently, three wild foxes were found to be infected with HPAI H5N1 viruses, likely due to the foxes feeding on infected birds. Although HPAI is a respiratory virus, in these foxes, the viruses were mostly detected in the brain. Two viruses isolated from the foxes contained a mutation that is associated with adaptation to mammals. We show that the mutant virus replicates better in mammalian cells than in avian cells and at the lower body temperature of mammals. More mutations are required before viruses can transmit between mammals or can be transmitted to humans. However, infections in mammalian species should be closely monitored to swiftly detect mutations that may increase the zoonotic potential of HPAI H5N1 viruses, as these may threaten public health.

摘要

在 2020 年至 2022 年高致病性禽流感(HPAI)疫情期间,欧洲报告了几例哺乳动物感染病例。在荷兰,2021 年 12 月至 2022 年 2 月间,3 只出现神经症状的野生红狐( Vulpes vulpes )体内检测到 HPAI H5N1 病毒感染。组织病理学分析表明,病毒主要存在于大脑中,在呼吸道或其他器官中检测到的病毒有限或没有。在咽喉和直肠拭子中观察到有限或没有病毒脱落。系统进化分析表明,这 3 只狐狸的病毒彼此之间没有密切关系,但与野生鸟类中发现的 HPAI H5N1 分支 2.3.4.4b 病毒有关。这表明病毒不是在狐狸之间传播的。遗传分析表明,这两种狐狸病毒的聚合酶碱性蛋白 2(PB2)蛋白中存在哺乳动物适应性 E627K 突变。在这两只狐狸中,禽(PB2-627E)和哺乳动物(PB2-627K)变体在病毒群体中混合存在,这表明该突变出现在这些特定动物中。分离了这两种变体病毒,并进行了病毒复制和传代实验。这些实验表明,与鸡细胞系相比,突变的 PB2-627K 增加了病毒在哺乳动物细胞系中的复制,并且在哺乳动物上呼吸道的较低温度下也是如此。这项研究表明,HPAI H5N1 病毒能够适应哺乳动物;然而,还需要更多的适应性突变才能使病毒在哺乳动物之间有效传播。因此,应扩大对哺乳动物的监测,以密切监测人畜共患突变的出现,为大流行做好准备。高致病性禽流感(HPAI)病毒在 2021 年至 2022 年期间导致荷兰野生鸟类死亡率很高。最近,发现 3 只野生狐狸感染了 HPAI H5N1 病毒,可能是因为狐狸食用了受感染的鸟类。尽管 HPAI 是一种呼吸道病毒,但在这些狐狸中,病毒主要在大脑中检测到。从狐狸中分离出的两种病毒含有与适应哺乳动物相关的突变。我们发现,与禽细胞相比,突变病毒在哺乳动物细胞中的复制更好,而且在哺乳动物的体温较低时也是如此。在病毒能够在哺乳动物之间传播或传播给人类之前,还需要更多的突变。然而,应密切监测哺乳动物物种的感染情况,以便迅速发现可能增加 HPAI H5N1 病毒人畜共患潜力的突变,因为这可能威胁公共健康。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33f4/9927208/38dab1e0de75/spectrum.02867-22-f001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验