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人类抗病毒药物造成的环境污染对禽流感病毒进化的潜在影响。

Potential Impact of Environmental Pollution by Human Antivirals on Avian Influenza Virus Evolution.

作者信息

Ala Ugo, Bajardi Paolo, Giacobini Mario, Bertolotti Luigi

机构信息

Department of Veterinary Sciences, University of Torino, 10095 Grugliasco, TO, Italy.

出版信息

Animals (Basel). 2023 Mar 23;13(7):1127. doi: 10.3390/ani13071127.

Abstract

Antiviral (AV) drugs are the main line of defense against pandemic influenza. However, different administration policies are applied in countries with different stocks of AV drugs. These policies lead to different occurrences of drug metabolites in the aquatic environment, altering animal behavior with evolutionary consequences on viruses. The aim of this study was to investigate the potential impact of environmental pollution by human antivirals, such as oseltamivir carboxylate (OC), on the evolutionary rate of avian influenza. We used NA, HA, NP, and MP viral segments from two groups of neighboring countries sharing migratory routes of wild birds and characterized by different AV stockpiles. BEAST analyses were performed using the uncorrelated lognormal clock evolutionary model and the Bayesian skyline tree prior model. The ratios between the rate of evolution of the NA gene and the HA, NP, and MP segments were considered. The two groups of countries were compared by analyzing the differences in the ratio distributions. Our analyses highlighted a possible different behavior in the evolution of H5N1 2.3 clade viral strains when OC environmental pollution is present. In conclusion, the widespread consumption of antivirals and their presence in wastewater could influence the selective pressure on viruses.

摘要

抗病毒(AV)药物是抵御大流行性流感的主要防线。然而,不同国家对抗病毒药物库存不同,应用的给药政策也不同。这些政策导致药物代谢物在水环境中的出现情况各异,从而改变动物行为,对病毒产生进化方面的影响。本研究的目的是调查人类抗病毒药物(如奥司他韦羧酸盐(OC))对环境污染可能对禽流感进化速率产生的影响。我们使用了来自两组邻国的NA、HA、NP和MP病毒片段,这两组邻国共享野生鸟类的迁徙路线,并具有不同的抗病毒药物库存。使用不相关对数正态时钟进化模型和贝叶斯天际线树先验模型进行BEAST分析。考虑了NA基因与HA、NP和MP片段的进化速率之比。通过分析比率分布的差异对两组国家进行比较。我们的分析突出表明,当存在OC环境污染时,H5N1 2.3分支病毒株的进化可能存在不同行为。总之,抗病毒药物的广泛使用及其在废水中的存在可能会影响对病毒的选择压力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84c5/10093092/da5d1e75b3b6/animals-13-01127-g001.jpg

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