我们正在为人类禽流感大流行培育完美的风暴吗?

IF 4.3 2区 生物学 Q1 BIOLOGY
Tomas Perez-Acle, Cesar Ravello, Mario Rosemblatt
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引用次数: 0

摘要

高致病性禽流感(HPAI) H5N1型病毒在奶牛中出现,标志着正在与人畜共患疾病作斗争的令人不安的新篇章。自1955年首次发现H5N1病毒以来,主要与家禽有关,对动物和人类健康构成重大威胁。然而,最近在美国九个州的奶牛群中爆发的疫情显示,该病毒的扩散速度惊人,截至2024年9月,已有190多头奶牛受到感染。牛中这种前所未有的传播引起了科学家和卫生官员的强烈关注,特别是有报告表明,高达20%的乳制品可能含有微量的病毒。H5N1病毒在牛群中形成的影响是深远的。这种潜在的地方性存在可能将奶牛场转变为病毒的储存库,促进其进化并增加人类传播的风险。在哺乳动物中已经发现了增强病毒复制的突变,包括与毒性增加有关的臭名昭著的PB2 E627K突变。此外,在包括猫在内的受感染动物的中枢神经系统中检测到该病毒,强调了H5N1病毒的广泛组织亲和性和严重致病性潜力。目前的控制措施包括严格的生物安全措施和财政激励措施,以加强检测和为农民提供个人防护装备。然而,检测基础设施的差距和原料奶消费的复苏构成了重大挑战。美国农业部(USDA)和疾病控制与预防中心(CDC)强调全面检测和巴氏消毒的迫切需要,以减轻人类感染的风险。随着科学界竞相调整现有的抗病毒治疗方法并开发有效的疫苗,“同一个健康”方法的概念变得越来越重要。这一整体战略要求在人类、动物和环境卫生部门采取协调行动,先发制人地应对新出现的人畜共患病威胁。加强监测、促进国际合作和投资于研究是防止H5N1病毒引发下一次全球卫生危机的必要步骤。当前的禽流感爆发清楚地提醒人们,人类活动与病毒进化之间存在着微妙的平衡。我们有效和积极应对的集体能力将决定我们是否能够避免在地平线上酝酿的完美风暴。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Are we cultivating the perfect storm for a human avian influenza pandemic?

The emergence of highly pathogenic avian influenza (HPAI) A H5N1 virus in dairy cattle marks a troubling new chapter in the ongoing battle against zoonotic diseases. Since its initial detection in 1955, the H5N1 virus has primarily been associated with poultry, posing significant threats to both animal and human health. However, recent outbreaks in U.S. dairy herds across nine states have revealed an alarming expansion of the virus, with over 190 herds affected as of September 2024. This unprecedented spread in cattle has sparked intense concern among scientists and health officials, especially with reports indicating that up to 20% of dairy products may contain traces of the virus. The implications of the H5N1 virus establishing itself in cattle populations are profound. This potential endemic presence could transform dairy farms into reservoirs of the virus, facilitating its evolution and increasing the risk of human transmission. Mutations enhancing viral replication in mammals have already been identified, including the notorious PB2 E627K mutation linked to increased virulence. Moreover, the detection of the virus in the central nervous system of infected animals, including cats, underscores the broad tissue tropism and severe pathogenic potential of the H5N1 virus. Current containment efforts include stringent biosecurity measures and financial incentives for enhanced testing and personal protective equipment (PPE) for farmers. Yet, gaps in testing infrastructure and the resurgence of raw milk consumption pose significant challenges. The U.S. Department of Agriculture (USDA) and the Centers for Disease Control and Prevention (CDC) emphasize the critical need for comprehensive testing and pasteurization to mitigate the risk of human infection. As the scientific community races to adapt existing antiviral treatments and develop effective vaccines, the concept of a One Health approach becomes increasingly vital. This holistic strategy calls for coordinated actions across human, animal, and environmental health sectors to preemptively tackle emerging zoonotic threats. Strengthening surveillance, fostering international cooperation, and investing in research are essential steps to prevent the H5N1 virus from igniting the next global health crisis. The current avian influenza outbreak serves as a stark reminder of the delicate balance between human activities and viral evolution. Our collective ability to respond effectively and proactively will determine whether we can avert the perfect storm brewing on the horizon.

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来源期刊
Biological Research
Biological Research 生物-生物学
CiteScore
10.10
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: Biological Research is an open access, peer-reviewed journal that encompasses diverse fields of experimental biology, such as biochemistry, bioinformatics, biotechnology, cell biology, cancer, chemical biology, developmental biology, evolutionary biology, genetics, genomics, immunology, marine biology, microbiology, molecular biology, neuroscience, plant biology, physiology, stem cell research, structural biology and systems biology.
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