出血热病毒的生物恐怖主义潜力——丝状病毒和沙粒病毒对职业和环境的影响。

Natalia Cichon, Natalia Kurpesa, Marcin Niemcewicz, Marcin Podogrocki, Michal Bijak
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引用次数: 0

摘要

导论和目的:由丝状病毒(如埃博拉病毒、马尔堡病毒)和沙粒病毒(如拉沙病毒、马丘波病毒)引起的病毒性出血热,由于其人畜共患起源、高死亡率和严重的临床表现,构成了重大的生物恐怖主义威胁。本综述审查了甚高频作为生物武器的潜在用途、其人畜共患传播动态以及对农村和农业卫生的影响。综述方法:利用PubMed和Scopus等电子数据库进行了全面综述,重点关注在生物恐怖主义和人畜共患疾病传播背景下处理甚高频的研究。收录了2016年至2024年间发表的研究,搜索词包括“病毒性出血热”、“潜在的生物恐怖主义”和“人畜共患传播”。对现有知识状况的简要描述:甚高频病毒是从动物宿主(主要是啮齿动物和蝙蝠)传播给人类的人畜共患疾病。它们的致病性,加上潜在的工程传播,凸显了它们的生物恐怖主义风险。农村和农业社区由于靠近这些天然水库而面临更高的风险。摘要:虽然这些病毒在自然环境中是罕见和不稳定的,但它们的基因操纵或组合以创造新的病原体的前景为它们在生物恐怖主义中的潜在用途引入了新的途径。当务之急是全面了解其发病机制,并制定严格的控制和预防措施,以减轻其对公众健康和安全的影响。持续的警惕和准备工作对于抵消这些制剂在生物恐怖主义情景中构成的潜在威胁至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioterrorism potential of haemorrhagic fever viruses - occupational and environmental Implications of filoviruses and arenaviruses.

Introduction and objective: Viral haemorrhagic fevers (VHFs), caused by filoviruses (e.g., Ebola virus, Marburg virus) and arenaviruses (e.g., Lassa virus, Machupo virus), represent a significant bioterrorism threat due to their zoonotic origins, high mortality rates, and severe clinical presentations. This review examines the potential use of VHFs as biological weapons, their zoonotic transmission dynamics, and implications for rural and agricultural health.

Review methods: A comprehensive review was conducted using electronic databases, including PubMed and Scopus, focusing on studies addressing VHFs in the context of bioterrorism and zoonotic disease transmission. Studies published between 2016 - 2024 were included, with search terms such as 'viral haemorrhagic fevers'', 'bioterrorism potential', and 'zoonotic transmission'.

Brief description of the state of knowledge: VHFs are zoonotic diseases transmitted to humans from animal reservoirs, primarily rodents and bats. Their pathogenicity, coupled with potential for engineered transmission, underscores their bioterrorism risk. Rural and agricultural communities face heightened exposure due to their proximity to these natural reservoirs.

Summary: While these viruses are rare and unstable in natural settings, the prospect of their genetic manipulation or combination in order to create novel pathogens introduces new avenues for their potential use in bioterrorism. It is imperative to comprehensively understand their pathogenesis and to establish rigorous control and prevention measures to mitigate their impact on public health and safety. The ongoing vigilance and preparedness efforts are essential to counteract the potential threat posed by these agents in bioterrorism scenarios.

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