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使用大流行病毒特征评估(ViTAP)模型对病原体的大流行潜力进行计算机模拟预测。

In silico prediction of pathogen's pandemic potential using the viral trait assessment for pandemics (ViTAP) model.

作者信息

Jones Charles H, Beitelshees Marie, Williams B Adam, Hill Andrew B, Welch Verna L, True Jane M

机构信息

Pfizer, 66 Hudson Boulevard, New York, NY 10018, USA.

Bulmore Consulting, Lockport, NY 14094, USA.

出版信息

PNAS Nexus. 2024 Dec 10;3(12):pgae558. doi: 10.1093/pnasnexus/pgae558. eCollection 2024 Dec.

Abstract

Our world is ever evolving and interconnected, creating constant opportunities for disease outbreaks and pandemics to occur, making pandemic preparedness and pathogen management crucial for global health security. Early pathogen identification and intervention play a key role in mitigating the impacts of disease outbreaks. In this perspective, we present the Viral Trait Assessment for Pandemics (ViTAP) model to aid in the early identification of high-risk viruses that have pandemic potential, which incorporates lessons from past pandemics, including which key viral characteristics are important such as genetic makeup, transmission modes, mutation rates, and symptom severity. This model serves as the foundation for the development of powerful, quantitative tools for the early prediction of pandemic pathogens. The use of such a tool, in conjunction with other pandemic preparedness measures, can allow for early intervention and containment of the virus. This proactive approach could enable timely interventions, guiding public health responses, and resource allocation to prevent widespread outbreaks and mitigate the impact of emerging pathogens.

摘要

我们的世界在不断演变且相互关联,这为疾病爆发和大流行创造了持续的机会,使得大流行防范和病原体管理对全球卫生安全至关重要。早期病原体识别和干预在减轻疾病爆发的影响方面发挥着关键作用。从这个角度出发,我们提出了大流行病毒特征评估(ViTAP)模型,以帮助早期识别具有大流行潜力的高风险病毒,该模型吸取了过去大流行的经验教训,包括哪些关键病毒特征很重要,如基因构成、传播方式、突变率和症状严重程度等。该模型为开发强大的、用于早期预测大流行病原体的定量工具奠定了基础。使用这样的工具,再结合其他大流行防范措施,可以实现对病毒的早期干预和控制。这种积极主动的方法能够实现及时干预,指导公共卫生应对和资源分配,以防止疫情广泛爆发并减轻新出现病原体的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/954e/11658415/d7dac11ce586/pgae558f1.jpg

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