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2022年猴痘疫情是由早期未被发现的跨国传播,随后是广泛的本地传播推动的。

Early underdetected dissemination across countries followed by extensive local transmission propelled the 2022 mpox epidemic.

作者信息

Paredes Miguel I, Ahmed Nashwa, Figgins Marlin, Colizza Vittoria, Lemey Philippe, McCrone John T, Müller Nicola, Tran-Kiem Cécile, Bedford Trevor

机构信息

Department of Epidemiology, University of Washington, Seattle, Washington, USA.

Vaccine and Infectious Disease Division, Fred Hutchinson Cancer Center, Seattle, Washington, USA.

出版信息

medRxiv. 2023 Dec 7:2023.07.27.23293266. doi: 10.1101/2023.07.27.23293266.

Abstract

The World Health Organization declared mpox a public health emergency of international concern in July 2022. To investigate global mpox transmission and population-level changes associated with controlling spread, we built phylogeographic and phylodynamic models to analyze MPXV genomes from five global regions together with air traffic and epidemiological data. Our models reveal community transmission prior to detection, changes in case-reporting throughout the epidemic, and a large degree of transmission heterogeneity. We find that viral introductions played a limited role in prolonging spread after initial dissemination, suggesting that travel bans would have had only a minor impact. We find that mpox transmission in North America began declining before more than 10% of high-risk individuals in the USA had vaccine-induced immunity. Our findings highlight the importance of broader routine specimen screening surveillance for emerging infectious diseases and of joint integration of genomic and epidemiological information for early outbreak control.

摘要

2022年7月,世界卫生组织宣布猴痘为国际关注的突发公共卫生事件。为了调查全球猴痘传播情况以及与控制传播相关的人群水平变化,我们构建了系统地理学和系统动力学模型,以分析来自五个全球区域的猴痘病毒(MPXV)基因组,并结合空中交通和流行病学数据。我们的模型揭示了在检测之前的社区传播、疫情期间病例报告的变化以及很大程度的传播异质性。我们发现,病毒引入在初始传播后延长传播方面作用有限,这表明旅行禁令只会产生轻微影响。我们发现,在美国超过10%的高危个体获得疫苗诱导免疫之前,北美地区的猴痘传播就已开始下降。我们的研究结果凸显了对新兴传染病进行更广泛的常规标本筛查监测以及将基因组和流行病学信息联合整合以进行早期疫情控制的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b78/10713084/a190299d91d3/nihpp-2023.07.27.23293266v3-f0001.jpg

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