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严格非药物干预措施下新冠病毒变异株的进化动力学——一项基于人群的研究

Evolutionary dynamics of SARS-CoV-2 variants under strict non-pharmaceutical interventions - a population-based study.

作者信息

Huo Xiang, Cui Lunbiao, Zhu Liguo, Zhang Jun, Fan Huafeng, Yi Yongxiang, Zhao Jun, Ge Yiyue, Wang Shenjiao, Han Xu, Gao Xingsu, Qi Xian, Fu Jianguang, Li Zhifeng, Fan Huan, Yu Huiyan, Deng Fei, Zhao Kangchen, Zhu Xiaojuan, Hu Jianli, Li Jianjun, Ai Jing, Kang Guodong, Shen Ya, Jin Guangjie, Wang Furu, Zhang Zhong, He Min, Ding Songning, Wang Yin, Dong Yuying, Huang Yao, Yi Changhua, Wang Longyu, Jiao Yudong, Wang Jinfu, Li Jian, Liu Hongde, Li Jingxin, Bao Changjun, Wu Ming, Zhu Fengcai

机构信息

Army Medical University (Third Military Medical University), Chongqing, PRC.

NHC Key laboratory of Enteric Pathogenic Microbiology, Jiangsu Provincial Center for Disease Control and Prevention, Nanjing, PRC.

出版信息

J Infect Dev Ctries. 2024 Dec 31;18(12.1):S214-S226. doi: 10.3855/jidc.19409.

Abstract

INTRODUCTION

China implemented a dynamic zero-COVID strategy to curb viral transmission in response to the coronavirus disease 2019 (COVID-19) pandemic. This strategy was designed to inhibit mutation of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the virus responsible for COVID-19. This study explores the dynamics of viral evolution under stringent non-pharmaceutical interventions (NPIs) through real-world observations.

METHODOLOGY

Our analysis encompassed all polymerase chain reaction (PCR)-confirmed COVID-19 cases (n = 780) from two consecutive outbreaks occurring in July to August 2021. Epidemiological investigations and in-depth viral genome analyses were conducted to determine the sources of infection and the inter-outbreak linkages.

RESULTS

The outbreaks likely originated via contaminated objects from an imported COVID-19 case to local airport cleaners. Most patients presented clinically mild symptoms. All viral genomes clustered into a single clade, with genomes from the subsequent Yangzhou outbreak forming a distinct branch, diverging from those of the initial Nanjing outbreak. Compared to the Wuhan-Hu-1 strain, the Delta variants isolated from the imported case and early local cases in Nanjing had 35 nucleotide mutations and three deletions. Various single nucleotide variant (SNV) combinations were observed in subsequent transmissions, with NPIs accounting for the termination of 67.2% (92/137) of SNV combinations. Stringent implementation of NPIs resulted in a greater number of terminated SNV combinations than emerging ones. Additionally, vaccination of cases was associated with SNV combination termination.

CONCLUSIONS

This study underscores the significant role of NPIs in preventing the accumulation of SARS-CoV-2 mutations.

摘要

引言

为应对2019冠状病毒病(COVID-19)大流行,中国实施了动态清零策略以遏制病毒传播。该策略旨在抑制严重急性呼吸综合征冠状病毒2(SARS-CoV-2,即导致COVID-19的病毒)的变异。本研究通过实际观察探索了在严格的非药物干预措施(NPIs)下病毒进化的动态情况。

方法

我们的分析涵盖了2021年7月至8月连续两次暴发中所有经聚合酶链反应(PCR)确诊的COVID-19病例(n = 780)。进行了流行病学调查和深入的病毒基因组分析,以确定感染源和两次暴发之间的联系。

结果

这些暴发可能源于一名输入性COVID-19病例的污染物品传播给当地机场清洁人员。大多数患者临床表现为轻症。所有病毒基因组聚类为一个单一支系,随后扬州暴发的基因组形成一个独特分支,与最初南京暴发的基因组不同。与武汉-Hu-1毒株相比,从输入病例和南京早期本地病例中分离出的德尔塔变异株有35个核苷酸突变和3个缺失。在后续传播中观察到各种单核苷酸变异(SNV)组合,NPIs导致67.2%(92/137)的SNV组合终止。严格实施NPIs导致终止的SNV组合数量多于新出现的组合。此外,病例接种疫苗与SNV组合终止有关。

结论

本研究强调了NPIs在防止SARS-CoV-2突变积累方面的重要作用。

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