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2021年期间,导致柬埔寨连续疫情爆发的新冠病毒阿尔法和德尔塔变异株的时空演变及传播动态

Spatiotemporal evolution and transmission dynamics of Alpha and Delta SARS-CoV-2 variants contributing to sequential outbreaks in Cambodia during 2021.

作者信息

Su Yvonne C F, Zeller Michael A, Ou Tey Putita, Ma Jordan, Pum Leakhena, Zhang Rong, Rath Sophannadeth, Heang Vireak, Kol Sonita, Lim Reaksa, Chea Kim Lay, Khun Limmey, Heng Leangyi, Krang Sidonn, Raftery Philomena, Kinzer Michael H, Ieng Vanra, Kab Vannda, Patel Sarika, Sar Borann, Horm Viseth Srey, Yann Sokhoun, Auerswald Heidi, Siegers Jurre Y, Troupin Cecile, Boukli Narjis, Vandelannoote Koen, Wong Foong Ying, Ng Giselle G K, Chan Malen, Sorn Sopheak, Sengdoeurn Yi, Heng Seng, Darapheak Chau, Savuth Chin, Khalakdina Asheena, Ly Sowath, Baril Laurence, Spiegel Andre, Duong Veasna, Ly Sovann, Smith Gavin J D, Karlsson Erik A

机构信息

Programme in Emerging Infectious Diseases, Duke-NUS Medical School, 8 College Road, Singapore, 169857, Singapore.

Virology Unit, World Health Organization COVID-19 Global Referral Laboratory, Institut Pasteur du Cambodge, Phnom Penh, Cambodia.

出版信息

Commun Med (Lond). 2024 Nov 28;4(1):252. doi: 10.1038/s43856-024-00685-7.

Abstract

BACKGROUND

Tracking the emergence, introduction and spread of SARS-CoV-2 variants of concern are essential for informing public health strategies. In 2021, Cambodia faced two major epidemic waves of SARS-CoV-2 triggered by the successive rise of the Alpha and Delta variants.

METHODS

Phylodynamic analysis of 1,163 complete SARS-CoV-2 genomes from Cambodia, along with global sequences, were conducted between February and September 2021 to infer viral introductions, molecular epidemiology and population dynamics. The relationship between epidemic trends and control strategies were evaluated. Bayesian phylogeographic reconstruction was employed to estimate and contrast the spatiotemporal dynamics of the Alpha and Delta variants over time.

RESULTS

Here we reveal that the Alpha variant displays rapid lineage diversification, accompanied by the acquisition of a spike E484K mutation that coincides with the national implementation of mass COVID-19 vaccination. Despite nationwide control strategies and increased vaccination coverage, the Alpha variant was quickly displaced by Delta variants that exhibits a higher effective reproductive number. Phylogeographic inference indicates that the Alpha variant was introduced through south-central region of Cambodia, with strong diffusion rates from the capital of Phnom Penh to other provinces, while the Delta variant likely entered the country via the northern border provinces.

CONCLUSIONS

Continual genomic surveillance and sequencing efforts, in combination with public health strategies, play a vital role in effectively tracking and responding to the emergence, evolution and dissemination of future emerging variants.

摘要

背景

追踪严重急性呼吸综合征冠状病毒2(SARS-CoV-2)变异株的出现、传入和传播对于制定公共卫生策略至关重要。2021年,柬埔寨面临由阿尔法(Alpha)和德尔塔(Delta)变异株相继出现引发的两波主要的SARS-CoV-2疫情。

方法

2021年2月至9月期间,对来自柬埔寨的1163个完整SARS-CoV-2基因组以及全球序列进行系统发育动力学分析,以推断病毒传入情况、分子流行病学和种群动态。评估了疫情趋势与防控策略之间的关系。采用贝叶斯系统发育地理学重建方法来估计和对比阿尔法和德尔塔变异株随时间的时空动态。

结果

我们在此揭示,阿尔法变异株呈现快速的谱系多样化,同时获得了一个刺突蛋白E484K突变,这与柬埔寨全国大规模开展新冠疫苗接种相吻合。尽管采取了全国性防控策略且疫苗接种覆盖率有所提高,但阿尔法变异株很快被有效再生数更高的德尔塔变异株所取代。系统发育地理学推断表明,阿尔法变异株是通过柬埔寨中南部地区传入的,从首都金边向其他省份的扩散速度很快,而德尔塔变异株可能是通过北部边境省份进入该国的。

结论

持续的基因组监测和测序工作,结合公共卫生策略,在有效追踪和应对未来新出现变异株的出现、进化和传播方面发挥着至关重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f99f/11603031/150ec9fbfb32/43856_2024_685_Fig1_HTML.jpg

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