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2023 年 SARS-CoV-2 XBB 谱系在巴西的传播时空动态及其流行病学影响。

Spatiotemporal dynamics and epidemiological impact of SARS-CoV-2 XBB lineage dissemination in Brazil in 2023.

机构信息

Laboratório de Arbovírus e Vírus Hemorrágicos, Instituto Oswaldo Cruz, Fiocruz, Rio de Janeiro, Brazil.

Grupo de Métodos Analíticos em Vigilância Epidemiológica, Fiocruz, Rio de Janeiro, Brazil.

出版信息

Microbiol Spectr. 2024 Mar 5;12(3):e0383123. doi: 10.1128/spectrum.03831-23. Epub 2024 Feb 5.

Abstract

UNLABELLED

The SARS-CoV-2 XBB is a group of highly immune-evasive lineages of the Omicron variant of concern that emerged by recombining BA.2-descendent lineages and spread worldwide during 2023. In this study, we combine SARS-CoV-2 genomic data ( 11,065 sequences) with epidemiological data of severe acute respiratory infection (SARI) cases collected in Brazil between October 2022 and July 2023 to reconstruct the space-time dynamics and epidemiologic impact of XBB dissemination in the country. Our analyses revealed that the introduction and local emergence of lineages carrying convergent mutations within the Spike protein, especially F486P, F456L, and L455F, propelled the spread of XBB* lineages in Brazil. The average relative instantaneous reproduction numbers of XBB* + F486P, XBB* + F486P + F456L, and XBB* + F486P + F456L + L455F lineages in Brazil were estimated to be 1.24, 1.33, and 1.48 higher than that of other co-circulating lineages (mainly BQ.1*/BE*), respectively. Despite such a growth advantage, the dissemination of these XBB* lineages had a reduced impact on Brazil's epidemiological scenario concerning previous Omicron subvariants. The peak number of SARI cases from SARS-CoV-2 during the XBB wave was approximately 90%, 80%, and 70% lower than that observed during the previous BA.1*, BA.5*, and BQ.1* waves, respectively. These findings revealed the emergence of multiple XBB lineages with progressively increasing growth advantage, yet with relatively limited epidemiological impact in Brazil throughout 2023. The XBB* + F486P + F456L + L455F lineages stand out for their heightened transmissibility, warranting close monitoring in the months ahead.

IMPORTANCE

Brazil was one the most affected countries by the SARS-CoV-2 pandemic, with more than 700,000 deaths by mid-2023. This study reconstructs the dissemination of the virus in the country in the first half of 2023, a period characterized by the dissemination of descendants of XBB.1, a recombinant of Omicron BA.2 lineages evolved in late 2022. The analysis supports that XBB dissemination was marked by the continuous emergence of indigenous lineages bearing similar mutations in key sites of their Spike protein, a process followed by continuous increments in transmissibility, and without repercussions in the incidence of severe cases. Thus, the results suggest that the epidemiological impact of the spread of a SARS-CoV-2 variant is influenced by an intricate interplay of factors that extend beyond the virus's transmissibility alone. The study also underlines the need for SARS-CoV-2 genomic surveillance that allows the monitoring of its ever-shifting composition.

摘要

未加说明

SARS-CoV-2 XBB 是一种高度免疫逃避的奥密克戎关切变异株,由 BA.2 谱系重组产生,并于 2023 年在全球传播。在这项研究中,我们将 SARS-CoV-2 基因组数据(11065 条序列)与 2022 年 10 月至 2023 年 7 月期间在巴西收集的严重急性呼吸道感染(SARI)病例的流行病学数据相结合,重建了该国 XBB 传播的时空动态和流行病学影响。我们的分析表明,携带 Spike 蛋白内趋同突变(尤其是 F486P、F456L 和 L455F)的谱系的引入和本地出现,推动了 XBB谱系在巴西的传播。XBB+F486P、XBB*+F486P+F456L 和 XBB*+F486P+F456L+L455F 谱系在巴西的平均相对瞬时繁殖数估计分别比其他同时传播的谱系(主要是 BQ.1*/BE*)高 1.24、1.33 和 1.48。尽管有这种增长优势,但这些 XBB谱系的传播对巴西之前奥密克戎亚变体的流行病学情况影响较小。在 XBB 波期间,SARI 病例的峰值数量比之前的 BA.1、BA.5和 BQ.1波分别低约 90%、80%和 70%。这些发现表明,在 2023 年期间,多个 XBB 谱系的出现,其生长优势逐渐增加,但在巴西的流行病学影响相对有限。XBB*+F486P+F456L+L455F 谱系因其更高的传染性而引人注目,需要在未来几个月内密切监测。

重要性

巴西是受 SARS-CoV-2 大流行影响最严重的国家之一,截至 2023 年年中已有超过 70 万人死亡。本研究重建了 2023 年上半年巴西的病毒传播情况,这一时期的特点是传播了 XBB.1 的后代,这是一种在 2022 年末进化而来的奥密克戎 BA.2 谱系的重组。分析支持 XBB 的传播是由其 Spike 蛋白关键部位携带类似突变的本土谱系的不断出现为标志的,这一过程伴随着传染性的持续增加,而重症病例的发生率没有影响。因此,结果表明,SARS-CoV-2 变体传播的流行病学影响受到超出病毒传播能力的复杂因素相互作用的影响。该研究还强调了需要进行 SARS-CoV-2 基因组监测,以监测其不断变化的组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5baa/10913747/b9ac1d24b25a/spectrum.03831-23.f001.jpg

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