Genomic Analysis and Surveillance of Respiratory Syncytial Virus (RSV) Using Wastewater-Based Epidemiology (WBE)

Danielle M Allen, Marina I Reyne, Pearce Allingham, Ashley Levickas, Stephen H Bell, Jonathan Lock, Jonathon D Coey, Stephen Carson, Andrew J Lee, Cormac McSparron, Behnam Firoozi Nejad, James McKenna, Mark Shannon, Kathy Li, Tanya Curran, Lindsay J Broadbent, Damian G Downey, Ultan F Power, Helen E Groves, Jennifer M McKinley, John W McGrath, Connor G G Bamford, Deirdre F Gilpin
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Abstract

Respiratory syncytial virus (RSV) causes severe infections in infants, immunocompromised or elderly individuals resulting in annual epidemics of respiratory disease. Currently, limited clinical surveillance and the lack of predictable seasonal dynamics limits the public health response. Wastewater-based epidemiology (WBE) has recently been used globally as a key metric in determining prevalence of SARS-CoV-2 in the community but its application to other respiratory viruses is limited. In this study, we present an integrated genomic WBE approach, applying RT-qPCR and partial G-gene sequencing to track RSV levels and variants in the community. We report increasing detection of RSV in wastewater concomitant with increasing numbers of positive clinical cases. Analysis of wastewater-derived RSV sequences permitted identification of distinct circulating lineages within and between seasons. Altogether, our genomic WBE platform has the potential to complement ongoing global surveillance and aid the management of RSV by informing the timely deployment of pharmaceutical and non-pharmaceutical interventions.
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利用基于废水的流行病学 (WBE) 对呼吸道合胞病毒 (RSV) 进行基因组分析和监测
呼吸道合胞病毒(RSV)会引起婴儿、免疫力低下者或老年人的严重感染,导致呼吸道疾病的年度流行。目前,有限的临床监测和缺乏可预测的季节性动态限制了公共卫生应对措施。以废水为基础的流行病学(WBE)最近在全球范围内被用作确定 SARS-CoV-2 在社区中流行程度的关键指标,但其在其他呼吸道病毒中的应用还很有限。在本研究中,我们提出了一种综合基因组 WBE 方法,应用 RT-qPCR 和部分 G 基因测序来跟踪社区中 RSV 的水平和变异情况。我们报告了在废水中检测到越来越多 RSV 的同时,阳性临床病例的数量也在增加。通过分析废水中的 RSV 序列,可以确定季节内和季节间不同的循环系。总之,我们的基因组 WBE 平台有可能补充正在进行的全球监测,并通过为及时部署药物和非药物干预措施提供信息来帮助管理 RSV。
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