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Evaluation of two rapid ultrafiltration-based methods for SARS-CoV-2 concentration from wastewater

机译:废水中SARS-COV-2浓度的两种快速超滤方法评价

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摘要

Quantitative measurements of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) in raw wastewater have been implemented worldwide since the beginning of the pandemic Recent efforts are being made to evaluate different viral concentration methodologies to overcome supplier shortages during lockdowns. A set of 22-wastewater samples seeded with murine hepatitis virus (MHV), a member of the Coronaviridae family, and the bacteriophage MS2, were used to characterize and compare two ultrafiltration-based methods: a centrifugal ultrafiltration device (Centricon® Plus-70) and the automated concentrating pipette CP-Select™. Based on the recovery efficiencies, significant differences were observed for MHV, with Centricon® Plus-70 (24%) being the most efficient method. Nevertheless, concentrations of naturally occurring SARS-CoV-2, Human adenoviruses and JC polyomaviruses in these samples did not result in significant differences between methods suggesting that testing naturally occurring viruses may complement the evaluation of viral concentration methodologies. Based on the virus adsorption to solids and the necessity of a pre-centrifugation step to remove larger particles and avoid clogging when using ultrafiltration methods, we assessed the percentage of viruses not quantified after ultrafiltration. Around 23% of the detected SARS-CoV-2 would be discarded during the debris removal step. The CP-Select™ provided the highest concentration factor (up to 333×) and the lowest LoD (6.19 × 10~3 GC/1) for MHV and proved to be fast, automatic, highly reproducible and suitable to work under BSL-2 measures.
机译:自大流行近期努力的开始以来,在全球范围内实施了原料废水中的严重急性呼吸综合征冠状病毒2(SARS-COV-2)的定量测​​量,以评估不同的病毒浓度方法,以克服锁定期间的供应商短缺。使用鼠肝炎病毒(MHV)的一组22废水样品,冠状病系列和噬菌体MS2的成员进行了表征和比较了两种超滤的方法:离心超滤装置(Centricon®加70 )和自动化的浓缩移液管CP-SELECT™。根据恢复效率,对MHV观察到显着差异,Centricon®Plus-70(24%)是最有效的方法。然而,在这些样品中天然存在的SARS-COV-2,人腺病毒和JC多瘤的浓度并未导致方法之间的显着差异,表明天然存在的病毒可以补充病毒浓度方法的评价。基于病毒吸附于固体和预先离心步骤的必要性,以除去较大的颗粒并避免使用超滤方法时避免堵塞,我们评估了超滤后未量化的病毒的百分比。在碎屑去除步骤期间,将丢弃检测到的SARS-CoV-2的约23%。 CP-Select™为MHV提供最高浓度系数(最多333×)和最低床单(6.19×10〜3 GC / 1),并证明是快速,自动,高度可重复的,适合在BSL-2下工作措施。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|144786.1-144786.7|共7页
  • 作者单位

    Section of Microbiology Virology and Biotechnology Department of Genetics Microbiology and Statistics University of Barcelona Spain The Water Institute of the University of Barcelona Spain;

    Section of Microbiology Virology and Biotechnology Department of Genetics Microbiology and Statistics University of Barcelona Spain The Water Institute of the University of Barcelona Spain;

    Section of Microbiology Virology and Biotechnology Department of Genetics Microbiology and Statistics University of Barcelona Spain The Water Institute of the University of Barcelona Spain;

    Section of Microbiology Virology and Biotechnology Department of Genetics Microbiology and Statistics University of Barcelona Spain The Water Institute of the University of Barcelona Spain;

    Section of Microbiology Virology and Biotechnology Department of Genetics Microbiology and Statistics University of Barcelona Spain;

    Section of Statistics Department of Genetics Microbiology and Statistics Faculty of Biology University of Barcelona Spain;

    Catalan Institute for Water Research (ICRA) Scientific and Technological Park of the University of Girona Emili Grahit 101 E-17003 Girona Spain Group of Molecular Microbial Ecology Institute of Aquatic Ecology University of Girona E-17003 Girona Spain;

    Catalan Institute for Water Research (ICRA) Scientific and Technological Park of the University of Girona Emili Grahit 101 E-17003 Girona Spain University of Girona E-17003 Girona Spain;

    Section of Microbiology Virology and Biotechnology Department of Genetics Microbiology and Statistics University of Barcelona Spain The Water Institute of the University of Barcelona Spain;

    Institute of Environmental Assessment & Water Research (IDAEA) CSIC Barcelona Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SARS-CoV-2; Wastewater; Viral concentration method; Ultrafiltration; Viral recovery;

    机译:SARS-CoV-2;废水;病毒浓度法;超滤;病毒恢复;
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