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Recovery of SARS-CoV-2 from Wastewater Using Centrifugal Ultrafiltration

机译:使用离心超滤从废水中恢复SARS-COV-2

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摘要

The COVID-19 pandemic is a global crisis and continues to impact communities as the disease spreads. Clinical testing alone provides a snapshot of infected individuals but is costly and difficult to perform logistically across whole populations. The virus which causes COVID-19, SARS-CoV-2, is shed in human feces and urine and can be detected in human waste. SARS-CoV-2 can be shed in high concentrations (>107 genomic copies/mL) due to its ability to replicate in the gastrointestinal tract of humans through attachment to the angiotensin-converting enzyme 2 (ACE-2) receptors there. Monitoring wastewater for SARS-CoV-2, alongside clinical testing, can more accurately represent the spread of disease within a community. This protocol describes a reliable and efficacious method to recover SARS-CoV-2 in wastewater, quantify genomic RNA levels, and evaluate concentration fluctuations over time. Using this protocol, viral levels as low as 10 genomic copies/mL were successfully detected from 30 mL of wastewater in more than seven-hundred samples collected between August 2020 and March 2021. Through the adaptation of traditional enteric virus methods used in food safety research, targets have been reliably detected with no inhibition of detection (RT-qPCR) observed in any sample processed. This protocol is currently used for surveillance of wastewater systems across New Castle County, Delaware.
机译:Covid-19大流行是一种全球危机,并继续影响社区,因为疾病传播。单独临床测试提供了感染者的快照,但昂贵而难以在整个人群中逻辑上进行。导致Covid-19,SARS-COV-2的病毒在人粪和尿液中脱落,可以在人类废物中检测。 SARS-COV-2可以在高浓度(> 107个基因组拷贝/ mL)中脱落,因为它通过在那里的血管紧张素转换酶2(ACE-2)受体中通过附着在人体中复制胃肠道。对于SARS-COV-2的监测废水,以及临床测试,可以更准确地代表社区中的疾病传播。该方案描述了在废水中恢复SARS-COV-2的可靠和有效的方法,量化基因组RNA水平,并随时间评估浓度波动。使用该方案,在20世纪2020年8月20日至3月2021年3月20日至3月20日至3月20日期间,成功地检测到10种基因组拷贝/ mL的病毒水平。通过适应食品安全研究中使用的传统肠道病毒方法的适应,无需抑制在任何样品中观察到的检测(RT-QPCR)的抑制,目标已经可靠地检测到。该议定书目前用于在新城堡,特拉华州新城堡县的废水系统监测。

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