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Development of a novel bag-mediated filtration system for environmental recovery of poliovirus

机译:开发一种新型的袋介导的脊髓灰质炎病毒环境回收过滤系统

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摘要

Poliovirus (PV) is on the verge of global eradication. Due to asymptomatic shedding, eradication certification requires environmental and clinical surveillance. Current environmental surveillance methods involve collection and processing of 400-mL to 1-L grab samples by a two-phase separation method, where sample volume limits detection sensitivity. Filtration of larger sample volumes facilitates increased detection sensitivity. This study describes development of a pumpless in-field filtration system for poliovirus recovery from environmental waters. Recovery of PV types 1, 2, and 3 were compared for glass wool, viroCap, and NanoCeram (PV1 only) filters. Seeded experiments were performed using 10~5 plaque forming units of PV inoculated into 10-L volumes of secondary effluent, surface water, or a 50:50 mixture of each at pH 7.0. Filter eluates were plated onto buffalo green monkey kidney cells for virus enumeration by plaque assay. Across all water types, recovery from glass wool filters for PV1, PV2, and PV3 averaged 17%, 28%, and 6%, respectively. Recovery from ViroCaps for PV1, PV2, and PV3 averaged 44%, 70%, and 81%, respectively. 10-L samples of moderate turbidity water were processed through ViroCap filters in less than 30 minutes using a pumpless, bag-mediated filtration system. Bag-mediated filtration offers a simple, compact, and efficient method for enhanced environmental PV surveillance.
机译:脊髓灰质炎病毒(PV)处于全球根除的边缘。由于无症状脱落,根除认证需要环境和临床监测。当前的环境监测方法涉及通过两相分离方法收集和处理400 mL至1 L的抓取样品,其中样品量限制了检测灵敏度。较大样品量的过滤有助于提高检测灵敏度。这项研究描述了用于从环境水域回收脊髓灰质炎病毒的无泵现场过滤系统的开发。比较了玻璃棉,viroCap和NanoCeram(仅PV1)过滤器的PV类型1、2和3的回收率。使用10〜5个噬菌斑形成单位的PV接种到10-L体积的次级污水,地表水或各自在pH 7.0下的50:50混合物中进行接种实验。将滤出液洗板涂在水牛绿猴肾细胞上,以通过噬菌斑测定进行病毒计数。在所有水类型中,从玻璃棉过滤器中回收的PV1,PV2和PV3的平均回收率分别为17%,28%和6%。从ViroCaps回收的PV1,PV2和PV3平均分别为44%,70%和81%。使用无泵,袋式过滤系统在不到30分钟的时间内通过ViroCap过滤器处理10升中度浑浊的水样品。袋式过滤提供了一种简单,紧凑,有效的方法来增强环境PV监测。

著录项

  • 来源
    《Journal of water and health》 |2014年第4期|747-754|共8页
  • 作者单位

    University of Washington, Department of Environmental & Occupational Health Sciences, 4225 Roosevelt Way NE, Suite 100, Seattle, WA 98195, USA;

    University of Washington, Department of Environmental & Occupational Health Sciences, 4225 Roosevelt Way NE, Suite 100, Seattle, WA 98195, USA;

    University of Washington, Department of Environmental & Occupational Health Sciences, 4225 Roosevelt Way NE, Suite 100, Seattle, WA 98195, USA;

    University of Washington, Department of Environmental & Occupational Health Sciences, 4225 Roosevelt Way NE, Suite 100, Seattle, WA 98195, USA;

    University of Washington, Department of Environmental & Occupational Health Sciences, 4225 Roosevelt Way NE, Suite 100, Seattle, WA 98195, USA ,Program for Appropriate Technology in Health, 2201 Westlake Avenue, Suite 200, Seattle, WA 98121, USA;

    University of Washington, Department of Environmental & Occupational Health Sciences, 4225 Roosevelt Way NE, Suite 100, Seattle, WA 98195, USA;

  • 收录信息 美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    environmental sampling; filtration; poliovirus; wastewater;

    机译:环境采样;过滤;脊髓灰质炎病毒;废水;

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