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Improvement of the Bag-Mediated Filtration System for Sampling Wastewater and Wastewater-Impacted Waters

机译:袋装滤水系统对废水和污水的采样系统的改进

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摘要

Environmental surveillance of poliovirus (PV) plays an important role in the global program for eradication of wild PV. The bag-mediated filtration system (BMFS) was first developed in 2014 and enhances PV surveillance when compared to the two-phase grab method currently recommended by the World Health Organization (WHO). In this study, the BMFS design was improved and tested for its usability in wastewater and wastewater-impacted surface waters in Nairobi, Kenya. Modifications made to the BMFS included the size, color, and shape of the collection bags, the filter housing used, and the device used to elute the samples from the filters. The modified BMFS concentrated 3–10 L down to 10 mL, which resulted in an effective volume assayed (900–3000 mL) that was 6–20 times greater than the effective volume assayed for samples processed by the WHO algorithm (150 mL). The system developed allows for sampling and in-field virus concentration, followed by transportation of the filter for further analysis with simpler logistics than the current methods. This may ultimately reduce the likelihood of false-negative samples by increasing the effective volume assayed compared to samples processed by the WHO algorithm, making the BMFS a valuable sampling system for wastewater and wastewater-impacted surface waters.
机译:脊髓灰质炎病毒(PV)的环境监测在全球根除野生PV的计划中发挥着重要作用。袋式过滤系统(BMFS)于2014年首次开发,与世界卫生组织(WHO)当前建议的两阶段抓斗方法相比,可增强PV监测。在这项研究中,对BMFS设计进行了改进,并对其在肯尼亚内罗毕的废水和受废水影响的地表水中的可用性进行了测试。 BMFS的修改包括收集袋的尺寸,颜色和形状,使用的过滤器外壳以及用于从过滤器中洗脱样品的设备。改良的BMFS将3-10 L浓缩至10 mL,这导致测定的有效体积(900-3000 mL)比WHO算法处理的样品的有效体积(150 mL)大6-20倍。开发的系统允许采样和现场病毒浓缩,然后运输过滤器以进行比当前方法更简单的后勤进一步分析。与通过WHO算法处理的样品相比,通过增加测定的有效体积,这最终可以减少假阴性样品的可能性,从而使BMFS成为废水和受废水影响的地表水的有价值的采样系统。

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