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Adenovirus, MS2 and PhiX174 interactions with drinking water biofilms developed on PVC, cement and cast iron.

机译:腺病毒,MS2和PhiX174与在PVC,水泥和铸铁上形成的饮用水生物膜相互作用。

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Biofilms colonizing pipe surfaces of drinking water distribution systems could provide habitat and shelter for pathogenic viruses present in the water phase. This study aims (i) to develop a method to detect viral particles present in a drinking water biofilm and (ii) to study viral interactions with drinking water biofilms. A pilot scale system was used to develop drinking water biofilms on 3 materials (7 cm(2) discs): PVC, cast iron and cement. Biofilms were inoculated with viral model including MS2, PhiX174 or adenovirus. Five techniques were tested to recover virus from biofilms. The most efficient uses beef extract and glycine at pH = 9. After sonication and centrifugation, the pH of the supernatant is neutralized prior to viral analysis. The calculated recovery rates varied from 29.3 to 74.6% depending on the virus (MS2 or PhiX174) and the material. Applying this protocol, the interactions of virus models (MS2 and adenovirus) with drinking water biofilms were compared. Our results show that adsorption of viruses to biofilms depends on their isoelectric points, the disc material and the hydrodynamic conditions. Applying hydrodynamic conditions similar to those existing in drinking water networks resulted in a viral adsorption corresponding to less than 1% of the initial viral load.
机译:遍布饮用水分配系统管道表面的生物膜可以为水相中存在的病原病毒提供栖息地和庇护所。这项研究的目的是(i)开发一种检测饮用水生物膜中存在的病毒颗粒的方法,以及(ii)研究病毒与饮用水生物膜的相互作用。中试规模的系统用于在3种材料(7 cm(2)盘)上显影饮用水生物膜:PVC,铸铁和水泥。用包括MS2,PhiX174或腺病毒的病毒模型接种生物膜。测试了五种从生物膜中回收病毒的技术。最有效的方法是在pH = 9的条件下使用牛肉提取物和甘氨酸。超声处理和离心分离后,在进行病毒分析之前,中和上清液的pH。根据病毒(MS2或PhiX174)和材料的不同,计算的回收率从29.3%到74.6%不等。应用该协议,比较了病毒模型(MS2和腺病毒)与饮用水生物膜的相互作用。我们的结果表明,病毒对生物膜的吸附取决于它们的等电点,圆盘材料和流体动力学条件。应用类似于饮用水网络中存在的流体动力学条件会导致病毒吸附,相当于不到初始病毒载量的1%。

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