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首页> 外文期刊>Water science & technology >Characterization of recombinant norovirus virus-like particles and evaluation of their applicability to the investigation of norovirus removal performance in membrane filtration processes
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Characterization of recombinant norovirus virus-like particles and evaluation of their applicability to the investigation of norovirus removal performance in membrane filtration processes

机译:重组诺如病毒样颗粒的表征及其在膜过滤过程中诺如病毒去除性能研究中的适用性评估

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Noroviruses (NVs) are one of the leading causes of epidemic gastroenteritis around the world. Water treatment technologies using membrane filtration for virus removal are becoming increasingly important. However, experiments to test removal of NVs from water have been hampered because NVs do not grow in cell culture or in small-animal models and therefore cannot be easily artificially propagated. Expression of the NV genome in a baculovirus-silkworm expression system has produced recombinant NV virus-like particles (rNV-VLPs) that aremorphologically and antigenically similar to native NV. Here, we characterized these rNV-VLPs and evaluated their potential use in assessing NV removal. Electron microscopic analysis and peptide mass fingerprinting showed that the rNV-VLPs were morphologically identical to native NV. In addition, surface charge and particle size distribution, which are important factors for explaining virus particle behavior during membrane filtration, were successfully evaluated by using rNV-VLPs. The rNV-VLPs were easy to quantify with a commercially available enzyme-linked immunosorbent assay kit, they remained stable for several days at 4 degrees C after dilution in river water, and they were easy to concentrate with the ultrafiltration entrapment method used. Thus, rNV-VLPs can be used to facilitate our understanding of the behavior of NVs during membrane filtration processes.
机译:诺如病毒(NVs)是全球流行性胃肠炎的主要原因之一。使用膜过滤去除病毒的水处理技术变得越来越重要。但是,测试NV从水中去除的实验受到了阻碍,因为NVs在细胞培养或小动物模型中不生长,因此不易人工繁殖。 NV基因组在杆状病毒-桑蚕表达系统中的表达已产生重组的NV病毒样颗粒(rNV-VLPs),其形态和抗原性与天然NV相似。在这里,我们表征了这些rNV-VLP,并评估了它们在评估NV去除中的潜在用途。电子显微镜分析和肽质量指纹图谱显示,rNV-VLPs在形态上与天然NV相同。此外,通过使用rNV-VLP成功评估了表面电荷和粒径分布,这是解释膜过滤过程中病毒颗粒行为的重要因素。 rNV-VLPs易于通过市售的酶联免疫吸附试剂盒进行定量,在河水中稀释后在4摄氏度下可保持稳定数天,并且易于通过所用的超滤包埋法进行浓缩。因此,rNV-VLP可用于促进我们对膜过滤过程中NV的行为的了解。

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