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Virus Disinfection from Environmental Water Sources Using Living Engineered Biofilm Materials

机译:使用生物工程生物膜材料对环境水源中的病毒进行消毒

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摘要

Waterborne viruses frequently cause disease outbreaks and existing strategies to remove such viral pathogens often involve harsh or energy‐consuming water treatment processes. Here, a simple, efficient, and environmentally friendly approach is reported to achieve highly selective disinfection of specific viruses with living engineered biofilm materials. As a proof‐of‐concept, biofilm matrix protein CsgA was initially genetically fused with the influenza‐virus‐binding peptide (C5). The resultant engineered living biofilms could correspondingly capture virus particles directly from aqueous solutions, disinfecting samples to a level below the limit‐of‐detection for a qPCR‐based detection assay. By exploiting the surface‐adherence properties of biofilms, it is further shown that polypropylene filler materials colonized by the CsgA‐C5 biofilms can be utilized to disinfect river water samples with influenza titers as high as 1 × 10 PFU L . Additionally, a suicide gene circuit is designed and applied in the engineered strain that strictly limits the growth of bacterial, therefore providing a viable route to reduce potential risks confronted with the use of genetically modified organisms. The study thus illustrates that engineered biofilms can be harvested for the disinfection of pathogens from environmental water samples in a controlled manner and highlights the unique biology‐only properties of living substances for material applications.
机译:水性病毒经常引起疾病爆发,而现有的去除此类病毒病原体的策略通常涉及苛刻或耗能的水处理过程。在此,据报道有一种简单,有效且环保的方法,可以利用生物工程生物膜材料对特定病毒进行高度选择性的消毒。作为概念验证,生物膜基质蛋白CsgA最初与流感病毒结合肽(C5)基因融合。由此产生的经过改造的生物膜可以直接从水溶液中捕获病毒颗粒,从而将样品消毒到低于基于qPCR的检测极限。通过利用生物膜的表面粘附特性,进一步表明,由CsgA-C5生物膜定殖的聚丙烯填充材料可用于消毒滴度高达1×10 PFU L的河水样品。另外,设计了自杀基因电路并将其应用于严格限制细菌生长的工程菌株中,因此提供了一条可行的途径来降低使用转基因生物面临的潜在风险。因此,该研究表明,可以以可控的方式收获工程化的生物膜,用于对环境水样中的病原体进行消毒,并突出了生物材料在材料应用中具有的仅生物学特性。

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