Novel hybrid biofilm system using synthetically engineered curli fibres

H. Ramesh, Keerthana Pasumarthi, M. Hou, Jennifer Lee
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Abstract

Hydraulic fracturing, a popular mining technique, generates heavy metal contamination in nearby freshwater aquifers. This poses a threat to both the surrounding ecosystems an  human health if exposed. Existing methods of heavy metal removal can produce additional hazardous byproducts. This proposal presents the use of a hybrid biofilm filter containing graphene and curli fibres with metal binding sites. Curli fibres are amyloid fibrils found on the extracellular biofilm of Escherichia coli (E coli.). Through the use of plasmid vectors, E. coliwill be engineered to produce secreted curli fibres with metal-binding residues. The stability and cohesive properties of the curli fibres augments the adherence to the graphene scaffolding, thus allowing for generation of a hybrid biofilm. With the filtration design and various experimental controls proposed, this model is ready for empirical proof of concept and subsequent quantitative optimization.
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利用合成工程卷曲纤维的新型杂交生物膜系统
水力压裂是一种流行的采矿技术,在附近的淡水含水层中产生重金属污染。这将对周围的生态系统和人类健康造成威胁。现有的重金属去除方法会产生额外的有害副产品。该提案提出了一种混合生物膜过滤器的使用,该过滤器含有石墨烯和具有金属结合位点的卷曲纤维。卷曲纤维是在大肠杆菌的细胞外生物膜上发现的淀粉样原纤维。通过使用质粒载体,大肠杆菌将被改造成产生分泌的带有金属结合残基的卷曲纤维。卷曲纤维的稳定性和内聚性增强了对石墨烯支架的粘附性,从而允许产生杂交生物膜。随着过滤设计和各种实验控制的提出,该模型为概念的经验证明和随后的定量优化做好了准备。
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