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Protein corona between nanoparticles and bacterial proteins in activated sludge: Characterization and effect on nanoparticle aggregation

机译:活性污泥中纳米颗粒和细菌蛋白之间的蛋白质电晕:表征和对纳米粒子聚集的影响

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摘要

In this work, the protein coronas of activated sludge proteins on TiO2 nanoparticles (TNPs) and ZnO nanoparticles (ZNPs) were characterized. The proteins with high affinity to TNPs and ZNPs were identified by shotgun proteomics, and their effects of on the distributions of TNPs and ZNPs in activated sludge were concluded. In addition, the effects of protein coronas on the aggregations of TNPs and ZNPs were evaluated. Thirty and nine proteins with high affinities to TNPs and ZNPs were identified, respectively. The proteomics and adsorption isotherms demonstrated that activated sludge had a higher affinity to TNPs than to ZNPs. The aggregation percentages of ZNPs at 35, 53, and 106 mg/L of proteins were 13%, 14%, and 18%, respectively, whereas those of TNPs were 21%, 30%, 41%, respectively. The proteins contributed to ZNPs aggregation by dissolved Zn ion-bridging, whereas the increasing protein concentrations enhanced the TNPs aggregation through macromolecule bridging flocculation.
机译:在这项工作中,表征了TiO2纳米颗粒(TNP)和ZnO纳米颗粒(ZnP)上的活性污泥蛋白的蛋白质Corons。 通过霰弹枪蛋白质组学鉴定具有高亲和力和ZnPS和ZnP的蛋白质,结束了活化污泥中TNP和ZnP分布的影响。 此外,评价蛋白质coronas对TNP和ZnP的聚集的影响。 分别鉴定了三十和9个蛋白质,具有高亲和力和ZnPS和ZnPs的蛋白质。 蛋白质组学和吸附等温线表明,活性污泥对TNP具有比ZnP更高的亲和力。 ZnPS在35,53和106mg / L蛋白质的聚集百分比分别为13%,14%和18%,而TNP分别为21%,30%,41%。 蛋白质通过溶解的Zn离子桥接导致ZnPS聚集,而增加的蛋白质浓度通过大分子桥接絮凝增强了TNPS聚集。

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