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Selective Promotion of Adhesion of Shewanella oneidensis on Mannose-Decorated Glycopolymer Surfaces

机译:选择性促进植物装饰甘糖聚合面植物的肺扁豆末端粘附

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摘要

Using glycopolymer surfaces, we have stimulated Shewanella oneidensis bacterial colonization and induced where the bacteria attach on a molecular pattern. When adherent bacteria were rinsed with methyl alpha-D-mannopyranoside, the glycopolymer-functionalized surfaces retained more cells than self-assembled monolayers terminated by a single mannose unit. These results suggest that the three-dimensional multivalency of the glycopolymers both promotes and retains bacterial attachment. When the methyl alpha-D-mannopyranoside competitor was codeposited with the cell culture, however, the mannose-based polymer was not significantly different from bare gold surfaces. The necessity for equilibration between methyl alpha-D-mannopyranoside and the cell culture to remove the enhancement suggests that the retention of cells on glycopolymer surfaces is kinetically controlled and is not a thermodynamic result of the cluster glycoside effect. The MshA lectin appears to facilitate the improved adhesion observed. Our findings that the surfaces studied here can induce stable initial attachment and influence the ratio of bacterial strains on the surface may be applied to harness useful microbial communities.
机译:使用甘甘糖聚合物表面,我们刺激了雪兰菜onidensis细菌定植,并诱导细菌在分子模式上附着的地方。当用甲基α-D-甘露糖苷漂洗粘附细菌时,甘甘油聚合物官能化表面比单个甘露糖单位终止的自组装单层保留更多细胞。这些结果表明甘甘油聚合物的三维多价促进并保留细菌附着。然而,当甲基α-D-甘露糖苷竞争竞争剂用细胞培养物编写竞争时,甘露糖基聚合物与裸金表面没有显着差异。在甲基α-D-甘露糖苷和细胞培养物之间进行平衡的必要性,以除去增强,表明甘糖聚合物表面上的细胞的保留是动力学上控制的,并且不是甘氨酸糖苷效应的热力学结果。 MSHA凝集素似乎有助于观察到改善的粘附性。我们在此研究的表面可以诱导稳定的初始附着,并且影响表面细菌菌株的比例可以应用于利用有用的微生物群落。

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