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Quantitative assay for the colonization ability of heterogeneous bacteria on controlled nanopillar structures

机译:定量分析异质细菌在可控纳米柱结构上的定殖能力

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The colonization ability of bacteria on biomaterial surfaces is influenced by the morphology of the bacteria and the nanotopography of the biomaterial. However, interactions between the bacterial morphology and nanotopography of biomaterials have not yet been completely elucidated. In this article, we quantitatively characterized the bacterial morphology to illuminate the integrated effects of polyethylene terephthalate (PET) nanopillar arrays on the colonization of bacteria cells with different shapes. Our results demonstrated that the interaction between interpillar spacing and the diameter of the bacterial cells impacted the number of bacterial cells that adhered to different PET substrates. The interpillar spacing of nanopillar arrays promotes bacterial adhesion in a definite range (<50 nm). However, further increasing the interpillar spacing inhibited the adhesion of bacteria to the nanopillar arrays. Moreover, the interpillar spacing also influenced the morphologies of adherent bacterial cells on the PET nanopillar arrays, which consequently facilitated bacterial adhesion to the nanopillar arrays. Our findings enhance the understanding of interactions between controlled nanotopography and bacterial colonization and provide an appropriate parameter for the design of antibacterial materials with nanotopography.
机译:细菌在生物材料表面上的定殖能力受细菌形态和生物材料纳米形貌的影响。但是,尚未完全阐明细菌形态与生物材料纳米形貌之间的相互作用。在本文中,我们定量表征了细菌的形态,以阐明聚对苯二甲酸乙二酯(PET)纳米柱阵列对不同形状细菌细胞定殖的综合作用。我们的结果表明,柱间间距与细菌细胞直径之间的相互作用会影响粘附在不同PET基质上的细菌细胞的数量。纳米柱阵列的柱间间距在一定范围内(<50 nm)促进细菌粘附。然而,进一步增加柱间间距抑制了细菌对纳米柱阵列的粘附。此外,柱间间距还影响PET纳米柱阵列上粘附的细菌细胞的形态,从而促进细菌粘附到纳米柱阵列。我们的发现增强了对受控纳米形貌与细菌定植之间相互作用的理解,并为纳米形貌抗菌材料的设计提供了适当的参数。

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