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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Studying the Influence of Surface Topography on Bacterial Adhesion using Spatially Organized Microtopographic Surface Patterns
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Studying the Influence of Surface Topography on Bacterial Adhesion using Spatially Organized Microtopographic Surface Patterns

机译:使用空间组织的微形貌表面图案研究表面形貌对细菌粘附的影响

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The influence of surface topography on bacterial adhesion has been investigated using a range of spatially organized microtopographic surface patterns generated on polydimethylsiloxane (PDMS) and three unrelated bacterial strains. The results presented indicate that bacterial cells actively choose their position to settle, differentiating upper and lower areas in all the surface patterns evaluated. Such selective adhesion depends on the cells’ size and shape relative to the dimensions of the surface topographical features and surface hydrophobicity/hydrophilicity. Moreover, it was found that all the topographies investigated provoke a significant reduction in bacterial adhesion (30?45%) relative to the smooth control samples regardless of surface hydrophobicity/hydrophilicity. This remarkable finding constitutes a general phenomenon, occurring in both Grampositive and Gram-negative cells with spherical or rod shape, dictated by only surface topography. Collectively, the results presented in this study demonstrate that spatially organized microtopographic surface patterns represent a promising approach to controlling/inhibiting bacterial adhesion and biofilm formation.
机译:已使用在聚二甲基硅氧烷(PDMS)和三种无关细菌菌株上产生的一系列空间组织的微形貌表面图案,研究了形貌对细菌粘附的影响。给出的结果表明细菌细胞主动选择其位置来定居,从而在所有评估的表面图案中区分上部和下部区域。相对于表面形貌特征的尺寸和表面疏水性/亲水性,这种选择性粘附取决于细胞的大小和形状。此外,还发现,与表面控制样品相比,无论表面疏水性/亲水性如何,所研究的所有地形图均导致细菌粘附力显着降低(30%〜45%)。这一非凡的发现构成了普遍现象,仅在表面形貌的限制下,在球形或杆状的革兰氏阳性和革兰氏阴性细胞中均会发生。总体而言,本研究中提出的结果表明,空间组织的微形貌表面图案代表了一种有前途的控制/抑制细菌粘附和生物膜形成的方法。

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