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Nano-structured surfaces control bacterial attachment

机译:纳米结构表面控制细菌附件

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Surface roughness is known to play a significant role in the cell-surface attachment process, particularly when the surface irregularities are of a dimension that is comparable to the bacterial size and hence provide shelter from unfavorable environmental factors. To explore the influence of nano-scale surface roughness on bacterial attachment this study utilized as-received and chemically treated glass surfaces as substrata for bacterial adsorption. Surface modification via chemical etching resulted in a 70% decrease in the nano-scale roughness of the glass surface with no alteration of its chemical composition. We have observed that bacteria belonging to three different taxa, while adhering to the modified surface, exhibited similar attachment tendencies to the un-modified substratum, however the number of attached cells increased threefold. The increase in extent of attachment was also associated with bacterial morphologic and metabolic changes. The results obtained suggest that nano-scale surface roughness might strongly influence bacterial attachment.
机译:已知表面粗糙度在细胞表面附着过程中发挥着重要作用,特别是当表面不规则性具有与细菌尺寸相当的尺寸并且因此提供从不利的环境因素提供避难所。为了探讨纳米尺度表面粗糙度对细菌附着的影响本研究使用的应用和化学处理过的玻璃表面作为细菌吸附的副族。通过化学蚀刻的表面改性导致玻璃表面的纳米粗糙度降低70%,没有改变其化学成分。我们观察到,属于三种不同的征集的细菌,同时粘附在改性表面上,表现出与未改性的底皮类似的附着趋势,但附着细胞的数量增加三倍。附着程度的增加也与细菌形态学和代谢变化有关。得到的结果表明,纳米级表面粗糙度可能强烈影响细菌附着。

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