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Impact of 3D Hierarchical Nanostructures on the Antibacterial Efficacy of a Bacteria-Triggered Self-Defensive Antibiotic Coating

机译:3D分层纳米结构对细菌触发的自防御抗生素涂层的抗菌功效的影响

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Titanium is often applied in implant surgery, but frequently implicated in infections associated with bacterial adhesion and growth on the implant surface. Here, we show that hierarchical nanostructuring of titanium and the subsequent coating of resulting topographical features with a self-defensive, antibacterial layer-by-layer (LbL) film enables a synergistic action of hierarchical nanotopography and localized, bacteria-triggered antibiotic release to dramatically enhance the antibacterial efficiency of surfaces. Although sole nanostructuring of titanium substrates did not significantly affect adhesion and growth of Staphylococcus aureus, the coating of 3D-nanopillared substrates with an ultrathin tannic acid/gentamicin (TA/G) LbL film resulted in a 10-fold reduction of the number of surface-attached bacteria. This effect is attributed to the enlarged surface area of the nanostructured coating available for localized bacteria-triggered release of antibiotics, as well as to the lower bacterial adhesion forces resulting in subsided activation of bacterial antibiotic-defense mechanisms when bacteria land on nanopillar tips. The result shows that a combination of 3D nanostructuring with a bacteria-triggered antibiotic-releasing coating presents a unique way to dramatically enhance antibacterial efficacy of biomaterial implants.
机译:钛通常用于植入物外科手术,但通常与细菌粘附和植入物表面生长相关的感染有关。在这里,我们显示出钛的分层纳米结构以及随后的自防御抗菌层(LbL)膜对所形成的地形特征的涂层使分层纳米地形和​​细菌触发的局部抗生素释放的协同作用显着增强增强表面的抗菌效率。尽管钛底物的唯一纳米结构不会显着影响金黄色葡萄球菌的粘附和生长,但是用超薄单宁酸/庆大霉素(TA / G)LbL膜涂覆3D纳米柱状底物却导致表面数量减少了10倍。 -附着细菌。这种作用归因于可用于局部细菌触发的抗生素释放的纳米结构涂层的表面积增大,以及较低的细菌粘附力,当细菌落在纳米柱尖端时,细菌粘附力降低,导致细菌抗生素防御机制的激活。结果表明3D纳米结构与细菌触发的抗生素释放涂层的结合提供了一种独特的方式来显着增强生物材料植入物的抗菌功效。

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