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首页> 外文期刊>Nanoscale >A nanostructured anti-biofilm surface widens the efficacy against spindle-shaped and chain-forming rod-like bacteria
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A nanostructured anti-biofilm surface widens the efficacy against spindle-shaped and chain-forming rod-like bacteria

机译:表面纳米anti-biofilm扩大了功效与纺锤状chain-forming棒状细菌

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Current control of pathogenic bacteria at all biomaterial interfaces is poorly attuned to a broad range of disease-causing pathogens. Leading antimicrobial surface functionalization strategies with antimicrobial peptides (AMPs), defensins, have not shown their promised efficacy. One of the main problems is the lack of stability and swift clearance from the surface. Surface nanotopography bearing sharp protrusions is a non-chemical solution that is intrinsically stable and long-lasting. Previously, the geometrically ordered arrays of nanotipped spines repelled or rapidly ruptured bacteria that come into contact. The killing properties so far work on cocci and rod-like bacteria, but there is no validation of the efficacy of protrusional surfaces on pathogenic bacteria with different sizes and morphologies, thus broadening the utility of such surfaces to cover increasingly more disease entities. Here, we report a synthetic analogue of nanotipped spines with a pyramidal shape that show great effectiveness on species of bacteria with strongly contrasting shapes and sizes. To highlight this phenomenon in the field of dental applications where selective bacterial control is vital to the clinical success of biomaterial functions, we modified the poly(methyl)-methacrylate (PMMA) texture and tested it againstStreptococcus mutans,Enterococcus faecalis,Porphyromonas gingivalis, andFusobacterium nucleatum. These nanopyramids performed effectively at levels well above those of normal and roughened PMMA biomaterials for dentistry and a model material for general use in medicine and disease transmission in hospital environments.
机译:电流控制病原菌生物材料界面不适应广泛的致病病原体。抗菌表面功能化策略与抗菌肽(安培),defensins没有显示他们的承诺功效。稳定和迅速从表面清除。表面nanotopography轴承尖锐的突起本质上是一个化工厂的解决方案吗稳定和持久的。几何nanotipped刺的有序数组迅速击退或破裂的细菌接触。球菌和棒状细菌,但是没有验证protrusional的功效表面与不同的病原菌大小和形态,从而扩大实用的表面覆盖越来越多更多的疾病实体。合成模拟nanotipped刺的锥体形状显示伟大的有效性种细菌与强烈的对比形状和大小。选择性的牙科领域的应用临床细菌控制是至关重要的成功的生物材料功能,我们修改了聚甲基丙烯酸甲酯(PMMA)纹理和测试againstStreptococcusgingivalis, andFusobacterium nucleatum。nanopyramids执行有效的水平高于正常的和粗糙PMMA牙科生物材料和模型材料一般使用在医学和疾病在医院环境中传播。

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