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首页> 外文期刊>Bulletin of experimental biology and medicine >Development of a Bacteriophage Complex with Superhydrophilic and Superhydrophobic Nanotextured Surfaces of Metals Preventing Healthcare-Associated Infections (HAI)
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Development of a Bacteriophage Complex with Superhydrophilic and Superhydrophobic Nanotextured Surfaces of Metals Preventing Healthcare-Associated Infections (HAI)

机译:患有超嗜含水和超疏水纳米夹层表面的噬菌体复合物的开发,所述金属化合物预防医疗保健相关感染(HAI)

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摘要

We studied antibacterial properties of organo-inorganic hybrid coatings on the AMg2 aluminum alloy including superhydrophilic and superhydrophobic nanotextured metal substrates with applied bacteriophage particles. Bactericidal activity of surfaces after artificial contamination with a bacterial suspension was evaluated. To increase bactericidal effect of the plates, bacteriophage was sorbed on their surface. In the experiments simulating possible spreading of HAI pathogens, higher bactericidal activity of superhydrophilic surfaces in comparison with superhydrophobic ones. Application of bacteriophage particles did not prevent primary colonization of textured metal surfaces by strains used in the experiment, but in some cases increases their bactericidal activity.
机译:我们研究了在AMG2铝合金上的有机无机杂合涂层的抗菌性质,包括具有施加的噬菌体颗粒的超烯烃和超疏水纳米夹层金属基材。 评价用细菌悬浮液的人工污染后表面的杀菌活性。 为了提高板的杀菌效果,噬菌体在它们的表面上被吸附。 在模拟Hai病原体的可能扩散的实验中,与超疏水性相比,过硫基表面的更高杀菌活性。 噬菌体颗粒的应用并未通过实验中使用的菌株预防纹理金属表面的原代定性,但在某些情况下,它们的杀菌活性增加。

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