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High Quality Bioreplication of Intricate Nanostructures from a Fragile Gecko Skin Surface with Bactericidal Properties

机译:高质量的从复杂的壁虎皮肤表面具有杀菌特性的复杂纳米结构的生物复制。

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摘要

The external epithelial surfaces of plants and animals are frequently carpeted with small micro- and nanostructures, which broadens their adaptive capabilities in challenging physical habitats. Hairs and other shaped protuberances manage with excessive water, light contaminants, predators or parasites in innovative ways. We are interested in transferring these intricate architectures onto biomedical devices and daily-life surfaces. Such a project requires a very rapid and accurate small-scale fabrication process not involving lithography. In this study, we describe a simple benchtop biotemplating method using shed gecko lizard skin that generates duplicates that closely replicate the small nanotipped hairs (spinules) that cover the original skin. Synthetic replication of the spinule arrays in popular biomaterials closely matched the natural spinules in length. More significantly, the shape, curvature and nanotips of the synthetic arrays are virtually identical to the natural ones. Despite some small differences, the synthetic gecko skin surface resisted wetting and bacterial contamination at the same level as natural shed skin templates. Such synthetic gecko skin surfaces are excellent platforms to test for bacterial control in clinical settings. We envision testing the biocidal properties of the well-matched templates for fungal spores and viral resistance in biomedicine as well as co/multi-cultures.
机译:动植物的外部上皮表面经常覆盖着微小的微结构和纳米结构,从而扩大了它们在具有挑战性的物理栖息地中的适应能力。毛发和其他形状的突起物会以创新的方式处理过多的水,轻度污染物,食肉动物或寄生虫。我们有兴趣将这些复杂的体系结构转移到生物医学设备和日常生活表面上。这样的项目需要非常快速和准确的小规模制造工艺,而无需光刻。在这项研究中,我们描述了一种使用脱落的壁虎蜥蜴皮肤的简单台式生物模板化方法,该方法可产生复制品,这些复制品可紧密复制覆盖原始皮肤的小纳米尖端毛发(小刺)。在流行的生物材料中,棘突阵列的合成复制在长度上与天然棘突紧密匹配。更重要的是,合成阵列的形状,曲率和纳米尖端实际上与天然阵列相同。尽管差异很小,合成壁虎的皮肤表面仍能抵抗与天然脱落的皮肤模板相同水平的润湿和细菌污染。这样的合成壁虎皮肤表面是在临床环境中测试细菌控制的绝佳平台。我们设想测试生物医学以及共培养/多重培养中真菌孢子和病毒抗性的匹配模板的杀生物特性。

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