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Antibacterial studies of ZnO nanoparticle coatings on nanocrystalline YSZ irradiated with femtosecond laser light

机译:飞秒激光辐照的纳米晶YSZ上ZnO纳米颗粒涂层的抗菌研究

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Recently, efforts have been made to create a transparent ceramic cranial implant comprised of nanocrystalline yttria-stabilized zirconia (nc-YSZ) that will provide optical access to the brain. This has been referred to as Window to the Brain (WttB) in the literature. WttB will allow the use of laser and photonic treatments and diagnostics in areas with difficult optical access in the brain. Nevertheless, infection is still one of the frequent cranial implant complications. In most cases a second surgery is required to replace the infected implant. To address potential infections in the WttB platform, we have studied the antibacterial effect of a Zinc Oxide (ZnO) nanoparticles coating on nc-YSZ. After coating with ZnO nanoparticles, the implant was irradiated with infrared femtosecond laser light. We synthesized ZnO nanoparticles through the Laser Ablation of Solids in Liquids (LASL) method, using a Zinc solid target in a liquid medium (water/acetone). Antibacterial coatings were obtained by air brush, using a precursor solution of ZnO nanoparticles in distilled water. Escherichia coli (E. coli) have been used as representative, clinical relevant bacteria to probe the antibacterial effect of the coating. Our previous studies suggested that the use of ZnO nanoparticles inhibit bacterial growth. Laser irradiation treatment alone also offers inhibition of bacterial growth, up to 70%. The incorporation of nanoparticles offers an additional 20% inhibition. Thus, this work represents the next step towards the development of a clinically-oriented transparent cranial implant.
机译:最近,人们努力创建一种透明的陶瓷颅骨植入物,该植入物由纳米晶氧化钇稳定的氧化锆(nc-YSZ)组成,可为大脑提供光学通道。在文献中,这被称为“大脑窗口”(WttB)。 WttB将允许在大脑光学通道难以进入的区域使用激光和光子治疗及诊断方法。然而,感染仍然是颅骨植入物常见的并发症之一。在大多数情况下,需要第二次手术以更换受感染的植入物。为了解决WttB平台中的潜在感染,我们研究了氧化锌(ZnO)纳米颗粒涂层对nc-YSZ的抗菌作用。用ZnO纳米颗粒涂覆后,用红外飞秒激光照射植入物。我们通过在液体介质(水/丙酮)中使用锌固体靶,通过液体中固体的激光烧蚀(LASL)方法合成了ZnO纳米颗粒。使用ZnO纳米粒子在蒸馏水中的前驱溶液,通过气刷获得抗菌涂层。大肠杆菌(E. coli)已被用作代表性的临床相关细菌,以探测涂层的抗菌效果。我们以前的研究表明,ZnO纳米颗粒的使用会抑制细菌的生长。单独进行激光辐照处理也可以抑制细菌生长,最高可达70%。纳米粒子的结合提供了额外的20%抑制作用。因此,这项工作代表了开发面向临床的透明颅骨植入物的下一步。

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