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The Bacterial Anti-Adhesive Activity of Double-Etched Titanium (DAE) as a Dental Implant Surface

机译:双蚀刻钛(DAE)作为牙科植入物表面的细菌抗粘附活性

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摘要

This work aimed to compare the capability of Streptococcus oralis to adhere to a novel surface, double-etched titanium (DAE), in respect to machined and single-etched titanium. The secondary outcome was to establish which topographical features could affect the interaction between the implant surface and bacteria. The samples’ superficial features were characterized using scanning electron microscopy (SEM) and energy dispersive x-ray spectrometry (EDS), and the wetting properties were tested through sessile methods. The novel surface, the double-etched titanium (DAE), was also analyzed with atomic force microscopy (AFM). S. oralis was inoculated on discs previously incubated in saliva, and then the colony-forming units (CFUs), biomass, and cellular viability were measured at 24 and 48h. SEM observation showed that DAE was characterized by higher porosity and Oxygen (%) in the superficial layer and the measurement of the wetting properties showed higher hydrophilicity. AFM confirmed the presence of a higher superficial nano-roughness. Microbiological analysis showed that DAE discs, coated by pellicle’s proteins, were characterized by significantly lower CFUs at 24 and 48 h with respect to the other two groups. In particular, a significant inverse relationship was shown between the CFUs at 48 h and the values of the wetted area and a direct correlation with the water contact angle. The biomass at 24 h was slightly lower on DAE, but results were not significant concerning the other groups, both at 24 and 48 h. The DAE treatment not only modifies the superficial topography and increased hydrophilicity, but it also increases the Oxygen percentage in the superficial layer, which could contribute to the inhibition of S. oralis adhesion. DAE can be considered a promising treatment for titanium implants to counteract a colonization pioneer microorganism, such as S. oralis.
机译:这项工作的目的是口腔链球菌的能力比较粘附到一种新颖的表面,双蚀刻钛(DAE),在相对于加工和单蚀刻钛。次要结果是建立该形貌特征可影响植入物表面和细菌之间的相互作用。使用扫描电子显微镜(SEM)和能量色散X射线光谱法(EDS)的样本的表面特征进行表征,而润湿性能是通过固着方法测试。新型表面,双蚀刻的钛(DAE),也进行了分析用原子力显微镜(AFM)。口腔链球菌接种于先前在唾液孵育盘,然后在24和48h测定菌落形成单位(CFU),生物质,和细胞生存力。 SEM观察显示,DAE的特征是在表面层和润湿性能的测量更高的孔隙率和氧(%)显示出较高的亲水性。 AFM证实较高的肤浅纳米粗糙度的存在。微生物分析表明,DAE光盘,由防尘薄膜组件的蛋白涂覆的,在24和48小时相对于特征在于显著较低的CFU到两个其它基团。具体地讲,是在之间的CFU在第48小时和示出的显著反比关系的润湿区域的值,并与水接触角的直接相关性。在24小时的生物量小幅走低DAE,但效果并不显著关于其他群体,无论是在24和48小时。的DAE处理不仅修改浅表地形和增加的亲水性,但它也增加了表面层氧气百分比,这可能有助于口腔链球菌的粘附的抑制。 DAE可以被认为是有前途的治疗钛种植体以抵消定植先驱微生物,如口腔链球菌。

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