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Reduction of bacterial adhesion on dental composite resins by silicon-oxygen thin film coatings

机译:硅-氧薄膜涂料减少在牙科复合树脂上的细菌粘附

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Adhesion of bacteria on dental materials can be reduced by modifying the physical and chemical characteristics of their surfaces, either through the application of specific surface treatments or by the deposition of thin film coatings. Since this approach does not rely on the use of drugs or antimicrobial agents embedded in the materials, its duration is not limited by their possible depletion. Moreover it avoids the risks related to possible cytotoxic effects elicited by antibacterial substances released from the surface and diffused in the surrounding tissues. In this work, the adhesion of Streptococcus mutans and Streptococcus mitis was studied on four composite resins, commonly used for manufacturing dental prostheses. The surfaces of dental materials were modified through the deposition of a-SiOx thin films by plasma enhanced chemical vapor deposition. The chemical bonding structure of the coatings was analyzed by Fourier-transform infrared spectroscopy. The morphology of the dental materials before and after the coating deposition was assessed by means of optical microscopy and high-resolution mechanical profilometry, while their wettability was investigated by contact angle measurements. The sample roughness was not altered after coating deposition, while a noticeable increase of wettability was detected for all the samples. Also, the adhesion of S. mitis decreased in a statistically significant way on the coated samples, when compared to the uncoated ones, which did not occur for S. mutans. Within the limitations of this study, a-SiOx coatings may affect the adhesion of bacteria such as S. mitis, possibly by changing the wettability of the composite resins investigated.
机译:通过改变表面的物理和化学特性,可以通过应用特定的表面处理或薄膜涂层的沉积来减少细菌在牙科材料上的粘附。由于这种方法不依赖使用嵌入材料中的药物或抗菌剂,因此其持续时间不受其可能消耗的限制。此外,它避免了与从表面释放并扩散到周围组织中的抗菌物质引起的可能的细胞毒性作用有关的风险。在这项工作中,研究了变形链球菌和拟南芥链球菌在四种通常用于制造牙修复体的复合树脂上的粘附性。通过等离子增强化学气相沉积法沉积a-SiOx薄膜来修饰牙科材料的表面。通过傅里叶变换红外光谱分析了涂层的化学键结构。通过光学显微镜和高分辨率机械轮廓分析法评估涂层沉积前后的牙科材料形态,同时通过接触角测量研究其润湿性。涂层沉积后样品的粗糙度没有改变,而所有样品的润湿性均明显提高。而且,与未涂布的相比,变形链球菌不发生的链霉菌粘附力以统计上显着的方式降低。在本研究的范围内,a-SiOx涂层可能会改变所研究的复合树脂的润湿性,从而影响细菌(如链球菌)的粘附。

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