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首页> 外文期刊>The international journal of artificial organs >Adhesion of Streptococcus mutans to different restorative materials.
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Adhesion of Streptococcus mutans to different restorative materials.

机译:变形链球菌对不同修复材料的粘附力。

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Adherence of oral bacteria to the surface of dental restorative materials is considered an important step in the development of secondary caries and periodontal disease. The aim of this study was to investigate and compare the adherence of different restorative materials to Streptococcus mutans strain (CCUG35176) in order to ascertain possible differences. The materials tested ranged across different classes including: flowable composites (Gradia Direct LoFlo; Filtek Supreme XT Flowable), anterior composites (Gradia Direct Anterior), universal composites (Filtek Supreme XT), packable composites (Filtek Silorane; Filtek P60), glass-ionomers (Fuji IX Gp Extra; Equia) and a control reference material (Thermanox plastic coverlips). Bacterial suspension was deposited onto each material and the adhesion was evaluated trough the colony forming units (CFUs) determination. Packable silorane-based composite was found to be less adhesive than posterior packable composite P60, flowable composites and glass ionomers. The fluoride of glass ionomers did not prevent the attachment of S. mutans; furthermore, after roughness analysis and SEM investigations, the hypothesis that the difference in bacterial adhesion can be determined by the particular surface chemistry of the material itself as well as by different electrostatic forces between bacteria and restorative surfaces must be given serious consideration.
机译:口腔细菌粘附到牙齿修复材料表面被认为是继发龋齿和牙周疾病发展的重要步骤。这项研究的目的是调查和比较不同的修复材料对变形链球菌菌株(CCUG35176)的粘附性,以确定可能的差异。测试的材料涵盖不同的类别,包括:可流动复合材料(Gradia Direct LoFlo; Filtek Supreme XT Flowable),前复合材料(Gradia Direct Anterior),通用复合材料(Filtek Supreme XT),可包装复合材料(Filtek Silorane; Filtek P60),玻璃离聚物(Fuji IX Gp Extra; Equia)和对照参考材料(Thermanox塑料盖玻片)。将细菌悬浮液沉积到每种材料上,并通过菌落形成单位(CFU)测定来评估粘附力。发现可填充的基于硅氧烷的复合材料比后填充的复合材料P60,可流动的复合材料和玻璃离聚物的粘合力更低。玻璃离聚物的氟化物不能阻止变形链球菌的附着。此外,在进行了粗糙度分析和SEM研究之后,必须认真考虑以下假设:细菌粘附力的差异可以通过材料本身的特定表面化学性质以及细菌与修复表面之间的不同静电力来确定。

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