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Influence of Dental Prosthesis and Restorative Materials Interface on Oral Biofilms

机译:牙修复体和修复材料界面对口腔生物膜的影响

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摘要

Oral biofilms attach onto both teeth surfaces and dental material surfaces in oral cavities. In the meantime, oral biofilms are not only the pathogenesis of dental caries and periodontitis, but also secondary caries and peri-implantitis, which would lead to the failure of clinical treatments. The material surfaces exposed to oral conditions can influence pellicle coating, initial bacterial adhesion, and biofilm formation, due to their specific physical and chemical characteristics. To define the effect of physical and chemical characteristics of dental prosthesis and restorative material on oral biofilms, we discuss resin-based composites, glass ionomer cements, amalgams, dental alloys, ceramic, and dental implant material surface properties. In conclusion, each particular chemical composition (organic matrix, inorganic filler, fluoride, and various metallic ions) can enhance or inhibit biofilm formation. Irregular topography and rough surfaces provide favorable interface for bacterial colonization, protecting bacteria against shear forces during their initial reversible binding and biofilm formation. Moreover, the surface free energy, hydrophobicity, and surface-coating techniques, also have a significant influence on oral biofilms. However, controversies still exist in the current research for the different methods and models applied. In addition, more in situ studies are needed to clarify the role and mechanism of each surface parameter on oral biofilm development.
机译:口腔生物膜附着在口腔中的牙齿表面和牙科材料表面上。同时,口腔生物膜不仅是龋齿和牙周炎的发病机制,而且是继发性龋齿和种植体周围炎的病因,这将导致临床治疗失败。暴露在口腔条件下的材料表面由于其特定的物理和化学特性,可能会影响薄膜的涂层,初始细菌粘附和生物膜的形成。为了定义假牙和修复材料的物理和化学特性对口腔生物膜的影响,我们讨论了基于树脂的复合材料,玻璃离聚物水泥,汞齐,牙科合金,陶瓷和牙科植入物材料的表面性能。总之,每种特定的化学成分(有机基质,无机填料,氟化物和各种金属离子)都可以增强或抑制生物膜的形成。不规则的地形和粗糙的表面为细菌定居提供了良好的界面,从而在细菌最初的可逆结合和生物膜形成过程中保护细菌免受剪切力的影响。此外,表面自由能,疏水性和表面涂覆技术对口腔生物膜也有重要影响。但是,当前的研究仍然存在不同方法和模型的争议。另外,需要更多的原位研究来阐明每个表面参数在口腔生物膜发育中的作用和机理。

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