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Nanoscale Characterisation of Salivary Pellicle

机译:唾液囊的纳米级表征

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Salivary pellicle is an organic biofilm formed by the physisorption of proteins and carbohydrates onto the surface of dental enamel exposed to the oral environment. The pellicle has several key roles in oral physiology including lubrication and reduction of friction between teeth during mastication, as well as chemical protection of the enamel against acidic solutions. However, pellicle proteins are known to react with dietary compounds to cause extrinsic staining on the tooth surface. In this study, nanoindentation and AFM have been used in vitro to examine the acquired salivary pellicle formed in vivo on dental enamel. The mechanical properties, growth, structure and morphology of pellicle grown in vivo on human enamel surfaces have been analysed. In addition, the effects of dietary agents such as polyphenols on the pellicle's morphology and properties have been studied. It was found that initial adsorption of proteins on the enamel surface occurred within 30 seconds of exposure to the oral cavity, with full growth achieved within 2 hours. Differences in the properties of the pellicles such as surface adhesion, and time dependent effects due to polyphenol interaction were measured using nanoindentation. It was seen that the polyphenol interaction has a significant effect on these properties. These results suggest that the stained pellicle is mechanically stiffer, but also less viscous and more fluid like. This could explain why traditional tooth brushing techniques do not efficiently remove this layer.
机译:唾液薄膜是一种有机生物膜,是通过蛋白质和碳水化合物在口腔环境下的牙釉质表面上的物理吸附而形成的。防护膜在口腔生理中具有多个关键作用,包括润滑和减少咀嚼过程中牙齿之间的摩擦,以及瓷釉对酸性溶液的化学保护。然而,已知防护膜蛋白会与饮食化合物发生反应,从而在牙齿表面造成外在的污染。在这项研究中,纳米压痕和原子力显微镜已用于体外检查牙釉质体内形成的唾液膜。已经分析了在人牙釉质表面上体内生长的防护膜的机械性能,生长,结构和形态。另外,已经研究了饮食剂如多酚对防护膜的形态和性质的影响。已经发现,蛋白质在牙釉质表面的最初吸附发生在暴露于口腔的30秒内,并且在2小时内达到了完全生长。使用纳米压痕技术测量了防护膜性能的差异,例如表面附着力以及由于多酚相互作用而产生的时间依赖性效应。可以看出,多酚相互作用对这些性能具有显着影响。这些结果表明,被染色的防护膜在机械上较硬,但粘性较小,流体较多。这可以解释为什么传统的刷牙技术不能有效地去除该层。

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