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酒精刺激对人牙釉质表面唾液膜形成及其润滑性能的影响。

Effect of alcohol stimulation on salivary pellicle formation on human tooth enamel surface and its lubricating performance.

机构信息

Tribology Research Institute, Key Laboratory of Advanced Technologies of Materials, Ministry of Education, Southwest Jiaotong University, Chengdu 610031, China.

School of Life Science and Engineering, Southwest Jiaotong University, Chengdu, 610031, China.

出版信息

J Mech Behav Biomed Mater. 2017 Nov;75:567-573. doi: 10.1016/j.jmbbm.2017.05.029. Epub 2017 May 22.

Abstract

This study was to investigate the salivary pellicle formation on the surface of human tooth enamel and its lubricating behavior under alcohol stimulation. Normal saliva and alcohol-stimulated saliva were collected from a young male volunteer after rinsing mouth with deionized water and different-concentration alcohol aqueous solution, respectively. Saliva-adsorption treatment was conducted in vitro on enamel surface to obtain salivary pellicle. Microscopic examinations and lubrication testing of salivary pellicle were performed by nanoscratch technology. Given that the pellicle lubricating properties are closely associated with its adhesion strength to substrates, the adhesion force between salivary pellicle and enamel was measured using an Atomic Force Microscopy. Compared with normal salivary pellicle, the salivary pellicle obtained from alcohol-stimulated saliva was not uniform anymore and even without any orderly multi-layer structure. Although alcohol stimulation improved the pellicle bonding to enamel surface, it caused the pellicle lubrication worse. In sum, the lubricating performance of salivary pellicle was more dependent on its orderly multi-layer structure from salivary protein self-assembly than its adhesion strength to enamel.

摘要

本研究旨在探究人牙釉质表面唾液膜的形成及其在酒精刺激下的润滑行为。实验中,一位年轻男性志愿者用去离子水和不同浓度的酒精水溶液漱口后,分别收集正常唾液和酒精刺激唾液。通过体外对牙釉质表面进行唾液吸附处理,获得唾液膜。采用纳米划痕技术对唾液膜进行微观检查和润滑测试。由于膜的润滑性能与其对基底的粘附强度密切相关,因此使用原子力显微镜测量唾液膜与牙釉质之间的粘附力。与正常唾液膜相比,由酒精刺激唾液获得的唾液膜不再均匀,甚至没有任何有序的多层结构。尽管酒精刺激增强了膜对牙釉质表面的结合,但也导致了膜的润滑性能变差。总之,唾液膜的润滑性能更多地取决于其由唾液蛋白自组装形成的有序多层结构,而不是其对牙釉质的粘附强度。

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