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首页> 外文期刊>Journal of dentistry >Morphological and chemical characterization of tooth enamel exposed to alkaline agents.
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Morphological and chemical characterization of tooth enamel exposed to alkaline agents.

机译:暴露于碱性剂中的牙釉质的形态和化学特征。

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摘要

OBJECTIVES: In this study, morphological and chemical changes in teeth enamel exposed to alkaline agents, with or without surfactants, have been investigated. In addition, chemical effects of the organic surface layer, i.e. plaque and pellicle, were also investigated. METHODS: The present study was conducted using several techniques: Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD) and scanning electron microscopy (SEM). RESULTS: From XPS-measurements, it was found that exposure to alkaline solutions resulted in a massive removal of carbon from the tooth surface, and that the addition of surfactants increased the rate under present conditions. Based on the results from the FTIR-analysis, no substitution reactions between phosphate, carbonate and hydroxide ions in the enamel apatite could be detected. From a minor SEM-analysis, degradation and loss of substance of the enamel surface was found for the exposed samples. From XRD-analysis, no changes in crystallinity of the enamel apatite could be found between the samples. CONCLUSIONS: The findings in this study show that exposure to alkaline solutions results in a degradation of enamel surfaces very dissimilar from acidic erosion. No significant erosion or chemical substitution of the apatite crystals themselves could be discerned. However, significant loss of organic carbon at the enamel surface was found in all exposed samples. The degradation of the protective organic layer at the enamel surface may profoundly increase the risk for caries and dental erosion from acidic foods and beverages.
机译:目的:在这项研究中,研究了在有或没有表面活性剂的情况下,暴露于碱性剂的牙齿珐琅质的形态和化学变化。另外,还研究了有机表面层即斑块和表膜的化学作用。方法:本研究使用几种技术进行:傅立叶变换红外光谱(FTIR),X射线光电子能谱(XPS),X射线衍射(XRD)和扫描电子显微镜(SEM)。结果:从XPS测量中发现,暴露于碱性溶液可导致牙齿表面大量去除碳,在当前条件下添加表面活性剂可提高牙齿清除率。根据FTIR分析的结果,在搪瓷磷灰石中未检测到磷酸根,碳酸根和氢氧根离子之间的取代反应。通过较小的SEM分析,发现暴露样品的搪瓷表面物质降解和损失。通过XRD分析,在样品之间未发现搪瓷磷灰石的结晶度变化。结论:这项研究的结果表明,暴露于碱性溶液会导致搪瓷表面的降解与酸性腐蚀完全不同。不能发现磷灰石晶体本身的明显腐蚀或化学取代。但是,在所有暴露的样品中,搪瓷表面的有机碳均大量损失。牙釉质表面有机保护层的降解可能会大大增加酸性食品和饮料引起龋齿和牙齿腐蚀的风险。

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