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首页> 外文期刊>Journal of dentistry >The addition of nano-sized hydroxyapatite to a sports drink to inhibit dental erosion: in vitro study using bovine enamel.
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The addition of nano-sized hydroxyapatite to a sports drink to inhibit dental erosion: in vitro study using bovine enamel.

机译:在运动饮料中添加纳米羟基磷灰石以抑制牙齿腐蚀:使用牛珐琅质的体外研究。

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摘要

OBJECTIVES: This study examined the dental erosion and demineralization potential of a sports drink containing nano-sized hydroxyapatite (nano-HA) as an additive. METHODS: The experimental solutions were Powerade (PA) alone and PA with 0.05%, 0.10%, and 0.25% nano-HA. The pH, titratable acidity, and calcium and phosphate content of each solution were analysed, and the degree of saturation with respect to the dental enamel (DS(En)) was obtained. Twelve sound bovine enamel specimens for each group were treated in accordance with the pH-cycling schedule which had 60min treatment with experimental solution per day for 7 days. The erosion potential was determined from the changes in surface micro hardness (SMH), the depths of erosion and demineralized layer using confocal laser scanning microscopy (CLSM), and the morphological changes to the tooth surface were examined with scanning electron microscopy (SEM) after pH-cycling. RESULTS: pH and DS(En) increased with increasing nano-HA concentration in the drinks, whereas the titratable acidity decreased. There were significant differences in the SMH between the PA alone and >0.10% nano-HA groups (p<0.001). Although the PA alone group showed a pronounced erosion depth, CLSM showed no erosion depth in 0.25% nano-HA group. SEM showed an intact surface with increasing nano-HA concentration in the drinks. In conclusion, dental erosion was effectively prevented with increase of adding concentration of nano-HA, and a sports drink containing 0.25% nano-HA might prevent dental erosion.
机译:目的:这项研究检查了含有纳米羟基磷灰石(nano-HA)作为添加剂的运动饮料的牙齿腐蚀和脱矿质的潜力。方法:实验溶液分别为Powerade(PA)和含有0.05%,0.10%和0.25%纳米HA的PA。分析每种溶液的pH,可滴定酸度以及钙和磷酸盐含量,并获得相对于牙釉质的饱和度(DS(En))。每组十二个声音牛牙釉质标本按照pH循环方案进行处理,每天用实验溶液处理60分钟,共7天。根据表面显微硬度(SMH)的变化,使用共聚焦激光扫描显微镜(CLSM)的腐蚀深度和去矿质层的深度确定腐蚀电位,并在扫描后用扫描电子显微镜(SEM)检查牙齿表面的形态变化pH循环。结果:pH和DS(En)随饮料中纳米HA浓度的增加而增加,而可滴定酸度下降。单独的PA和> 0.10%的纳米HA组之间的SMH有显着差异(p <0.001)。尽管仅PA组显示出明显的腐蚀深度,但CLSM在0.25%纳米HA组中未显示腐蚀深度。 SEM显示饮料中纳米HA浓度增加的完整表面。总之,通过增加纳米HA的添加浓度可以有效地预防牙齿腐蚀,而含有0.25%纳米HA的运动饮料可以预防牙齿腐蚀。

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