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“单一饮品”条件下人类和牛牙釉质的侵蚀情况。

Human and bovine enamel erosion under 'single-drink' conditions.

作者信息

White Andrew J, Yorath Celyn, ten Hengel Valerie, Leary Sam D, Huysmans Marie-Charlotte D N J M, Barbour Michele E

机构信息

School of Oral & Dental Sciences, University of Bristol, Bristol, UK.

出版信息

Eur J Oral Sci. 2010 Dec;118(6):604-9. doi: 10.1111/j.1600-0722.2010.00779.x. Epub 2010 Sep 30.

Abstract

Tooth-surface pH is lowered, during drinking, to a value close to the pH of the drink itself. After the drink is swallowed, the pH rises to baseline values but this process can take several minutes. Few techniques can quantify enamel erosion at timescales representative of single drinks. The objective of this study was to compare human and bovine erosion over acid-exposure times of 2 s to 1 h. Human and bovine enamel softening was compared in vitro using nanoindentation (2-60 s of exposure to acid) and tissue loss was compared using optical profilometry (1-60 min of exposure to acid). Nanoindentation revealed statistically significant softening after 2 s (human) and 5 s (bovine); there were no significant differences in hardness reduction for the two tissues at any time-point. Profilometry demonstrated statistically significant tissue loss after 20 min (human) and 10 min (bovine); bovine tissue loss progressed 30% faster than human tissue loss. These results support the use of bovine enamel as a substitute for human enamel in erosion studies, with the understanding that for moderate exposure times bovine enamel erodes 30% faster than human enamel. Nanoindentation can be used to detect enamel dissolution at timescales comparable to the oral dwell-time of a single 'mouthful' of a beverage.

摘要

在饮用过程中,牙齿表面的pH值会降低至接近饮品本身的pH值。饮品咽下后,pH值会回升至基线水平,但这一过程可能需要几分钟。很少有技术能够在代表单次饮品饮用时间尺度上对牙釉质侵蚀进行量化。本研究的目的是比较人类和牛牙釉质在2秒至1小时酸暴露时间内的侵蚀情况。使用纳米压痕技术(酸暴露2 - 60秒)在体外比较人类和牛牙釉质的软化情况,并使用光学轮廓仪(酸暴露1 - 60分钟)比较组织损失。纳米压痕显示,2秒(人类)和5秒(牛)后出现统计学上显著的软化;在任何时间点,两种组织的硬度降低均无显著差异。轮廓仪显示,20分钟(人类)和10分钟(牛)后出现统计学上显著的组织损失;牛组织损失的进展比人类组织损失快30%。这些结果支持在侵蚀研究中使用牛牙釉质替代人类牙釉质,但要理解的是,在适度暴露时间下,牛牙釉质的侵蚀速度比人类牙釉质快30%。纳米压痕可用于在与一口饮料在口腔中停留时间相当的时间尺度上检测牙釉质溶解情况。

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