Unilever Oral Care, Quarry Road East, Bebington, Wirral, CH63 3JW, UK.
J Dent. 2010 Dec;38(12):974-9. doi: 10.1016/j.jdent.2010.08.010. Epub 2010 Aug 21.
To determine the effect of toothpaste concentration on enamel and dentine wear in vitro and to model the effects of toothpaste abrasion upon dilution during toothbrushing in vivo.
Polished human enamel/dentine specimens were indented with a Knoop diamond and the enamel-dentine junction profiled. Specimens were brushed for 1200s with toothpastes with differing relative dentine abrasivity (RDA), either Toothpaste A (RDA=90) or Toothpaste B (RDA=200), using a toothbrush mounted in a brushing machine. The toothpastes were dispersed in water and 1% sodium carboxymethyl cellulose to give a range of toothpaste concentrations. After brushing the Knoop indent length and the enamel-dentine step were remeasured and the wear to the enamel and dentine calculated. An equation for modelling the decrease in toothpaste concentration with brushing time was found using published in vivo data and used to estimate the level of dentine wear during in vivo brushing.
The mean enamel wear was in the range 0.03-0.11μm and there was only a small but non-significant (p>0.05) increase in enamel wear with toothpaste concentration. The mean dentine wear was in the range 0.28-27.63μm and the dentine wear increased significantly (p<0.05) with toothpaste concentration, with Toothpaste B giving more wear than Toothpaste A. Analysis with published in vivo data showed that 50% of dentine wear occurs in the first 20s of brushing and that the wear approaches a plateau value with brushing time as the toothpaste concentration is reduced.
Enamel wear increases only slightly with toothpaste concentration whereas dentine wear increases with toothpaste concentration.
确定牙膏浓度对体外牙釉质和牙本质磨损的影响,并模拟牙膏磨损在体内刷牙过程中稀释的影响。
用人造牙釉质/牙本质标本进行抛光,用克努普金刚石压痕,牙釉质-牙本质交界处进行轮廓处理。标本用牙刷在刷牙机上以 1200s 的速度刷用不同相对牙本质磨损(RDA)的牙膏,牙膏为牙膏 A(RDA=90)或牙膏 B(RDA=200)。牙膏在水中和 1%羧甲基纤维素钠中分散,得到一系列牙膏浓度。刷牙后,重新测量克努普压痕长度和牙釉质-牙本质台阶,并计算牙釉质和牙本质的磨损量。使用已发表的体内数据找到一个用于模拟刷牙过程中牙膏浓度随时间降低的方程,并用于估计体内刷牙过程中牙本质磨损的程度。
牙釉质磨损的平均值在 0.03-0.11μm 之间,牙膏浓度略有增加,但无统计学意义(p>0.05)。牙本质磨损的平均值在 0.28-27.63μm 之间,牙本质磨损随牙膏浓度显著增加(p<0.05),牙膏 B 的磨损大于牙膏 A。使用已发表的体内数据进行分析表明,牙本质磨损的 50%发生在刷牙的前 20s 内,随着牙膏浓度的降低,刷牙时间的增加使磨损逐渐接近平台值。
牙釉质磨损随牙膏浓度的增加略有增加,而牙本质磨损随牙膏浓度的增加而增加。