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不同氟化物凝胶和 CO2 激光处理后被侵蚀牙釉质的渗透性。

Permeability of eroded enamel following application of different fluoride gels and CO2 laser.

机构信息

Department of Restorative Dentistry, Ribeirão Preto School of Dentistry-USP, Avenida do Café, SN Monte Alegre, CEP 14040-904, Ribeirão Preto, São Paulo, Brazil.

出版信息

Lasers Med Sci. 2013 Jan;28(1):235-40. doi: 10.1007/s10103-012-1123-2. Epub 2012 May 26.

Abstract

This study evaluated the combined effect of fluoride compounds and CO(2) laser in controlling the permeability of eroded enamel. Bovine enamel slabs (3 × 2 mm) were cycled twice through an alternating erosion and remineralization regimen. Slabs were immersed in 20 ml of orange juice (pH 3.84) for 5 min under agitation, rinsed with deionized water, and stored in artificial saliva for 4 h to form erosive lesions. Specimens were then divided into four groups (n = 10), which were treated for 1 min with either a control or with one of the following gels: amine fluoride (AmF), titanium tetrafluoride (TiF(4)), or sodium fluoride (NaF). Half of the specimens were irradiated with a CO(2) laser (λ = 10.6 μm; 2.0 W). Specimens were cycled two more times through the aforementioned erosion-remineralization regimen and were subjected to permeability assessment. ANOVA demonstrated a significant interaction between fluoride and laser treatment (p = 0.0152). Tukey's test showed that when fluoride was applied alone, TiF(4) resulted in lower enamel permeability than that observed after application of the placebo gel. Intermediate permeability values were noted after NaF and AmF had been used. A significant reduction in enamel permeability was obtained when fluoride was combined with CO(2) laser treatment, with no difference between fluoride gels. Permeability of eroded enamel may be reduced by combining the application of fluoride gels with CO(2) laser irradiation.

摘要

本研究评估了氟化物化合物和 CO₂ 激光联合控制脱矿釉质渗透性的效果。牛牙釉质板(3×2mm)经过两次交变酸蚀和再矿化处理循环。釉质板在搅拌下浸入 20ml 橙汁(pH3.84)中 5 分钟,用去离子水冲洗,然后储存在人工唾液中 4 小时以形成侵蚀性病变。然后将标本分为四组(n=10),用对照凝胶或以下凝胶之一处理 1 分钟:胺氟化物(AmF)、四氟化钛(TiF₄)或氟化钠(NaF)。一半的标本用 CO₂ 激光(λ=10.6μm;2.0W)照射。标本再经过两次上述酸蚀-再矿化处理循环,并进行渗透性评估。方差分析显示氟化物和激光处理之间存在显著的相互作用(p=0.0152)。Tukey 检验表明,当单独使用氟化物时,TiF₄ 导致的釉质渗透性低于安慰剂凝胶处理后的渗透性。使用 NaF 和 AmF 后,渗透性值处于中间水平。当氟化物与 CO₂ 激光处理联合使用时,釉质渗透性显著降低,而氟化物凝胶之间没有差异。将氟化物凝胶的应用与 CO₂ 激光照射相结合,可能会降低脱矿釉质的渗透性。

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