Mirhashemi Amir Hossein, Hakimi Sina, Ahmad Akhoundi Mohammad Sadegh, Chiniforush Nasim
Dental Research Center, Dentistry Research Institute, Department of Orthodontics, Tehran University of Medical Sciences, Tehran, Iran.
Azad University, Tehran, Iran.
J Lasers Med Sci. 2016 Summer;7(3):192-196. doi: 10.15171/jlms.2016.33. Epub 2016 Jul 18.
The aim of this study was to assess the caries-preventive potential of carbon dioxide (CO) laser application in conjunction with the use of titanium tetra fluoride solution on the enamel adjacent to bracket. Seventy-five freshly extracted bovine incisors were used. In order to attach the brackets, the area of examination was covered with adhesive tape to limit acid etching of the entire enamel surface. Metal orthodontic brackets for upper central were bonded to all the teeth following the manufacturer's instruction. Then all the teeth were painted with 2 layers of acid-resistant nail varnish on all surfaces except the boxes area cervical to the brackets. The teeth were then randomly divided into five groups (n = 15): control group (C); laser group (L); titanium group (T); laser-titanium group (LT) and titanium-laser group (TL). The laser-titanium group was first irradiated with CO laser (same as the L group) then TiF4 solution was applied on the enamel (same as the T group). Samples in the TL group were first treated with TiF4 solution (same as the T group) and then irradiated with CO laser on the surface (same as the L group). Then, the teeth were immersed in pH-cycling solutions. After that, the amount of calcium released into the two solutions (de- and re-mineralization) was measured with an atomic absorption spectroscopy. The data were analyzed by one-way Analysis of var-iance (ANOVA) and Tukey test. Calcium loss in LT, TL and T groups were significantly lower than those in the L and C groups ( < 0.05). The application of Titanium tetra fluoride 4% solution on enamel can inhibit as much as 87% of subsequent caries like lesion progression.
本研究的目的是评估二氧化碳(CO)激光联合使用四氟化钛溶液对托槽附近牙釉质的防龋潜力。使用了75颗新鲜拔除的牛切牙。为了粘贴托槽,用胶带覆盖检查区域,以限制对整个牙釉质表面的酸蚀。按照制造商的说明,将上颌中切牙的金属正畸托槽粘结到所有牙齿上。然后,除托槽颈部的盒状区域外,在所有牙齿的所有表面涂上两层耐酸指甲油。然后将牙齿随机分为五组(n = 15):对照组(C);激光组(L);钛组(T);激光 - 钛组(LT)和钛 - 激光组(TL)。激光 - 钛组先接受CO激光照射(与L组相同),然后在牙釉质上应用TiF4溶液(与T组相同)。TL组的样本先用TiF4溶液处理(与T组相同),然后在表面接受CO激光照射(与L组相同)。然后,将牙齿浸入pH循环溶液中。之后,用原子吸收光谱法测量释放到两种溶液中的钙量(脱矿和再矿化)。数据通过单因素方差分析(ANOVA)和Tukey检验进行分析。LT、TL和T组的钙流失明显低于L组和C组(P < 0.05)。4%的四氟化钛溶液应用于牙釉质可抑制高达87%的后续龋样病变进展。