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铒钇铝石榴石激光对牙釉质进行预处理对新型亲水性封闭剂——UltraSeal XT hydro微渗漏的影响。

The impact of Er:YAG laser enamel conditioning on the microleakage of a new hydrophilic sealant--UltraSeal XT hydro.

作者信息

Güçlü Z A, Dönmez N, Tüzüner T, Odabaş M E, Hurt A P, Coleman N J

机构信息

Diş Hekimliği Fakültesi Pedodonti, Erciyes Üniversitesi, ABD 38039, Melikgazi, Kayseri, Turkey.

Bezmialem Vakıf Üniversitesi, Diş Hastalıkları ve Tedavisi, ABD Adnan Menderes Bulvarı Vatan Caddesi, 34093, Fatih, İstanbul, Turkey.

出版信息

Lasers Med Sci. 2016 May;31(4):705-11. doi: 10.1007/s10103-016-1878-y. Epub 2016 Mar 10.

Abstract

UltraSeal XT hydro is a new hydrophilic, light-cured, methacrylate-based pit and fissure sealant which has been developed by Ultradent Products, USA. The sealant is highly filled with a 53 wt.% mixture of inorganic particles which confer both thixotropy and radiopacity. The principal purpose of this study was to investigate the microleakage of UltraSeal XT hydro as a function of different enamel etching techniques. The occlusal surfaces of sound, extracted human molars were either acid etched, Er:YAG laser irradiated or successively laser irradiated and acid etched. UltraSeal XT hydro was applied to each group of teeth (n = 10) which were subjected to a thermocycling process consisting of 2500 cycles between 5 and 50 °C with a dwell time of 30 s. Microleakage assessments were then carried out using 0.5% fuchsin dye and optical microscopy. The microleakage score data were analysed using the Kruskal-Wallis, Mann-Whitney U test with Bonferroni adjustment. No significant differences in microleakage were noted between the individually acid etched and laser-irradiated groups (p > 0.05); however, teeth treated with a combination of laser irradiation and acid etching demonstrated significantly lower microleakage scores (p < 0.001). Electron microscopy with energy-dispersive X-ray analysis revealed that the mineral filler component of UltraSeal XT hydro essentially comprises micrometre-sized particles of inorganic silicon-, aluminium- and barium-bearing phases. Laser etching increases the roughness of the enamel surface which causes a concentrated zoning of the filler particles at the enamel-sealant interface.

摘要

UltraSeal XT hydro是美国Ultradent Products公司研发的一种新型亲水性、光固化、基于甲基丙烯酸酯的窝沟封闭剂。该封闭剂高度填充了53 wt.%的无机颗粒混合物,赋予其触变性和射线不透性。本研究的主要目的是研究UltraSeal XT hydro的微渗漏与不同釉质酸蚀技术的关系。对完好的离体人磨牙的咬合面进行酸蚀、铒钇铝石榴石(Er:YAG)激光照射或先激光照射再酸蚀处理。将UltraSeal XT hydro应用于每组牙齿(n = 10),然后对其进行热循环处理,即在5至50°C之间进行2500次循环,每次停留时间为30秒。随后使用0.5%品红染料和光学显微镜进行微渗漏评估。使用Kruskal-Wallis检验、Mann-Whitney U检验并进行Bonferroni校正对微渗漏评分数据进行分析。单独酸蚀组和激光照射组之间的微渗漏无显著差异(p > 0.05);然而,激光照射和酸蚀联合处理的牙齿微渗漏评分显著更低(p < 0.001)。能量色散X射线分析电子显微镜显示,UltraSeal XT hydro的矿物填料成分主要由含无机硅、铝和钡相的微米级颗粒组成。激光蚀刻增加了釉质表面的粗糙度,导致填料颗粒在釉质-封闭剂界面处集中分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/325d/4851705/d5be1bf9ab07/10103_2016_1878_Fig1_HTML.jpg

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