Dhingra V, Taneja S, Kumar M, Kumari M
Oper Dent. 2014 Jan-Feb;39(1):E9-15. doi: 10.2341/12-349-L. Epub 2013 Jun 26.
This study evaluated the influence of fiber inserts, type of composites, and location of the gingival seat on microleakage in Class II resin composite restorations. Fifty noncarious human third molars were selected for the study. Standardized Class II box type cavities were prepared on the mesial and distal side of 45 teeth. The gingival margin was placed above the cementoenamel junction (CEJ) on the mesial side and below the CEJ on the distal side. The remaining five teeth received no cavity preparations. The prepared samples were divided randomly on the basis of type of composite and presence or absence of fiber inserts, into four experimental groups of 10 teeth each and two control groups of five teeth each. The groups were defined as follows: group I (n=10) - Z350 XT; group II (n=10) - Z350 XT with fibers; group III (n=10) - P90; group IV (n=10) - P90 with fibers; and group V (n=5) - positive controls, cavities were not restored; group VI (n=5) - negative controls, no cavities were prepared. The samples were stored in distilled water in incubator at 37°C for 24 hours and then subjected to 500 cycles of thermocycling (5°C and 55°C) with a dwell time of 15 seconds. They were then placed in a 2% methylene blue dye solution for 24 hours at 37°C. Samples were sectioned longitudinally and evaluated for microleakage at the occlusal and gingival margin under a stereomicroscope at 20× magnification. Kruskal-Wallis and Mann-Whitney U-tests were used to compare the mean leakage scores. Restorations with gingival margins in enamel showed significantly less microleakage. Significant reduction in microleakage was observed in groups restored with P90 composite than those restored with Z350 XT. No improvement in microleakage was observed with the use of fiber inserts (p>0.05).
本研究评估了纤维桩、复合树脂类型以及龈缘位置对Ⅱ类树脂复合树脂修复体微渗漏的影响。选取50颗无龋坏的人类第三磨牙用于本研究。在45颗牙齿的近中面和远中面制备标准化的Ⅱ类箱型洞。龈缘位于近中面的釉牙骨质界(CEJ)上方,远中面的CEJ下方。其余5颗牙齿未制备洞型。制备好的样本根据复合树脂类型以及是否有纤维桩随机分为4个实验组,每组10颗牙齿,2个对照组,每组5颗牙齿。分组如下:第一组(n = 10)——Z350 XT;第二组(n = 10)——含纤维的Z350 XT;第三组(n = 10)——P90;第四组(n = 10)——含纤维的P90;第五组(n = 5)——阳性对照,洞未修复;第六组(n = 5)——阴性对照,未制备洞型。样本在37℃的培养箱中于蒸馏水中储存24小时,然后进行500次热循环(5℃和55℃),每次停留时间为15秒。随后将其置于37℃的2%亚甲蓝染料溶液中24小时。样本纵向切开,在20倍放大的体视显微镜下评估咬合面和龈缘处的微渗漏情况。采用Kruskal-Wallis检验和Mann-Whitney U检验比较平均渗漏分数。龈缘位于釉质内的修复体微渗漏明显较少。与用Z350 XT修复的组相比,用P90复合树脂修复的组微渗漏显著减少。使用纤维桩未观察到微渗漏改善(p>0.05)。