Kitayama Shuzo, Pilecki Peter, Nasser Nasser A, Bravis Theodora, Wilson Ron F, Nikaido Toru, Tagami Junji, Watson Timothy F, Foxton Richard M
Cariology and Operative Dentistry, Department of Restorative Science, Graduate School, Tokyo Medical and Dental University, Bunkyo-ku, Tokyo, Japan.
Eur J Oral Sci. 2009 Aug;117(4):454-62. doi: 10.1111/j.1600-0722.2009.00653.x.
This study investigated the effect of resin coating and occlusal loading on adhesion and microleakage of all-ceramic crowns. Molars were prepared for an all-ceramic crown and were divided into two groups: non-coated (control) and resin-coated with Clearfil Tri-S Bond. Crowns were fabricated using CEREC 3 and cemented using Clearfil Esthetic Cement. After 24 h of storage in water, the restored teeth in each group were divided into two subgroups: unloaded, or loaded while stored in water. Mechanical loading was achieved with an axial force of 80 N at 2.5 cycles s(-1) for 250,000 cycles. After immersion in Rhodamine B, the specimens were sectioned and processed for microleakage evaluation by confocal microscopy, which was followed by further sectioning for microtensile bond testing. Loading had no significant effect on microleakage in either the resin-coated or non-resin-coated groups. Resin coating did not reduce the microleakage at the dentine interface but increased the microleakage at the enamel interface. All the beams fractured during slicing when non-coated and loaded. The bond strengths of non-coated and unloaded, resin-coated and unloaded, and resin-coated and loaded groups were 15.82 +/- 4.22, 15.17 +/- 5.24, and 12.97 +/- 5.82 MPa, respectively. Resin coating with Clearfil Tri-S Bond improved the bonding of resin cement to dentine for loaded specimens. However, it was not effective in reducing the microleakage, regardless of whether it was loaded or unloaded.
本研究调查了树脂涂层和咬合加载对全瓷冠粘结及微渗漏的影响。制备用于全瓷冠的磨牙,并将其分为两组:未涂层(对照组)和用Clearfil Tri-S Bond树脂涂层。使用CEREC 3制作全瓷冠,并使用Clearfil Esthetic Cement粘结。在水中储存24小时后,每组修复后的牙齿再分为两个亚组:未加载组,或在水中储存时加载组。通过在2.5次/秒的频率下施加80 N的轴向力持续250,000次循环来实现机械加载。浸入罗丹明B后,将标本切片并通过共聚焦显微镜进行微渗漏评估,随后进一步切片进行微拉伸粘结测试。加载对树脂涂层组和非树脂涂层组的微渗漏均无显著影响。树脂涂层并未降低牙本质界面处的微渗漏,但增加了釉质界面处的微渗漏。未涂层且加载的所有梁在切片过程中均发生断裂。未涂层未加载组、树脂涂层未加载组以及树脂涂层加载组的粘结强度分别为15.82±4.22、15.17±5.24和12.97±5.82 MPa。用Clearfil Tri-S Bond进行树脂涂层可改善加载标本中树脂粘结剂与牙本质的粘结。然而,无论加载与否,其在减少微渗漏方面均无效。