Hosaka Keiichi, Nakajima Masatoshi, Yamauti Monica, Aksornmuang Juthatip, Ikeda Masaomi, Foxton Richard M, Pashley David H, Tagami Junji
Cariology and Operative Dentistry, Department of Restorative Sciences, Tokyo Medical and Dental University, 1-5-45 Yushima, Bunkyo-ku, Tokyo 113-8549, Japan.
J Dent. 2007 Mar;35(3):207-13. doi: 10.1016/j.jdent.2006.08.001. Epub 2006 Sep 20.
To evaluate the durability of all-in-one adhesive systems bonded to dentine with and without simulated hydrostatic pulpal pressure (PP).
Flat dentine surfaces of extracted human molars were prepared. Two all-in-one adhesive systems, One-Up Bond F (OBF) (Tokuyama Corp., Tokyo, Japan), and Fluoro Bond Shake One (FBS) (Shofu Co., Kyoto, Japan) were applied to the dentine surfaces under either a PP of 0 or 15cm H(2)O. Then, resin composite build-ups were made. The specimens bonded under pressure were stored in 37 degrees C water for 24h, 1 and 3 months under 15cm H(2)O PP. Specimens not bonded under pressure were stored under zero PP. After storage, the specimens were sectioned into slabs that were trimmed to hourglass shapes and subjected to micro-tensile bond testing (muTBS). The data were analysed using two-way ANOVA and Holm-Sidak HSD multiple comparison tests (alpha=0.05).
The muTBS of OBF fell significantly (p<0.05) when PP was applied during bonding and storage, regardless of storage time. In contrast, although the muTBS of OBF specimens bonded and stored without hydrostatic pressure storage fell significantly over the 3 months period, the decrease was less than half as much as specimens stored under PP. In FBS bonded specimens, although there was no significant difference between the muTBS with and without hydrostatic pulpal pressure at 24h, by 1 and 3 months of storage under PP, significant reductions were seen compared with the control group without PP.
The muTBS of OBF bonded specimens was lowered more by simulated PP than by storage time; specimens bonded with FBS were not sensitive to storage time in the absence of PP, but showed lower bond strengths at 1 and 3 months in the presence of PP.
评估在有和没有模拟静水压牙髓压力(PP)的情况下,一体式粘结系统与牙本质粘结的耐久性。
制备拔除的人磨牙的平坦牙本质表面。将两种一体式粘结系统,即单组分粘结剂F(OBF)(日本东京德山公司)和氟粘结剂震荡单组分(FBS)(日本京都松风公司),分别在0或15cm H₂O的PP下应用于牙本质表面。然后,进行树脂复合材料堆塑。在压力下粘结的标本在37℃水中,在15cm H₂O PP下储存24小时、1个月和3个月。未在压力下粘结的标本在零PP下储存。储存后,将标本切成薄片,修整成沙漏形状,并进行微拉伸粘结测试(μTBS)。使用双向方差分析和霍尔姆·西达克HSD多重比较检验(α = 0.05)分析数据。
无论储存时间如何,在粘结和储存过程中施加PP时,OBF的μTBS均显著下降(p < 0.05)。相比之下,尽管在没有静水压力储存的情况下粘结和储存的OBF标本的μTBS在3个月内显著下降,但下降幅度不到在PP下储存标本的一半。在FBS粘结的标本中,尽管在24小时时,有和没有静水压牙髓压力的μTBS之间没有显著差异,但在PP下储存1个月和3个月后,与没有PP的对照组相比,显著降低。
模拟PP对OBF粘结标本的μTBS的降低作用大于储存时间;在没有PP的情况下,用FBS粘结的标本对储存时间不敏感,但在有PP的情况下,在1个月和3个月时粘结强度较低。