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间接盖髓材料对局部牙本质封闭的影响。

Effect of Indirect Pulp Capping Materials On Regional Dentin Seal.

作者信息

Frankenberger Roland, Michalowski Nora, Amend Stefanie, Lücker Susanne, Krämer Norbert

出版信息

J Adhes Dent. 2025 Jun 19;27:137-144. doi: 10.3290/j.jad.c_2109.

Abstract

PURPOSE

The aim of this in-vitro study was to evaluate the effect of different indirect pulp capping (IPC) materials on bond strength to surrounding dentin.

MATERIALS AND METHODS

Fifty-six human third molars were used in this study. Occlusal dentin of 42 teeth was exposed. Dentin surfaces (n = 6) were left uncovered (control) or received a 1 × 1 mm central IPC (KL: Kerr life, DY: Dycal, TC: Theracal LC, CL: Calcimol LC, BD: Biodentine, and PR: ProRoot MTA) and were then bonded with Scotchbond Universal adhesive and restored with a composite resin build-up (Filtek™ Z250). After 24 h of water storage, the specimens were cut into sticks, which were marked red (1 mm distance from IPC spot), green (2 mm distance), and blue (3 mm distance). Consequently, µ-TBS tests were performed and analyzed using one-way ANOVA (P 0.05) for normal distributions and Mann-Whitney U-test (P 0.05) for non-normal distributions. Pretesting failures were recorded as 0 MPa. Fracture modes were analyzed under a fluorescence microscope, and interfaces and surfaces of 14 additional specimens were visualized under a scanning electron microscope (SEM).

RESULTS

A significant reduction in peripheral seal was only observed for KL (Mann-Whitney U-test, P 0.05). All groups showed increasing bond strengths from the IPC area to the periphery, indicating a certain contamination potential of IPC materials.

CONCLUSION

IPC materials being applied in very deep cavity areas except Kerr Life do not harm peripheral seal to dentin. Especially, hydraulic cements can be used without a negative effect on the peripheral dentin seal.

摘要

目的

本体外研究的目的是评估不同间接盖髓(IPC)材料对与周围牙本质粘结强度的影响。

材料与方法

本研究使用了56颗人类第三磨牙。42颗牙齿的咬合面牙本质暴露。将牙本质表面(n = 6)不覆盖(对照)或进行1×1 mm的中央间接盖髓(KL: Kerr life,DY:Dycal,TC:Theracal LC,CL:Calcimol LC,BD:Biodentine,PR:ProRoot MTA),然后用Scotchbond通用粘结剂粘结,并用复合树脂堆塑(Filtek™ Z250)修复。储水24小时后,将标本切成小棒,标记为红色(距间接盖髓点1 mm距离)、绿色(2 mm距离)和蓝色(3 mm距离)。因此,进行微拉伸粘结强度(µ-TBS)测试,并对正态分布使用单因素方差分析(P < 0.05),对非正态分布使用曼-惠特尼U检验(P < 0.05)进行分析。预测试失败记录为0 MPa。在荧光显微镜下分析断裂模式,并在扫描电子显微镜(SEM)下观察另外14个标本的界面和表面。

结果

仅观察到KL组的边缘封闭性显著降低(曼-惠特尼U检验,P < 0.05)。所有组从间接盖髓区域到周边的粘结强度均增加,表明间接盖髓材料具有一定的污染可能性。

结论

除Kerr Life外,应用于非常深的窝洞区域的间接盖髓材料不会损害与牙本质的边缘封闭性。特别是,水硬性粘结剂的使用对周边牙本质封闭性没有负面影响。

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