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即刻和延迟的根管封闭剂与修复材料之间的剪切粘结强度评估:一项实验研究。

Immediate and delayed shear bond strength evaluation between root canal sealers and restorative materials: an experimental study.

机构信息

Department of Restorative Dental Science, College of Dentistry, Taibah University, Madinah, Saudi Arabia.

Department of Operative Dentistry, Faculty of Dentistry, Ain Shams University, Cairo, Egypt.

出版信息

BMC Oral Health. 2024 Oct 14;24(1):1217. doi: 10.1186/s12903-024-04993-1.

Abstract

BACKGROUND

Several calcium silicate-based sealers have recently emerged in endodontics. This study aimed to compare the immediate and delayed shear bond strength between the bioceramic and calcium hydroxide-based sealers and different resin-based restorative materials.

METHODS

One hundred and twenty specimens with a 3-mm depth and a 3-mm diameter were prepared. They were evenly divided into two groups, the bioceramic sealer and calcium hydroxide-based sealer groups. Each primary group was subdivided into two subgroups based on the restorative material used; i.e., the flowable resin composite and resin-modified glass ionomer subgroups. Moreover, each subgroup was further divided into the restoration process's timing: either immediately post-sealing or delayed after setting the sealers for seven days. The mode of failure was assessed by stereomicroscopic examination.

RESULTS

The highest shear bond strength was found when the bioceramic sealer was used and restored with the flowable resin composite. The strengths were 8.45 (1.17) and 6.67 (1.60) megapascals (MPa) in the immediate and delayed restoration groups, respectively. In contrast, the lowest strength, 2.91 (1.22) MPa, was recorded when calcium hydroxide-based sealer was employed and restored after allowing the sealer to set completely with resin-modified glass ionomer. Notably, there were no cohesive fractures within the tested restorative materials. All observed fractures occurred within the sealer materials, at the interface of the sealer and restorative material, or in combination. Moreover, the most common failure was a mixed failure.

CONCLUSIONS

When flowable resin composite was used immediately before complete setting, bioceramic sealers showed a higher bond strength than calcium hydroxide-based sealers.

摘要

背景

近年来,几种基于硅酸钙的密封剂在牙髓学中出现。本研究旨在比较生物陶瓷基密封剂和基于氢氧化钙的密封剂与不同的树脂基修复材料之间的即时和延迟剪切粘结强度。

方法

制备了 120 个具有 3mm 深度和 3mm 直径的样本。它们被均匀地分为两组,生物陶瓷密封剂组和基于氢氧化钙的密封剂组。每个主要组根据使用的修复材料进一步细分为两个亚组;即,流动树脂复合材料和树脂改性玻璃离子亚组。此外,每个亚组根据密封剂的设置时间进一步分为即时修复或延迟修复,延迟修复是在密封剂设置七天后进行。通过体视显微镜检查评估失效模式。

结果

当使用生物陶瓷密封剂并用流动树脂复合材料进行修复时,发现剪切粘结强度最高。即时修复组和延迟修复组的强度分别为 8.45(1.17)和 6.67(1.60)兆帕(MPa)。相比之下,当使用基于氢氧化钙的密封剂并用树脂改性玻璃离子完全固化后进行修复时,记录到的强度最低,为 2.91(1.22)MPa。值得注意的是,在测试的修复材料中没有发生内聚性断裂。所有观察到的断裂都发生在密封材料内、密封材料与修复材料的界面处或两者的组合处。此外,最常见的失效类型是混合失效。

结论

当流动树脂复合材料在完全固化之前立即使用时,生物陶瓷密封剂的粘结强度高于基于氢氧化钙的密封剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/615a/11475602/caba44d6f23d/12903_2024_4993_Fig1_HTML.jpg

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