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粘结强度和牙髓覆盖材料对牙本质的适应性。

Bond strength and adaptation of pulp capping materials to dentin.

机构信息

Department of Restorative Dentistry, Faculty of Dentistry, Recep Tayyip Erdogan University, Rize, Turkey.

出版信息

Microsc Res Tech. 2020 May;83(5):514-522. doi: 10.1002/jemt.23440. Epub 2020 Jan 8.

DOI:10.1002/jemt.23440
PMID:31912929
Abstract

This study evaluated the shear bond strength (SBS) and internal marginal adaptation of pulp-capping materials to dentin. Flat occlusal deep dentin surfaces were produced and randomly assigned to two groups (sound or artificial caries-affected dentin). The specimens in each group were assigned to one of seven subgroups according to the materials used: Biodentine, Theracal LC, Ultra-Blend plus, Calcimol LC, ApaCal ART, EQUIA Forte, and Ionoseal. Buildups (3-mm inner diameter and 2-mm deep) were made over the dentin surfaces. The bonded specimens were tested under shear forces at a crosshead speed of 0.8 mm/min and fracture modes were determined using a stereomicroscope at 25× magnification. The materials were applied to the pulp floor of prepared Class I cavities and then the cavities were restored with composite resin. Restored molar teeth were subjected to 5,000 thermocycles and sectioned in a bucco-lingual direction. Resin replicas were made to determine the adaptation at the pulp floor with scanning electron microscopy. Significant differences were determined among both bond strengths and gap formations of the materials. EQUIA Forte applied to both dentin substrates had a significantly higher SBS than the other materials. The bond strength of each material was not influenced by the dentin condition. Biodentine (3.03%), EQUIA Forte (7.83%), and Theracal LC (13.37%) had lower gap formations compared to other materials but were not significantly different from each other.

摘要

本研究评估了牙髓覆盖材料的剪切粘结强度(SBS)和内部边缘适应性。制备了平坦的咬合面深牙本质表面,并将其随机分为两组(正常或人工龋损牙本质)。每组中的样本根据使用的材料分为七个亚组之一:Biodentine、Theracal LC、Ultra-Blend plus、Calcimol LC、ApaCal ART、EQUIA Forte 和 Ionoseal。在牙本质表面上制作了 3-mm 内径和 2-mm 深的堆积物。将粘结的样本在 0.8mm/min 的十字头速度下进行剪切力测试,并在 25×放大倍数下使用立体显微镜确定断裂模式。将材料应用于预备的 I 类腔的牙髓底部,然后用复合树脂修复腔。修复后的磨牙经过 5000 次热循环,并沿颊舌方向切割。制作树脂复制件,用扫描电子显微镜确定牙髓底部的适应性。两种粘结强度和材料间隙形成之间都存在显著差异。应用于两种牙本质基底的 EQUIA Forte 的 SBS 明显高于其他材料。每种材料的粘结强度不受牙本质状况的影响。与其他材料相比,Biodentine(3.03%)、EQUIA Forte(7.83%)和 Theracal LC(13.37%)的间隙形成较小,但彼此之间没有显著差异。

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