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Hydroxyapatite coating effect on the bond strength between CAD/CAM materials and a resin cement

机译:羟基磷灰石涂层对CAD / CAM材料与树脂水泥之间的粘合强度的影响

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The purpose of this study was to evaluate the bond strength between CAD/CAM materials and a resin cement using hydroxyapatite coating as a surface treatment method. Different surface treatments (Control, no treatment-C; Sandblasting-SB; Hydrofluoric acid etching-HF; applying tooth desensitizer-TeM; applying topical creme-ToM, HAp coating with Pulse Laser Deposition technique-PLD) were applied to three different CAD/CAM materials (LAVA Ultimate, VITA Enamic, and Cerec Blocs). After surface treatments, a universal adhesive (Single Bond Universal, 3M ESPE) was applied and adhesive resin (Rely X Ultimate, 3M ESPE) were cemented on each material surface using plastic tubes (4 mm in diameter). The shear bond strength values were measured using a universal testing machine. Scanning electron microscope analysis were performed to evaluate failure modes and effects of surface treatments. Obtained data were statistically analyzed using two-way ANOVA and Tukey's post hoc test (p = 0.05). The bond strength of PLD groups were significantly higher than other groups in resin-ceramics (p < 0.05). In Cerec Blocs, HF resulted significantly higher bond strength than other groups (p < 0.05). SEM analysis of surface treatment methods (except TeM and ToM) revealed an increase in surface alterations compared to control groups. Failure modes were dominantly adhesive in groups C, TeM, and ToM, whereas mostly mix or cohesive failures were observed in PLD, HF, and SB. Hydroxyapatite coating with PLD technique exhibited promising bond strength results for CAD/CAM resin-ceramics. HAp coating can be used as a replacement for hydrofluoric acid etching and sandblasting in CAD/CAM resin-ceramic materials to obtain better bond strength values.
机译:本研究的目的是使用羟基磷灰石涂层作为表面处理方法评估CAD / CAM材料和树脂水泥之间的键合强度。不同的表面处理(控制,无治疗-C;喷砂-SB;氢氟酸蚀刻-HF;涂牙脱敏剂-TEM;应用局部Creme-Tom,用脉冲激光沉积技术-PLD的Hap涂层应用于三种不同的CAD /凸轮材料(Lava Ultimate,Vita Enamic和Cerec Blocs)。表面处理后,使用塑料管(直径为4mm)在每个材料表面上施加通用粘合剂(单键通用,3MESPE)和粘合树脂(依赖性X终极,3MESPE)。使用通用试验机测量剪切粘合强度值。进行扫描电子显微镜分析以评估衰竭模式和表面处理的影响。使用双向ANOVA和Tukey的Hoc测试进行统计分析获得的数据(P = 0.05)。 PLD基团的键合强度明显高于树脂陶瓷中的其他基团(P <0.05)。在CEREC集团中,HF导致粘合强度明显高于其他基团(P <0.05)。表面处理方法的SEM分析(TEM和TOM除外)显示与对照组相比表面改变的增加。在C,TEM和Tom组中,失效模式占据粘合剂,而在PLD,HF和Sb中大多数观察到混合或内聚失效。具有PLD技术的羟基磷灰石涂层表现出CAD / CAM树脂陶瓷的有希望的粘合强度。 Hap涂层可用作CAD / CAM树脂 - 陶瓷材料中氢氟酸蚀刻和喷砂的替代品,以获得更好的粘合强度值。

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