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首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Durability of Adhesion between Feldspathic Ceramic and Resin Cements: Effect of Adhesive Resin, Polymerization Mode of Resin Cement, and Aging
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Durability of Adhesion between Feldspathic Ceramic and Resin Cements: Effect of Adhesive Resin, Polymerization Mode of Resin Cement, and Aging

机译:长石陶瓷与树脂水泥之间粘合的耐久性:粘合树脂的影响,树脂水泥的聚合方式和老化

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Purpose: Adhesive cementation is an important step for restorations made of feldspathic ceramic as it increases the strength of such materials. Incorrect selection of the adhesive resin and the resin cement to adhere to the ceramic surface and their durability against aging can affect the adhesion between these materials and the clinical performance. This study evaluated the effect of adhesive resins with different pHs, resin cements with different polymerization modes, and aging on the bond strength to feldspathic ceramic. Materials and Methods: One surface of feldspathic ceramic blocks (VM7) (N = 90) (6.4 × 6.4 × 4.8 mm3) was conditioned with 10% hydrofluoric acid for 20 seconds, washed/dried, and silanized. Three adhesive resins (Scotchbond Multi-Purpose Plus [SBMP], pH: 5.6; Single Bond [SB], pH: 3.4; and Prime&Bond NT [NT], pH: 1.7) were applied on the ceramic surfaces (n = 30 per adhesive). For each adhesive group, three resin cements with different polymerization modes were applied (n = 10 per cement): photo-polymerized (Variolink II base), dual polymerized (Variolink II base + catalyst), and chemically polymerized (C&B). The bonded ceramic blocks were stored in water (37°C) for 24 hours and sectioned to produce beam specimens (cross-sectional bonded area: 1 ± 0.1 mm2). The beams of each block were randomly divided into two conditions: Dry, microtensile test immediately after cutting; TC, test was performed after thermocycling (12,000×, 5°C to 55°C) and water storage at 37°C for 150 days. Considering the three factors of the study (adhesive [3 levels], resin cement [3 levels], aging [2 levels]), 18 groups were studied. The microtensile bond strength data were analyzed using 3-way ANOVA and Tukey's post hoc test (α= 0.05). Results: Adhesive resin type (p 0.001) and the resin cement affected the mean bond strength (p= 0.0003) (3-way ANOVA). The NT adhesive associated with the chemically polymerized resin cement in both dry (8.8 ± 6.8 MPa) and aged conditions (6.9 ± 5.9 MPa) presented statistically lower bond strength results, while the SBMP adhesive resin, regardless of the resin cement type, presented the highest results (15.4 to 18.5 and 14.3 to 18.9 MPa) in both dry and aged conditions, respectively (Tukey's test). Conclusion: Application of a low-pH adhesive resin onto a hydrofluoric acid etched and silanized feldspathic ceramic surface in combination with chemically polymerized resin cement did not deliver favorable results. The use of adhesive resin with high pH could be clinically advised for the photo-, dual-, and chemically polymerized resin cements tested.
机译:目的:胶结胶粘剂是长石陶瓷制成的修复体的重要步骤,因为它可以增强这种材料的强度。粘合剂树脂和树脂胶粘剂在陶瓷表面上的不正确选择及其耐老化性会影响这些材料之间的粘合性和临床性能。这项研究评估了不同pH值的胶粘剂树脂,不同聚合方式的树脂胶粘剂以及老化对长石陶瓷粘结强度的影响。材料和方法:将长石质陶瓷块(VM7)(N = 90)(6.4×6.4×4.8 mm3)的一个表面用10%氢氟酸处理20秒,洗涤/干燥并进行硅烷化。将三种粘合剂树脂(Scotchbond Multi-Purpose Plus [SBMP],pH:5.6;单键[SB],pH:3.4; Prime&Bond NT [NT],pH:1.7)涂在陶瓷表面上(每个粘合剂n = 30) )。对于每个粘合剂组,应用三种具有不同聚合模式的树脂胶粘剂(每胶粘剂n = 10):光致聚合(Variolink II碱),双聚合(Variolink II碱+催化剂)和化学聚合(C&B)。将粘合的陶瓷块在水(37°C)中存储24小时,然后切片以制成梁样品(横截面粘合面积:1±0.1 mm2)。每个块的梁随机分为两个条件:切割后立即进行干燥,微拉伸试验; TC,在热循环(12,000x,5°C至55°C)和37°C的水储存150天后进行测试。考虑到研究的三个因素(粘合剂[3级],树脂水泥[3级],老化[2级]),研究了18组。使用三效方差分析和Tukey事后检验(α= 0.05)分析了微拉伸粘合强度数据。结果:粘合树脂类型(p <0.001)和树脂胶粘剂影响平均粘合强度(p = 0.0003)(三向ANOVA)。在干燥(8.8±6.8 MPa)和老化(6.9±5.9 MPa)的条件下,与化学聚合树脂胶粘剂相关的NT胶粘剂的统计强度较低,而SBMP胶粘剂树脂(无论树脂胶粘剂的类型如何)在统计学上均较低。在干燥和老化条件下均达到最高结果(15.4至18.5 MPa和14.3至18.9 MPa)(Tukey检验)。结论:将低pH值的粘合树脂与化学聚合的树脂胶结剂一起应用到氢氟酸蚀刻和硅烷化的长石陶瓷表面上,效果不理想。对于测试的光,双和化学聚合树脂胶粘剂,可在临床上建议使用高pH值的粘合树脂。

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