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首页> 外文期刊>Journal of Applied Oral Science >Adhesives with different pHs: effect on the MTBS of chemically activated and light-activated composites to human dentin
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Adhesives with different pHs: effect on the MTBS of chemically activated and light-activated composites to human dentin

机译:不同pH值的胶粘剂:对化学活化和光活化复合材料对人牙本质的MTBS的影响

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PURPOSE: To evaluate the bond strength between human dentin and composites, using two light-activated single-bottle total-etch adhesive systems with different pHs combined with chemically activated and light-activated-composites. The tested hypothesis was that the dentin bond strength is not influenced by an adhesive system of low pH, combined with chemically activated or light-activated composites. MATERIAL AND METHOD: Flat dentin surfaces of twenty-eight human third molars were allocated in 4 groups (n=7), depending on the adhesive system: (One Step Plus-OS and Prime & Bond NT-PB) and composite (light-activated Filtek Z-100 [Z100] and chemically activated Bisfil 2B [B2B]). Each adhesive system was applied on acid-etched dentin and then one of the composites was added to form a 5 mm-high resin block. The specimens were stored in tap water (37oC/24 h) and sectioned into two axes, x and y. This was done with a diamond disk under coolant irrigation to obtain beams with a cross-section area of approximately 0.8 mm2. Each specimen was then attached to a custom-made device and submitted to the microtensile test (1 mm.min-1). Data were analyzed using two-way ANOVA and Tukey's tests (p<0.05). RESULTS: The anticipated hypothesis was not confirmed (p<0.0001). The bond strengths (MPa) were not statistically different between the two adhesive systems when light-activated composite was used (OS+Z100 = 24.7±7.1a; PB+Z100 = 23.8±5.7a). However, with use of the chemically activated composite (B2B), PB (7.8±3.6b MPa) showed significantly lower dentin bond strengths than OS (32.2±7.6a). CONCLUSION: The low pH of the adhesive system can affect the bond of chemically activated composite to dentin. On the other hand, under the present conditions, the low pH did not seem to affect the bond of light-activated composites to dentin significantly.
机译:目的:使用两种不同pH值的光活化单瓶全蚀刻胶粘剂系统,结合化学活化和光活化复合材料,评估人牙本质与复合材料之间的粘结强度。检验的假设是,牙本质粘合强度不受化学活化或光活化复合材料结合的低pH值粘合剂体系的影响。材料和方法:将28个人类第三磨牙的平坦牙本质表面分为4组(n = 7),具体取决于粘合剂体系:(一步法-OS和Prime&Bond NT-PB)和复合材料(轻-活化的Filtek Z-100 [Z100]和化学活化的Bisfil 2B [B2B])。将每种粘合剂体系施加到酸蚀的牙本质上,然后添加一种复合材料以形成5毫米高的树脂块。将标本保存在自来水中(37oC / 24 h),并切成x和y两个轴。这是在冷却剂冲洗下用金刚石盘完成的,以获得横截面约为0.8 mm2的光束。然后将每个样品连接到定制设备上,并进行微拉伸试验(1 mm.min-1)。使用双向方差分析和Tukey检验分析数据(p <0.05)。结果:预期假说未得到证实(p <0.0001)。当使用光活化复合材料时,两种粘合剂体系之间的粘合强度(MPa)在统计学上没有差异(OS + Z100 = 24.7±7.1a; PB + Z100 = 23.8±5.7a)。但是,使用化学活化的复合材料(B2B),PB(7.8±3.6b MPa)的牙本质粘合强度明显低于OS(32.2±7.6a)。结论:低pH值的胶粘剂体系可以影响化学活化复合材料与牙本质的粘合。另一方面,在当前条件下,低pH似乎并未显着影响光活化复合材料与牙本质的结合。

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