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pH 循环对含 MDPB 和氟化物的自酸蚀黏结剂与牙本质间微拉伸黏结强度以及对修复体邻接釉质和牙本质显微硬度的影响。

Influence of pH cycling on the microtensile bond strength of self-etching adhesives containing MDPB and fluoride to dentin and microhardness of enamel and dentin adjacent to restorations.

机构信息

Departamento de Odontologia Restauradora-Dentistica, Swift Campinas, Brazil.

出版信息

J Adhes Dent. 2012 Dec;14(6):525-34. doi: 10.3290/j.jad.a25689.

Abstract

PURPOSE

To evaluate the influence of pH cycling on microtensile bond strength (µTBS) and fracture pattern of MDPB- and fluoride-containing self-etching adhesive systems to dentin, and on the cross-sectional Knoop microhardness (CSMH) of enamel and dentin adjacent to restorations.

MATERIALS AND METHODS

The two-step self-etching adhesive Clearfil SE Bond (SE; Kuraray), the two-step MDPBand fluoride-containing adhesive Clearfil Protect Bond (PB; Kuraray), and the one-step fluoride-containing adhesive One-Up Bond F Plus (OU; Tokuyama) were used to bond resin composite to midcoronal dentin surfaces (for µTBS testing) or to Class V cavities (for CSMH testing). µTBS and CSMH tests were performed after a 15-day period of pH cycling or storage in artificial saliva.

RESULTS

µTBS to dentin was not affected by pH cycling or storage in artificial saliva; however, µTBS values found for PB were higher than those observed for OU. No difference existed among the µTBS values shown by PB, OU, and SE. The fracture pattern was affected by both pH cycling and adhesive system. In enamel, there was no difference in CSMH values provided by the different adhesive systems and storage media, regardless of the distance and depth from restoration. In dentin, PB and SE showed the highest CSMH values, which differed from those obtained for OU. Significantly higher CSMH values were found 100 µm from the restoration margin for all adhesive systems tested.

CONCLUSION

The bond strength and microhardness in the vicinity of restorations were adhesive dependent, with MDPB and fluoride exerting no effect on the performance of the adhesive systems.

摘要

目的

评估 pH 循环对 MDPB 及含氟自酸蚀黏结剂系统与牙本质间微拉伸黏结强度(µTBS)和断裂模式的影响,并评估其对牙釉质和修复体邻接牙本质的横截面努氏硬度(CSMH)的影响。

材料和方法

两步法自酸蚀黏结剂 Clearfil SE Bond(SE;可乐丽)、两步法 MDPB 及含氟黏结剂 Clearfil Protect Bond(PB;可乐丽)和一步法含氟黏结剂 One-Up Bond F Plus(OU;拓可美)被用于将树脂复合材料黏结至中牙本质表面(用于 µTBS 测试)或 V 类洞(用于 CSMH 测试)。µTBS 和 CSMH 测试在 pH 循环或人工唾液储存 15 天后进行。

结果

牙本质的 µTBS 不受 pH 循环或人工唾液储存的影响;然而,PB 的 µTBS 值高于 OU。PB、OU 和 SE 的 µTBS 值之间没有差异。黏结系统和 pH 循环均会影响断裂模式。在牙釉质中,不同黏结系统和储存介质的 CSMH 值没有差异,无论距离和深度如何。在牙本质中,PB 和 SE 显示出最高的 CSMH 值,与 OU 获得的值不同。在距修复体边缘 100 µm 处,所有测试黏结系统的 CSMH 值均显著较高。

结论

黏结强度和修复体周围的显微硬度取决于黏结剂,MDPB 和氟化物对黏结系统的性能没有影响。

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