首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The use of collagen cross-linking agents to enhance dentin bond strength.
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The use of collagen cross-linking agents to enhance dentin bond strength.

机译:使用胶原蛋白交联剂来增强牙本质粘合强度。

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Type I collagen is a major component of the hybrid layer, and improvement of its mechanical properties may be advantageous during bonding procedures.OBJECTIVE: To investigate the effect of three different cross-linking agents (Glutaraldehyde [GD], Grape seed extract [GSE], and Genipin [GE]) on the tensile bond strength (TBS) of resin-dentin bonds. MATERIALS AND METHODS: Sixty-four sound human molars were collected and their occlusal surfaces were ground flat to expose dentin. Dentin surfaces were etched using a phosphoric acid and then teeth were randomly divided according to the dentin treatment: Control group (no treatment), 5% GD, 6.5% GSE, or 0.5% GE. Teeth were restored either with One Step Plus or Adper Single Bond Plus adhesive systems and resin composite. After 24 h, teeth were sectioned to produce a cross-sectional surface area of 1.0 mm(2) and tested for tensile bond strength. Data were statistically analyzed using ANOVA and Fisher's PLSD tests (p < 0.05). There was a statistically significant interaction between factors (treatment and adhesive p < 0.001). Treatment affected TBS (p < 0.0001), while no differences were observed between the adhesive systems (p = 0.6961). CONCLUSION: Chemical modification to the dentin matrix promoted by GD and GSE, but not GE, resulted in increased bond strength. The application of selective collagen cross-linkers during adhesive restorative procedures may be a new approach to improve dentin bond strength properties.
机译:I型胶原蛋白是杂化层的主要成分,在粘合过程中改善其机械性能可能是有利的。目的:研究三种不同交联剂(戊二醛[GD],葡萄籽提取物[GSE])的作用,以及Genipin [GE])。材料与方法:收集64个健全的人类磨牙,将其咬合面磨平以暴露牙本质。用磷酸蚀刻牙本质表面,然后根据牙本质治疗方法将牙齿随机分开:对照组(未治疗),5%GD,6.5%GSE或0.5%GE。使用One Step Plus或Adper Single Bond Plus粘合剂系统和树脂复合材料修复牙齿。 24小时后,将牙齿切成产生1.0毫米(2)的横截面面积,并测试其抗拉强度。使用ANOVA和Fisher的PLSD检验对数据进行统计分析(p <0.05)。各个因素之间存在统计学上的显着相互作用(治疗与黏合剂p <0.001)。处理影响了TBS(p <0.0001),而胶粘剂体系之间未观察到差异(p = 0.6961)。结论:GD和GSE而非GE促进了对牙本质基质的化学修饰,从而提高了粘结强度。在粘合剂修复过程中选择性胶原交联剂的应用可能是提高牙本质粘合强度性能的一种新方法。

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