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光强度对核成型树脂表面自由能和牙本质粘结强度的影响。

Influence of light intensity on surface free energy and dentin bond strength of core build-up resins.

作者信息

Shimizu Y, Tsujimoto A, Furuichi T, Suzuki T, Tsubota K, Miyazaki M, Platt J A

出版信息

Oper Dent. 2015 Jan-Feb;40(1):87-95. doi: 10.2341/13-283-L. Epub 2014 May 8.

Abstract

OBJECTIVE

We examined the influence of light intensity on surface free energy characteristics and dentin bond strength of dual-cure direct core build-up resin systems.

METHODS

Two commercially available dual-cure direct core build-up resin systems, Clearfil DC Core Automix with Clearfil Bond SE One and UniFil Core EM with Self-Etching Bond, were studied. Bovine mandibular incisors were mounted in acrylic resin and the facial dentin surfaces were wet ground on 600-grit silicon carbide paper. Adhesives were applied to dentin surfaces and cured with light intensities of 0 (no irradiation), 200, 400, and 600 mW/cm(2). The surface free energy of the adhesives (five samples per group) was determined by measuring the contact angles of three test liquids placed on the cured adhesives. To determine the strength of the dentin bond, the core build-up resin pastes were condensed into the mold on the adhesive-treated dentin surfaces according to the methods described for the surface free energy measurement. The resin pastes were cured with the same light intensities as those used for the adhesives. Ten specimens per group were stored in water maintained at 37°C for 24 hours, after which they were shear tested at a crosshead speed of 1.0 mm/minute in a universal testing machine. Two-way analysis of variance (ANOVA) and a Tukey-Kramer test were performed, with the significance level set at 0.05.

RESULTS

The surface free energies of the adhesive-treated dentin surfaces decreased with an increase in the light intensity of the curing unit. Two-way ANOVA revealed that the type of core build-up system and the light intensity significantly influence the bond strength, although there was no significant interaction between the two factors. The highest bond strengths were achieved when the resin pastes were cured with the strongest light intensity for all the core build-up systems. When polymerized with a light intensity of 200 mW/cm(2) or less, significantly lower bond strengths were observed. CONClUSIONS: The data suggest that the dentin bond strength of core build-up systems are still affected by the light intensity of the curing unit, which is based on the surface free energy of the adhesives. On the basis of the results and limitations of the test conditions used in this study, it appears that a light intensity of >400 mW/cm(2) may be required for achieving the optimal dentin bond strength.

摘要

目的

我们研究了光强度对双固化直接核成型树脂系统的表面自由能特性和牙本质粘结强度的影响。

方法

研究了两种市售的双固化直接核成型树脂系统,即搭配Clearfil Bond SE One的Clearfil DC Core Automix和搭配自酸蚀粘结剂的UniFil Core EM。将牛下颌切牙固定在丙烯酸树脂中,其唇面牙本质表面用600目碳化硅砂纸湿磨。将粘结剂涂覆在牙本质表面,并用0(无照射)、200、400和600 mW/cm²的光强度进行固化。通过测量放置在固化粘结剂上的三种测试液体的接触角来测定粘结剂的表面自由能(每组五个样品)。为了确定牙本质粘结强度,根据表面自由能测量所述方法,将核成型树脂糊剂在粘结剂处理过的牙本质表面上压入模具中。树脂糊剂用与粘结剂相同的光强度进行固化。每组十个标本在37°C的水中保存24小时,之后在万能试验机中以1.0 mm/分钟的十字头速度进行剪切测试。进行双向方差分析(ANOVA)和Tukey-Kramer检验,显著性水平设定为0.05。

结果

粘结剂处理过的牙本质表面的表面自由能随着固化装置光强度的增加而降低。双向方差分析显示,尽管两个因素之间没有显著相互作用,但核成型系统的类型和光强度对粘结强度有显著影响。对于所有核成型系统,当树脂糊剂用最强光强度固化时,可获得最高粘结强度。当用200 mW/cm²或更低的光强度聚合时,观察到粘结强度显著降低。结论:数据表明,核成型系统的牙本质粘结强度仍然受固化装置光强度的影响,这是基于粘结剂的表面自由能。根据本研究中使用的测试条件的结果和局限性,似乎需要>400 mW/cm²的光强度才能实现最佳牙本质粘结强度。

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