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一种新型单瓶粘合剂的实验室评估及临床应用

Laboratory evaluation and clinical application of a new one-bottle adhesive.

作者信息

Perdigão J, Baratieri L N, Lopes M

机构信息

Department of Operative Dentistry, University of North Carolina at Chapel Hill, USA.

出版信息

J Esthet Dent. 1999;11(1):23-35. doi: 10.1111/j.1708-8240.1999.tb00373.x.

Abstract

PURPOSE

The purposes of this project were to compare the enamel and dentin bond strengths of a new nanofilled one-coat adhesive system with its predecessor, an unfilled two-coat adhesive system; to analyze the dentin interfacial ultramorphology, using scanning and transmission electron microscopy (SEM and TEM); and to illustrate the clinical technique associated with the use of the new nanofilled one-coat adhesive system.

MATERIAL AND METHODS

Twenty flat dentin surfaces and 20 flat enamel surfaces were polished on the labial surface of bovine incisors mounted in acrylic resin. The specimens were equally and randomly assigned to four bonding groups: (1) dentin with Prime & Bond 2.1; (2) dentin with Prime & Bond NT; (3) enamel with Prime & Bond 2.1; and (4) enamel with Prime & Bond NT. A composite post was then adapted to the treated area and light-cured. After thermocycling, shear bond strengths were determined by testing the shear strength of the specimens. The data were analyzed using one-way analysis of variance (ANOVA) and Student's t-test. For SEM and TEM, six dentin disks were obtained from middle dentin of human third molars and assigned equally to each adhesive. The adhesives were applied to dentin according to manufacturer's directions. The hybrid layer and resin penetration into dentin tubules were analyzed at an ultramorphologic level, and the observations were compared.

RESULTS

Shear bond strengths were as follows: group 1: 17.8 +/- 4.1 MPa; group 2: 20.5 +/- 3.5 MPa; group 3: 24.7 +/- 6.7 MPa; and group 4; 27.0 +/- 5.4 MPa. Electron microscopy showed that both adhesives penetrated the dentin tubules and formed a fully infiltrated hybrid layer. The nanofiller included in the new one-application adhesive penetrated the dentin tubules and infiltrated the microspaces between the collagen fibers within the hybrid layer.

CLINICAL SIGNIFICANCE

The new one-application nanofilled adhesive tested in this study resulted in bond strengths and dentin hybridization comparable to those obtained with the corresponding two-application system. The clinical sequences presented illustrate the ease of use of the newest simplified adhesives.

摘要

目的

本项目的目的是比较一种新型纳米填充单涂层粘结系统与其前身——未填充双涂层粘结系统的牙釉质和牙本质粘结强度;使用扫描电子显微镜和透射电子显微镜(SEM和TEM)分析牙本质界面的超微形态;并说明与新型纳米填充单涂层粘结系统使用相关的临床技术。

材料与方法

在安装于丙烯酸树脂中的牛切牙唇面制备20个平坦的牙本质表面和20个平坦的牙釉质表面。将标本平均随机分为四个粘结组:(1)使用Prime & Bond 2.1粘结牙本质;(2)使用Prime & Bond NT粘结牙本质;(3)使用Prime & Bond 2.1粘结牙釉质;(4)使用Prime & Bond NT粘结牙釉质。然后将复合桩适配到处理区域并进行光固化。热循环后,通过测试标本的剪切强度来确定剪切粘结强度。使用单因素方差分析(ANOVA)和学生t检验对数据进行分析。对于SEM和TEM,从人类第三磨牙的中层牙本质获取6个牙本质盘,并平均分配给每种粘结剂。按照制造商的说明将粘结剂应用于牙本质。在超微形态水平分析混合层和树脂渗入牙本质小管的情况,并比较观察结果。

结果

剪切粘结强度如下:第1组:17.8±4.1MPa;第2组:20.5±3.5MPa;第3组:24.7±6.7MPa;第4组:27.0±5.4MPa。电子显微镜显示两种粘结剂均渗入牙本质小管并形成完全浸润的混合层。新型单涂层粘结剂中包含的纳米填料渗入牙本质小管并浸润混合层内胶原纤维之间的微间隙。

临床意义

本研究中测试的新型单涂层纳米填充粘结剂产生的粘结强度和牙本质杂交效果与相应的双涂层系统相当。所展示的临床操作步骤说明了最新简化粘结剂的易用性。

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