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牙本质粘结:小管方向对混合层形成的影响。

Dentin bonding: effect of tubule orientation on hybrid-layer formation.

作者信息

Schüpbach P, Krejci I, Lutz F

机构信息

Institute of Oral Microbiology and General Immunology, University of Zurich, Switzerland.

出版信息

Eur J Oral Sci. 1997 Aug;105(4):344-52. doi: 10.1111/j.1600-0722.1997.tb00251.x.

Abstract

In an attempt to compare the morphology of the resin-dentin interface in areas where the dentinal tubules run perpendicularly or at an angle to the cavity surface with that of areas where they run parallel to it, we studied a dentin adhesive system using transmission electron microscopy and fluorescence confocal laser scanning microscopy. The design of the study included the simulation of the normal hydrostatic pressure within the pulp and the dentinal tubules. Following acid etching of the dentinal surface with maleic acid/HEMA, the smear layer was removed, and a superficial zone was demineralized in such a way that the exposed collagenous dentin matrix retained its integrity. Confocal laser scanning microscopal investigations using primer labeled with rhodamine B showed that the penetration of the primer occurred not only vertically via surface porosities, but mainly laterally, via the dentinal tubules. The adhesive resin labeled with fluorescein completely infiltrated the demineralized layer, thereby forming a hybrid layer. The orientation of the dentinal tubules had a profound effect on the formation of the hybrid layer. In areas with perpendicular tubule orientation, the layer was 3.2 +/- 0.8 microns thick, showing solid 27.2 +/- 0.8 microns long resin tags in the dentinal tubules, and a network of tiny tags in their side-branches. In areas with parallel tubule orientation the layer was significantly thinner (1.3 +/- 0.6 microns) and resin tags were absent.

摘要

为了比较牙本质小管垂直于或与洞壁表面呈一定角度区域的树脂-牙本质界面形态与牙本质小管平行于洞壁表面区域的树脂-牙本质界面形态,我们使用透射电子显微镜和荧光共聚焦激光扫描显微镜研究了一种牙本质粘结系统。该研究设计包括模拟牙髓和牙本质小管内的正常静水压力。用马来酸/甲基丙烯酸羟乙酯对牙本质表面进行酸蚀后,去除玷污层,并对表层进行脱矿,以使暴露的胶原牙本质基质保持完整。使用罗丹明B标记的底漆进行的共聚焦激光扫描显微镜研究表明,底漆不仅通过表面孔隙垂直渗透,而且主要通过牙本质小管横向渗透。用荧光素标记的粘结树脂完全渗入脱矿层,从而形成混合层。牙本质小管的方向对混合层的形成有深远影响。在牙本质小管垂直排列的区域,该层厚度为3.2±0.8微米,在牙本质小管中显示出27.2±0.8微米长的坚实树脂突,在其侧支中有微小突的网络。在牙本质小管平行排列的区域,该层明显更薄(1.3±0.6微米)且没有树脂突。

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