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义齿瓷牙与热聚合义齿树脂的黏附

Adhesion of denture tooth porcelain to heat-polymerized denture resin.

作者信息

Marchack B W, Yu Z, Zhao X Y, White S N

机构信息

Department of Restorative Dentistry, University of Southern California, School of Dentistry, Los Angeles, USA.

出版信息

J Prosthet Dent. 1995 Sep;74(3):242-9. doi: 10.1016/s0022-3913(05)80130-1.

Abstract

Use of porcelain denture teeth may be desirable in many clinical situations, including implant-supported prostheses. However, lack of space because of frameworks often precludes the use of conventional retention by diatorics and pins. Adhesion of porcelain denture teeth to denture resin could also stiffen and possibly strengthen dentures and decrease stain ingress between porcelain teeth and resin denture bases. Unlike previous studies that investigated the bond between conventional feldspathic metal-ceramic porcelain and bis-GMA based composite resin, this study investigated adhesion of denture tooth porcelain to polymethyl methacrylate (PMMA). High-energy air abrasion, hydrofluoric acid etching, and the use of a general purpose bonding agent resulted in an improved bond strength of heat-cured denture PMMA bonded to denture tooth porcelain. Silane coating did not improve bond strengths, and conventional air abrasion was no more effective than polishing with 600-grit silicon carbide. Storage in water and artificial aging substantially decreased bond strengths. The strongest bond strengths were achieved by a high-energy-abrasion + etching + multi-purpose bonding-agent treatment, but a simpler etching + multiple-purpose bonding-agent treatment also produced reliable results. A laboratory technique was suggested. The role of surface treatment in the mechanism of adhesion was examined with scanning electron microscopy. High-energy abrasion produced a slightly more detailed initial topography than conventional air abrasion, but after etching, the high-energy topography became much more detailed. Surface topography alone did not account for all differences found.

摘要

在许多临床情况下,包括种植体支持的修复体,使用瓷牙可能是可取的。然而,由于框架导致的空间不足常常排除了使用传统的双套冠和桩固位方式。瓷牙与义齿树脂的粘结还可以使义齿变硬并可能增强其强度,减少瓷牙与树脂义齿基托之间的污渍侵入。与之前研究传统长石质金属陶瓷瓷与双酚A缩水甘油醚基复合树脂之间的粘结不同,本研究调查了义齿瓷牙与聚甲基丙烯酸甲酯(PMMA)之间的粘结。高能空气喷砂、氢氟酸蚀刻以及使用通用粘结剂可提高热固化义齿PMMA与义齿瓷牙的粘结强度。硅烷涂层并未提高粘结强度,传统的空气喷砂与用600目碳化硅抛光相比并无更显著效果。在水中储存和人工老化会大幅降低粘结强度。通过高能喷砂+蚀刻+多功能粘结剂处理可获得最强的粘结强度,但一种更简单的蚀刻+多功能粘结剂处理也能产生可靠的结果。本文提出了一种实验室技术。通过扫描电子显微镜研究了表面处理在粘结机制中的作用。高能喷砂产生的初始表面形貌比传统空气喷砂略为精细,但蚀刻后,高能处理后的表面形貌变得更加精细。仅表面形貌并不能解释所有发现的差异。

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