De Souza Grace, Braga Roberto Ruggiero, Cesar Paulo Francisco, Lopes Guilherme Carpena
Faculty of Dentistry, University of Toronto, Toronto, ON, GD.
Department of Biomaterials and Oral Biology, Faculty of Dentistry, University of São Paulo, São Paulo, SP, BR.
J Appl Oral Sci. 2015 Jul-Aug;23(4):358-68. doi: 10.1590/1678-775720140524.
Resin-based cements have been frequently employed in clinical practice to lute indirect restorations. However, there are numerous factors that may compromise the clinical performance of those cements. The aim of this literature review is to present and discuss some of the clinical factors that may affect the performance of current resin-based luting systems. Resin cements may have three different curing mechanisms: chemical curing, photo curing or a combination of both. Chemically cured systems are recommended to be used under opaque or thick restorations, due to the reduced access of the light. Photo-cured cements are mainly indicated for translucent veneers, due to the possibility of light transmission through the restoration. Dual-cured are more versatile systems and, theoretically, can be used in either situation, since the presence of both curing mechanisms might guarantee a high degree of conversion (DC) under every condition. However, it has been demonstrated that clinical procedures and characteristics of the materials may have many different implications in the DC of currently available resin cements, affecting their mechanical properties, bond strength to the substrate and the esthetic results of the restoration. Factors such as curing mechanism, choice of adhesive system, indirect restorative material and light-curing device may affect the degree of conversion of the cement and, therefore, have an effect on the clinical performance of resin-based cements. Specific measures are to be taken to ensure a higher DC of the luting system to be used.
树脂基水门汀在临床实践中经常用于粘结间接修复体。然而,有许多因素可能会影响这些水门汀的临床性能。本文献综述的目的是介绍和讨论一些可能影响当前树脂基粘结系统性能的临床因素。树脂水门汀可能有三种不同的固化机制:化学固化、光固化或两者结合。由于光线进入受限,化学固化系统建议用于不透明或较厚的修复体。光固化水门汀主要适用于半透明贴面,因为光线有可能透过修复体。双重固化系统更具通用性,理论上可以在任何一种情况下使用,因为两种固化机制的存在可能保证在各种条件下都有较高的转化率(DC)。然而,已经证明临床操作和材料特性可能对目前可用的树脂水门汀的转化率有许多不同的影响,从而影响其机械性能、与基底的粘结强度以及修复体的美学效果。诸如固化机制、粘结系统的选择、间接修复材料和光固化设备等因素可能会影响水门汀的转化率,因此会对树脂基水门汀的临床性能产生影响。需要采取具体措施以确保所使用的粘结系统有更高的转化率。