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双固化树脂水门汀与牙本质的粘结

Bonding of dual-curing resin cements to dentin.

作者信息

Asmussen Erik, Peutzfeldt Anne

机构信息

Department of Dental Materials, School of Dentistry, University of Copenhagen, Copenhagen, Denmark.

出版信息

J Adhes Dent. 2006 Oct;8(5):299-304.

Abstract

PURPOSE

The purpose of the study was three-fold: 1) to determine the strength of the bond between a number of dual-curing resin cements and dentin treated with corresponding adhesive systems, 2) to determine the effect on bond strength of not light curing the cements, and 3) to investigate whether application of a solution of sodium sulfinate or ascorbic acid would increase the bond strength in the cases where the manufacturer's version of an adhesive system resulted in low bond strength with chemically cured cement, ie, cement cured without light.

MATERIALS AND METHODS

The adhesive systems comprised 5 simplified systems (Adper Scotchbond 1 XT, ED Primer II, Excite DSC, OptiBond Solo Plus, and Prime and Bond NT), and as controls, two three-step etch and rinse systems (Adper Scotchbond Multi-Purpose Plus and Gluma Solid Bond). The corresponding dual-curing resin cements were RelyX ARC, Panavia F 2.0, Variolink II, Nexus 2, Calibra, RelyX ARC, and 2Bond2. The cements were either light and chemically cured or only chemically cured. The adhesive systems were used as recommended by the manufacturers, which for some systems involved inclusion of a so-called activator or catalyst when used with chemically cured cement. Sodium sulfinate and ascorbic acid were applied as a 1% ethanol solution. The bond strengths were measured in shear after storing specimens for 24 h in 37 degree C water.

RESULTS

When the dual-curing resin cements had been both light and chemically cured, the bond strengths increased in this order: Gluma Solid Bond < ED Primer II < Prime and Bond NT < Adper Scotchbond Multi-Purpose Plus < Excite DSC < Adper Scotchbond 1 XT < OptiBond Solo Plus. Omission of light curing of the cements decreased the bond strengths with OptiBond Solo Plus and Prime and Bond NT. The use of activator in conjunction with OptiBond Solo Plus and Prime and Bond NT increased the bond strength to chemically cured cement, but not to the level obtained when the cement was both light and chemically cured. The use of the catalyst of Adper Scotchbond Multi-Purpose Plus did not increase the bond strength with chemically cured cement. Pretreatment with a solution of sodium sulfinate or ascorbic acid increased the bond strength with chemically cured cement in the case of OptiBond Solo Plus, whereas only the solution of sodium sulfinate was effective with Prime and Bond NT.

CONCLUSION

Clinicians should be aware that in situations where a dual-curing resin cement cannot be light cured, some adhesive systems suffer a loss of efficacy, even when respective activators are used. Pretreatment with a 1% ethanol solution of sodium sulfinate may restore much of the lost bond strength.

摘要

目的

本研究的目的有三个方面:1)确定多种双固化树脂水门汀与经相应粘结系统处理的牙本质之间的粘结强度;2)确定不进行水门汀光固化对粘结强度的影响;3)研究在制造商版本的粘结系统与化学固化水门汀(即无光固化的水门汀)导致低粘结强度的情况下,应用亚硫酸氢钠溶液或抗坏血酸溶液是否会增加粘结强度。

材料与方法

粘结系统包括5种简化系统(Adper Scotchbond 1 XT、ED Primer II、Excite DSC、OptiBond Solo Plus和Prime and Bond NT),作为对照,还有两种三步酸蚀冲洗系统(Adper Scotchbond Multi-Purpose Plus和Gluma Solid Bond)。相应的双固化树脂水门汀为RelyX ARC、Panavia F 2.0、Variolink II,、Nexus 2、Calibra、RelyX ARC和2Bond2。水门汀要么进行光固化和化学固化,要么仅进行化学固化。粘结系统按照制造商的建议使用,对于一些系统,在与化学固化水门汀一起使用时需要加入所谓的活化剂或催化剂。亚硫酸氢钠和抗坏血酸以1%乙醇溶液的形式应用。在37℃水中储存标本24小时后,测量剪切粘结强度。

结果

当双固化树脂水门汀同时进行光固化和化学固化时,粘结强度按以下顺序增加:Gluma Solid Bond < ED Primer II < Prime and Bond NT < Adper Scotchbond Multi-Purpose Plus < Excite DSC < Adper Scotchbond 1 XT < OptiBond Solo Plus。省略水门汀的光固化会降低OptiBond Solo Plus和Prime and Bond NT的粘结强度。将活化剂与OptiBond Solo Plus和Prime and Bond NT一起使用可提高与化学固化水门汀的粘结强度,但未达到水门汀同时进行光固化和化学固化时的水平。使用Adper Scotchbond Multi-Purpose Plus的催化剂不会提高与化学固化水门汀的粘结强度。在OptiBond Solo Plus的情况下,用亚硫酸氢钠溶液或抗坏血酸溶液预处理可提高与化学固化水门汀的粘结强度,而在Prime and Bond NT的情况下,只有亚硫酸氢钠溶液有效。

结论

临床医生应意识到,在双固化树脂水门汀无法进行光固化的情况下,即使使用各自的活化剂,一些粘结系统的效能也会降低。用1%亚硫酸氢钠乙醇溶液预处理可能会恢复大部分损失的粘结强度。

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