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汞合金替代品:新型自粘材料对牙本质矿化变化的敏感性。

Amalgam alternatives: Susceptibility of novel self-adhesive materials to changes in dentin mineralization.

作者信息

Christoff Vasil, Ilie Nicoleta

机构信息

Department of Conservative Dentistry and Periodontology, Ludwig-Maximilians-University (LMU), University Hospital Munich, Goethestr. 70 80336 Munich, Bayern, Germany.

Department of Conservative Dentistry and Periodontology, Ludwig-Maximilians-University (LMU), University Hospital Munich, Goethestr. 70 80336 Munich, Bayern, Germany.

出版信息

J Dent. 2025 Sep;160:105894. doi: 10.1016/j.jdent.2025.105894. Epub 2025 Jun 15.

Abstract

OBJECTIVES

This study explores the effects of artificial de- and hypermineralization on the shear bond strength (SBS) of three innovative dental materials: a modern ion - releasing resin-based composite (Cention Forte (CF)), a resin-modified glass ionomer cement (Surefil One (SO)), and a high-viscosity glass ionomer cement (Equia Forte (EF)), all tested on human dentin.

METHODS

A total of 360 human dentin specimens were divided into 18 groups (n = 20). Each material was bonded to either healthy, hypermineralized, or demineralized dentin. After aging at 37 °C in distilled water for 1 week and artificial saliva for 6 months, SBS was tested following ISO 29,022. Fracture origins and patterns were analyzed via light microscopy.

RESULTS

The SBS values of EF on hyper- and demineralized dentin were lower after 1 week and 6 months when compared to sound dentin, whereas for CF this trend was only seen on demineralized dentin after 1 week. Regardless of aging, the SBS values of SO displayed no significant difference in comparison to the reference. Across all substrates and aging types, the SBS values of CF were the highest. The long-term bond reliability of CF and EF on sound dentin was similar, as was the bond reliability of CF and SO on hypermineralized dentin.

CONCLUSIONS

CF produces the strongest bond to dentin irrespective of dentin substrate or aging. Demineralization deteriorates the bond strength of both CF and EF, whereas hypermineralization only that of EF. SO remains unaffected by changes in dentin mineralization, enabling it to form stronger bonds to hypermineralized dentin than EF.

CLINICAL SIGNIFICANCE

A proper assessment of a material's bond strength to dentin substrates with varying degrees of mineralization is crucial for evaluating its potential as an effective amalgam replacement, capable of forming reliable bonds across a broad range of tooth substrates.

摘要

目的

本研究探讨人工脱矿和过度矿化对三种新型牙科材料与人类牙本质之间剪切粘结强度(SBS)的影响,这三种材料分别是:一种现代离子释放型树脂基复合材料(Cention Forte(CF))、一种树脂改性玻璃离子水门汀(Surefil One(SO))和一种高粘度玻璃离子水门汀(Equia Forte(EF))。

方法

总共360个人类牙本质标本被分为18组(每组n = 20)。每种材料分别粘结到健康、过度矿化或脱矿的牙本质上。在37℃的蒸馏水中老化1周,在人工唾液中老化6个月后,按照ISO 29022测试SBS。通过光学显微镜分析断裂起源和模式。

结果

与健康牙本质相比,EF在过度矿化和脱矿牙本质上的SBS值在1周和6个月后较低,而对于CF,这种趋势仅在1周后的脱矿牙本质上出现。无论老化情况如何,SO的SBS值与对照组相比无显著差异。在所有底物和老化类型中,CF的SBS值最高。CF和EF在健康牙本质上的长期粘结可靠性相似,CF和SO在过度矿化牙本质上的粘结可靠性也相似。

结论

无论牙本质底物或老化情况如何,CF与牙本质的粘结最强。脱矿会降低CF和EF的粘结强度,而过度矿化仅降低EF的粘结强度。SO不受牙本质矿化变化的影响,使其能够比EF与过度矿化牙本质形成更强的粘结。

临床意义

正确评估材料与不同矿化程度牙本质底物之间的粘结强度对于评估其作为有效汞合金替代品的潜力至关重要,这种替代品能够在广泛的牙齿底物上形成可靠的粘结。

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