Department of Operative Dentistry and Periodontology, University Hospital Erlangen, Friedrich-Alexander Universität Erlangen-Nürnberg, Glueckstrasse 11, 91054, Erlangen, Germany.
Department of Dentistry, Radboud University Medical Center, Nijmegen, The Netherlands.
Sci Rep. 2024 Aug 2;14(1):17885. doi: 10.1038/s41598-024-68873-y.
Dental materials are challenged by wear processes in the oral environment and should be evaluated in laboratory tests prior to clinical use. Many laboratory wear-testing devices are high-cost investments and not available for cross-centre comparisons. The 'Rub&Roll' wear machine enables controlled application of force, chemical and mechanical loading, but the initial design was not able to test against rigid antagonist materials. The current study aimed to probe the sensitivity of a new 'Rub&Roll' set-up by evaluating the effect of force and test solution parameters (deionized water; water + abrasive medium; acid + abrasive medium) on the wear behaviour of direct and indirect dental resin-based composites (RBCs) compared with human molars against 3D-printed rod antagonists. Molars exhibited greater height loss than RBCs in all test groups, with the largest differences recorded with acidic solutions. Direct RBCs showed significantly greater wear than indirect RBCs in the groups containing abrasive media. The acidic + abrasive medium did not result in increased wear of RBC materials. The developed method using the 'Rub&Roll' wear machine in the current investigation has provided a sensitive wear test method to allow initial screening of resin-based composite materials compared with extracted human molars under the influence of different mechanical and erosive challenges.
牙科材料在口腔环境中会受到磨损,因此在临床使用前应进行实验室测试。许多实验室磨损测试设备成本高昂,无法进行跨中心比较。“Rub&Roll”磨损机可实现力、化学和机械加载的控制应用,但最初的设计无法对抗刚性对颌材料进行测试。本研究旨在通过评估力和测试溶液参数(去离子水;水+磨料介质;酸+磨料介质)对直接和间接牙科树脂基复合材料(RBC)与 3D 打印棒状对颌材料之间磨损行为的影响,来探测新型“Rub&Roll”装置的灵敏度。与所有测试组中的 RBC 相比,磨牙的高度损失更大,在含酸性溶液的组中记录的差异最大。在含有磨料介质的组中,直接 RBC 的磨损明显大于间接 RBC。酸性+磨料介质并未导致 RBC 材料磨损增加。当前研究中使用“Rub&Roll”磨损机开发的方法提供了一种敏感的磨损测试方法,可在不同机械和侵蚀性挑战的影响下,对树脂基复合材料与提取的人磨牙进行初步筛选。