Zhao Jun, Weng Yiming, Xie Dong
Department of Biomedical Engineering, Purdue School of Engineering and Technology, Indiana University-Purdue University at Indianapolis, Indianapolis, IN 46202, USA.
Eur J Oral Sci. 2009 Feb;117(1):86-9. doi: 10.1111/j.1600-0722.2008.00589.x.
This study reports the results of an evaluation on the in vitro wear of a newly developed experimental light-cured glass-ionomer cement composed of the synthesized six-arm star-shape poly(acrylic acid) and Fuji II LC glass fillers. The resin composite P-60, as well as glass-ionomer cements Fuji II and Fuji II LC, were used for comparison. All specimens were conditioned in distilled water at 37 degrees C for 1 d prior to testing. The experimental cement exhibited statistically the same wear-resistance to abrasion as P-60, but the wear-resistance was 14 times higher for the experimental cement than for Fuji II and Fuji II LC. Furthermore, the experimental cement showed a degree of wear-resistance to attrition that was 1.4 times higher than both Fuji II and Fuji II LC but six times lower than that of P-60. Impressively, after 1 month of aging the experimental cement was able to compete with P-60 in wear-resistance to attrition, showing a degree of wear depth that was only 1.3 times more than that of P-60. It appears that this novel cement is a clinically attractive dental restorative that can be potentially used for high-wear sites such as class I and class II restorations.
本研究报告了一种新开发的实验性光固化玻璃离子水门汀体外磨损评估结果,该水门汀由合成的六臂星形聚丙烯酸和富士II LC玻璃填料组成。使用树脂复合材料P-60以及玻璃离子水门汀富士II和富士II LC进行比较。所有试样在测试前于37℃蒸馏水中养护1天。实验性水门汀在统计学上显示出与P-60相同的耐磨耗性,但实验性水门汀的耐磨耗性是富士II和富士II LC的14倍。此外,实验性水门汀显示出的耐磨损性比富士II和富士II LC高1.4倍,但比P-60低6倍。令人印象深刻的是,老化1个月后,实验性水门汀在耐磨损性方面能够与P-60相媲美,磨损深度仅比P-60多1.3倍。看来这种新型水门汀是一种临床上有吸引力的牙科修复材料,可潜在地用于I类和II类修复等高磨损部位。