Tokunaga Jumpei, Ikeda Hiroshi, Nagamatsu Yuki, Awano Shuji, Shimizu Hiroshi
Division of Biomaterials, Department of Oral Functions, Kyushu Dental University, Fukuoka 803-8580, Japan.
Division of Clinical Education Development and Research, Department of Oral Functions, Kyushu Dental University, Fukuoka 803-8580, Japan.
Materials (Basel). 2022 Mar 25;15(7):2435. doi: 10.3390/ma15072435.
Polymer-infiltrated ceramic network materials (PICNs) have high mechanical compatibility with human enamel. However, the wear properties of PICN against natural human enamel have not yet been clarified. We investigated the in vitro two-body wear behaviors of PICNs and an enamel antagonist. Two PICNs were used: Experimental PICN (EXP) prepared via the infiltration of methacrylate-based resin into the porous silica ceramic network and commercial Vita Enamic (ENA). Two commercial dental ceramics, lithium disilicate glass (LDS) and zirconia (ZIR), were also characterized, and their wear performance was compared to PICNs. The samples were subjected to Vickers hardness tests and two-body wear tests that involve the samples being cyclically impacted by enamel antagonists underwater at 37 °C. The results reveal that the Vickers hardness of EXP (301 ± 36) was closest to that of enamel (317 ± 17). The volumetric wear losses of EXP and ENA were similar to those of LDS but higher than that of zirconia. The volumetric wear loss of the enamel antagonist impacted against EXP was moderate among the examined samples. These results suggest that EXP has wear behavior similar to that of enamel. Therefore, PICNs are mechanically comparable to enamel in terms of hardness and wear and are excellent tooth-restoration materials.
聚合物渗透陶瓷网络材料(PICNs)与人类牙釉质具有高度的机械相容性。然而,PICN对天然人类牙釉质的磨损性能尚未明确。我们研究了PICNs与牙釉质拮抗剂的体外双体磨损行为。使用了两种PICNs:通过将甲基丙烯酸酯基树脂渗透到多孔二氧化硅陶瓷网络中制备的实验性PICN(EXP)和商业用维他义获嘉瓷(ENA)。还对两种商业牙科陶瓷,二硅酸锂玻璃(LDS)和氧化锆(ZIR)进行了表征,并将它们的磨损性能与PICNs进行了比较。对样品进行维氏硬度测试和双体磨损测试,其中包括样品在37°C水下受到牙釉质拮抗剂的循环冲击。结果表明,EXP的维氏硬度(301±36)最接近牙釉质的维氏硬度(317±17)。EXP和ENA的体积磨损损失与LDS相似,但高于氧化锆。在所检查的样品中,牙釉质拮抗剂对EXP的体积磨损损失适中。这些结果表明,EXP具有与牙釉质相似的磨损行为。因此,PICNs在硬度和磨损方面在机械性能上与牙釉质相当,是优异的牙齿修复材料。