Turjanski Sarah, Par Matej, Bergman Lana, Soče Majana, Grego Timor, Klarić Sever Eva
Department of Pedodontics, School of Dental Medicine, University of Zagreb, Gunduliceva 5, 10000 Zagreb, Croatia.
Department of Endodontics and Restorative Dentistry, School of Dental Medicine, University of Zagreb, Gunduliceva 5, 10000 Zagreb, Croatia.
Polymers (Basel). 2023 Jan 26;15(3):632. doi: 10.3390/polym15030632.
This study aimed to investigate the effects of radiotherapy on the mechanical, chemical, and surface properties of two recently introduced restorative dental materials (a glass hybrid and an alkasite), while two conventional restorative materials served as references. Material specimens of the experimental groups (irradiated) were compared to the specimens of the control groups that underwent the same preparation procedure but without irradiation. The experimental groups of restorative material specimens were irradiated with a total of 70 Gy over 35 days (2 Gy/day × 35 days), while the control groups received no treatment. The following properties were evaluated: surface microhardness (Vickers), surface roughness, color change, flexural strength, flexural modulus, material reliability, and infrared spectra. For the experimental groups, measurements were performed 24 h after specimen preparation, i.e., before radiotherapy and after the completion of the irradiation protocol. For the control groups, measurements were performed after the corresponding periods of no treatment. A statistically significant increase in microhardness ( = 0.001-0.004) and surface roughness ( = 0.013) was observed as a result of material aging/maturation in both the control and experimental groups. However, the only statistically significant difference between the control and experimental groups was observed in the discoloration of the conventional reference material ( < 0.001). In conclusion, no statistically significant negative effects of a therapeutic dose of radiotherapy on any of the tested properties of the alkasite and glass hybrid materials were observed, whereas only a minor negative effect of radiotherapy in terms of discoloration was found for a conventional resin composite that was used as a reference material.
本研究旨在调查放射治疗对两种最近推出的牙科修复材料(一种玻璃离子复合体和一种碱硅玻璃陶瓷)的机械、化学和表面性能的影响,同时将两种传统修复材料作为对照。将实验组(接受照射)的材料样本与经历相同制备过程但未接受照射的对照组样本进行比较。修复材料样本的实验组在35天内共接受70 Gy的照射(2 Gy/天×35天),而对照组不接受任何处理。评估了以下性能:表面显微硬度(维氏硬度)、表面粗糙度、颜色变化、弯曲强度、弯曲模量、材料可靠性和红外光谱。对于实验组,在样本制备后24小时进行测量,即在放射治疗前和照射方案完成后。对于对照组,在相应的未处理时间段后进行测量。由于材料老化/成熟,对照组和实验组的显微硬度(P = 0.001 - 0.004)和表面粗糙度(P = 0.013)均出现统计学上的显著增加。然而,对照组和实验组之间唯一具有统计学意义的差异在于传统对照材料的变色(P < 0.001)。总之,未观察到治疗剂量的放射治疗对碱硅玻璃陶瓷和玻璃离子复合体材料的任何测试性能产生统计学上的显著负面影响,而对于用作对照材料的传统树脂复合材料,仅发现放射治疗在变色方面有轻微负面影响。