Barapatre Deepali, Somkuwar Surabhi, Mishra Sunil Kumar, Chowdhary Ramesh
Department of Prosthodontics, People's College of Dental Sciences and Research Centre, Bhopal, Madhya Pradesh India.
Department of Dentistry, All India Institute of Medical Sciences, Raipur, Chhattisgarh India.
Eur Oral Res. 2022 May 5;56(2):61-66. doi: 10.26650/eor.2022904564.
Polymethylmethacrylate denture bases are prone to fracture, so reinforcement of dentures with nanoparticles is required to overcome these challenges. This invitro study was done to assess the effect of reinforcement with nanoparticles of polyetheretherketone (PEEK), zirconium oxide (ZrO2) and its mixture on flexural strength of polymethylmeythacrylate resin.
A total of 60 acrylic resin specimens measuring 65 mm × 10 mm × 2.5 mm were fabricated. The specimens were divided in to fifteen specimens in each group [control group (C), 3wt% PEEK group (P), 3wt% zirconia group (Z), and hybrid reinforcement of 1.5wt% PEEK and 1.5wt% ZrO2 group (P-Z)]. The flexural strength of the specimens was evaluated using a three-point bending test on a universal testing machine. The statistical analysis was done using one-way analysis of variance (ANOVA), and the intergroup comparison was done using Tukey's post hoc analysis.
The mean flexural strength was maximum in group P-Z (98.73MPa) followed by group P (86.22 MPa) and group Z (84.48 MPa). The mean flexural strength was least in the control group (74.86MPa). One-way ANOVA revealed a highly significant (P<0.01) difference among the groups. Pairwise comparison among groups showed a significant difference (P<0.05) among all the groups except in between groups P and Z where no significant difference was found (P=0.406).
Hybrid reinforced PEEK and zirconia could be used as an effective reinforcement material for denture base resin. The hybrid PEEK and zirconia reinforced resin can be an alternative treatment option in patients with heavy occlusal forces and for patients who have previous experience of multiple denture fractures.
聚甲基丙烯酸甲酯义齿基托容易断裂,因此需要用纳米颗粒增强义齿以克服这些挑战。本体外研究旨在评估聚醚醚酮(PEEK)、氧化锆(ZrO2)及其混合物的纳米颗粒增强对聚甲基丙烯酸甲酯树脂弯曲强度的影响。
共制作60个尺寸为65mm×10mm×2.5mm的丙烯酸树脂标本。标本分为四组,每组15个标本[对照组(C)、3wt% PEEK组(P)、3wt%氧化锆组(Z)以及1.5wt% PEEK与1.5wt% ZrO2的混合增强组(P-Z)]。使用万能试验机通过三点弯曲试验评估标本的弯曲强度。采用单因素方差分析(ANOVA)进行统计分析,组间比较采用Tukey事后分析。
P-Z组的平均弯曲强度最高(98.73MPa),其次是P组(86.22MPa)和Z组(84.48MPa)。对照组的平均弯曲强度最低(74.86MPa)。单因素方差分析显示各组之间存在高度显著差异(P<0.01)。组间两两比较显示,除P组和Z组之间无显著差异(P=0.406)外,所有组之间均存在显著差异(P<0.05)。
PEEK与氧化锆混合增强材料可作为义齿基托树脂的有效增强材料。PEEK与氧化锆增强树脂可作为咬合力大的患者以及有多次义齿断裂经历患者的替代治疗选择。