Albasarah Sara, Al Abdulghani Hanan, Alaseef Nawarah, Al-Qarni Faisal D, Akhtar Sultan, Khan Soban Q, Ateeq Ijlal Shahrukh, Gad Mohammed M
College of Dentistry, Imam Abdulrahman Bin Faisal University, Dammam, Saudi Arabia.
Department of Substitutive Dental Sciences, College of Dentistry, Imam Abdulrahman Bin Faisal University, Dammam, Saudi Arabia.
J Adv Prosthodont. 2021 Aug;13(4):226-236. doi: 10.4047/jap.2021.13.4.226. Epub 2021 Aug 26.
This study aimed to evaluate the effect of incorporating zirconium oxide nanoparticles (nano-ZrO) in polymethylmethacrylate (PMMA) denture base resin on flexural properties at different material thicknesses.
Heat polymerized acrylic resin specimens (N = 120) were fabricated and divided into 4 groups according to denture base thickness (2.5 mm, 2.0 mm, 1.5 mm, 1.0 mm). Each group was subdivided into 3 subgroups (n = 10) according to nano-ZrO concentration (0%, 2.5%, and 5%). Flexural strength and elastic modulus were evaluated using a three-point bending test. One-way ANOVA, Tukey's post hoc, and two-way ANOVA were used for data analysis (α = .05). Scanning electron microscopy (SEM) was used for fracture surface analysis and nanoparticles distributions.
Groups with 0% nano-ZrO showed no significant difference in the flexural strength as thickness decreased ( = .153). The addition of nano-zirconia significantly increased the flexural strength ( < .001). The highest value was with 5% nano-ZrO and 2 mm-thickness (125.4 ± 18.3 MPa), followed by 5% nano-ZrO and 1.5 mm-thickness (110.3 ± 8.5 MPa). Moreover, the effect of various concentration levels on elastic modulus was statistically significant for 2 mm thickness ( = .001), but the combined effect of thickness and concentration on elastic modulus was insignificant ( = .10).
Reinforcement of denture base material with nano-ZrO significantly increased flexural strength and modulus of elasticity. Reducing material thickness did not decrease flexural strength when nano-ZrO was incorporated. In clinical practice, when low thickness of denture base material is indicated, PMMA/nano-ZrO could be used with minimum acceptable thickness of 1.5 mm.
本研究旨在评估在聚甲基丙烯酸甲酯(PMMA)义齿基托树脂中加入氧化锆纳米颗粒(纳米ZrO)对不同材料厚度下弯曲性能的影响。
制作热聚合丙烯酸树脂标本(N = 120),并根据义齿基托厚度(2.5毫米、2.0毫米、1.5毫米、1.0毫米)分为4组。每组根据纳米ZrO浓度(0%、2.5%和5%)再细分为3个亚组(n = 10)。使用三点弯曲试验评估弯曲强度和弹性模量。采用单因素方差分析、Tukey事后检验和双因素方差分析进行数据分析(α = 0.05)。使用扫描电子显微镜(SEM)进行断裂表面分析和纳米颗粒分布分析。
纳米ZrO含量为0%的组,随着厚度减小,弯曲强度无显著差异(P = 0.153)。添加纳米氧化锆显著提高了弯曲强度(P < 0.001)。最高值出现在纳米ZrO含量为5%且厚度为2毫米时(125.4±18.3兆帕),其次是纳米ZrO含量为5%且厚度为1.5毫米时(110.3±8.5兆帕)。此外,对于2毫米厚度,不同浓度水平对弹性模量的影响具有统计学意义(P = 0.001),但厚度和浓度对弹性模量的联合影响不显著(P = 0.10)。
用纳米ZrO增强义齿基托材料可显著提高弯曲强度和弹性模量。当加入纳米ZrO时,减小材料厚度不会降低弯曲强度。在临床实践中,当义齿基托材料厚度要求较低时,PMMA/纳米ZrO可用于最小可接受厚度为1.5毫米的情况。