Widodo Puji, Mulyawan Wawan, Djustiana Nina, Joni I Made
Dentistry Department, Post Graduate School, Faculty of Dentistry, Universitas Padjadjaran, Jalan Sekeloa Selatan 1, Bandung 40132, Indonesia.
Functional Nano Powder University Center of Excellence, Universitas Padjadjaran, Jalan Raya Bandung-Sumedang KM 21, Jatinangor, Sumedang 45363, Indonesia.
Dent J (Basel). 2023 Feb 22;11(3):57. doi: 10.3390/dj11030057.
This study aimed to enhance the mechanical properties of PMMA composites by introducing various types of fillers, including ZrO, SiO, and a mixture of ZrO-SiO nanoparticles, which were prepared as prototypes for an endodontic implant. The ZrO, SiO, and mixed ZrO-SiO nanoparticles were synthesized using the sol-gel method and the precursors Tetraethyl Orthosilicate, Zirconium Oxychloride, and a mixture of both precursors, respectively. Before polymerization, the as-synthesized powders were subjected to the bead milling process to obtain a well-dispersed suspension. Two scenarios for the fillers were implemented in the preparation of the PMMA composite: a mixture of ZrO/SiO and ZrO-SiO mixed with two different types of silane: (3-Mercaptopropyl) trimethoxysilane (MPTS) and 3-(Trimethoxysilyl) Propyl Methacrylate (TMSPMA). The observation of the characteristics of all of the investigated fillers included the use of a particle-size analyzer (PSA), a Zeta-potential analyzer, FTIR, XRF, XRD, and SEM. The mechanical properties of the MMA composites, as prepared under various scenarios, were observed in terms of their flexural strength, diametrical tensile strength (DTS), and modulus of elasticity (ME). These levels of performance were compared with a PMMA-only polymer. Each sample was measured five times for flexural strength, DTS, and ME. The results showed that the best PMMA composite was SiO/ZrO/TMSPMA, as revealed by measurements of the flexural strength, DTS, and ME corresponding to 152.7 ± 13.0 MPa, 51.2 ± 0.6 MPa, and 9272.8 ± 2481.4 MPa, which are close to the mechanical properties of dentin. The viability of these PMMA composites, as measured up to day 7, was 93.61%, indicating that they are nontoxic biomaterials. Therefore, it was concluded that the PMMA composite created with SiO/ZrO/TMSPMA can be considered to be an acceptable endodontic implant.
本研究旨在通过引入各种类型的填料来增强聚甲基丙烯酸甲酯(PMMA)复合材料的机械性能,这些填料包括氧化锆(ZrO)、二氧化硅(SiO)以及氧化锆 - 二氧化硅纳米颗粒混合物,它们被制备为牙髓植入物的原型。氧化锆、二氧化硅以及混合的氧化锆 - 二氧化硅纳米颗粒分别使用溶胶 - 凝胶法,以前体正硅酸四乙酯、氧氯化锆以及两者的混合物合成。在聚合之前,将合成后的粉末进行珠磨工艺以获得分散良好的悬浮液。在制备PMMA复合材料时实施了两种填料方案:氧化锆/二氧化硅混合物以及氧化锆 - 二氧化硅与两种不同类型的硅烷混合:(3 - 巯基丙基)三甲氧基硅烷(MPTS)和3 - (三甲氧基甲硅烷基)丙基甲基丙烯酸酯(TMSPMA)。对所有研究填料特性的观察包括使用粒度分析仪(PSA)、zeta电位分析仪、傅里叶变换红外光谱仪(FTIR)、X射线荧光光谱仪(XRF)、X射线衍射仪(XRD)和扫描电子显微镜(SEM)。在各种情况下制备的甲基丙烯酸甲酯(MMA)复合材料的机械性能通过其弯曲强度、径向拉伸强度(DTS)和弹性模量(ME)进行观察。将这些性能水平与仅含PMMA的聚合物进行比较。每个样品的弯曲强度、DTS和ME均测量五次。结果表明,最佳的PMMA复合材料是SiO/ZrO/TMSPMA,其弯曲强度、DTS和ME的测量值分别对应152.7±13.0兆帕、51.2±0.6兆帕和9272.8±2481.4兆帕,接近牙本质的机械性能。这些PMMA复合材料在长达7天的测量中,存活率为93.61%,表明它们是无毒生物材料。因此,得出结论,由SiO/ZrO/TMSPMA制成的PMMA复合材料可被认为是一种可接受的牙髓植入物。