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Modulus, Strength and Cytotoxicity of PMMA-Silica Nanocomposites

机译:PMMA二氧化硅纳米复合材料的模量,强度和细胞毒性

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Key advantages of Poly(methyl methacrylate)—PMMA for denture application are related to aesthetics and biocompatibility, while its main deficiency is related to mechanical properties. To address this issue, SiO2 nanoparticle reinforcement was proposed, containing 0 to 5% nanosilica, to form nanocomposite materials. Flexural strengths and elastic moduli were determined and correlated to nominal nanoparticle content and zeta potential of the liquid phase nanoparticle solutions. Another issue is the biocompatibility, which was determined in terms of cytotoxicity, using L929 and MRC5 cell lines. The addition of nanoparticle was proved to be beneficial for increasing flexural strength and modulus, causing a significant increase in both strength and moduli. On the other hand, the formation of agglomerates was noted, particularly at higher nanoparticle loadings, affecting mechanical properties. The addition of nanosilica had an adverse effect on the cytotoxicity, increasing it above the level present in unmodified specimens. Cytotoxic potential was on the acceptable level for specimens with up to 2% nanosilica. Consequently, nanosilica proved to be an effective and biocompatible means of increasing the resistance of dental materials.
机译:Poly(甲基丙烯酸甲酯)-PMMA用于义齿应用的主要优点与美学和生物相容性有关,其主要缺陷与机械性能有关。为了解决该问题,提出了SiO2纳米粒子增强,含有0至5%纳米硅藻,形成纳米复合材料。确定弯曲强度和弹性模量与液相纳米颗粒溶液的标称纳米颗粒含量和Zeta电位相关。另一个问题是使用L929和MRC5细胞系在细胞毒性方面确定的生物相容性。证明纳米粒子的加入是有益的,因为增加弯曲强度和模量,导致强度和模量显着增加。另一方面,注意到聚集体的形成,特别是在较高的纳米颗粒载体处,影响机械性能。添加纳米硅对细胞毒性产生不利影响,将其增加在未修饰标本中存在的水平。细胞毒性潜力是标本可接受的水平,具有高达2%的纳米硅藻。因此,纳米硅证明是一种增加牙科材料抗性的有效和生物相容性的方法。

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