Avolio Roberto, D'Albore Marietta, Guarino Vincenzo, Gentile Gennaro, Cocca Maria Cristina, Zeppetelli Stefania, Errico Maria Emanuela, Avella Maurizio, Ambrosio Luigi
Institute for Polymers, Composites and Biomaterials, National Research Council of Italy, Via Campi Flegrei 34, 80078, Pozzuoli, Italy.
Institute for Polymers, Composites and Biomaterials, National Research Council of Italy, Mostra d'Oltremare, Pad.20, V.le Kennedy 54, 80125, Naples, Italy.
J Mater Sci Mater Med. 2016 Oct;27(10):153. doi: 10.1007/s10856-016-5765-7. Epub 2016 Sep 1.
The integration of inorganic nanoparticles into polymer matrices allows for the modification of physical properties as well as the implementation of new features for unexplored application fields. Here, we propose the study of a new metal/polymer nanocomposite fabricated by dispersing pure Ti nanoparticles into a poly(methylmetacrilate) matrix via solvent casting process, to investigate its potential use as new biomaterial for biomedical applications. We demonstrated that Ti nanoparticles embedded in the poly(methylmetacrilate) matrix can act as reinforcing agent, not negatively influencing the biological response of human mesenchymal stem cell in terms of cytotoxicity and cell viability. As a function of relative amount and surface treatment, Ti nanoparticles may enhance mechanical strength of the composite-ranging from 31.1 ± 2.5 to 43.7 ± 0.7 MPa-also contributing to biological response in terms of adhesion and proliferation mechanisms. In particular, for 1 wt% Ti, treated Ti nanoparticles improve cell materials recognition, as confirmed by higher cell spreading-quantified in terms of cell area via image analysis-locally promoting stronger interactions at cell matrix interface. At this stage, these preliminary results suggest a promising use of pure Ti nanoparticles as filler in polymer composites for biomedical applications.
将无机纳米粒子整合到聚合物基体中,可以改变其物理性质,并为未开发的应用领域实现新的功能。在此,我们提出对一种新型金属/聚合物纳米复合材料进行研究,该复合材料是通过溶剂浇铸法将纯钛纳米粒子分散到聚甲基丙烯酸甲酯基体中制备而成,旨在探究其作为生物医学应用新型生物材料的潜在用途。我们证明,嵌入聚甲基丙烯酸甲酯基体中的钛纳米粒子可作为增强剂,在细胞毒性和细胞活力方面不会对人间充质干细胞的生物学反应产生负面影响。作为相对含量和表面处理的函数,钛纳米粒子可提高复合材料的机械强度,范围从31.1±2.5到43.7±0.7兆帕,同时在黏附及增殖机制方面也对生物学反应有贡献。特别是对于1 wt%的钛,经处理的钛纳米粒子可改善细胞与材料的识别,通过图像分析以细胞面积量化的更高细胞铺展证实了这一点,局部促进了细胞与基质界面处更强的相互作用。现阶段,这些初步结果表明纯钛纳米粒子作为聚合物复合材料中的填料在生物医学应用方面具有广阔前景。