Federal University of Minas Gerais-UFMG, Department of Metallurgical and Materials Engineering, Pampulha, Belo Horizonte, MG, Brazil.
Acta Biomater. 2010 Aug;6(8):3056-66. doi: 10.1016/j.actbio.2010.02.036. Epub 2010 Mar 1.
Two types of photopolymerizable and injectable polyurethane acrylates (PUAs), based on poly(propylene glycol) or poly(caprolactone diol) and hydroxyethyl methacrylate, were synthesized and characterized in order to obtain information regarding their use as an injectable material for biomedical applications. Structural characteristics of the biomaterials, including the degree of phase separation, were evaluated by Fourier transform infrared spectroscopy. The viscosities of the obtained biomaterials make them suitable for injection, molding and photopolymerization using visible light, as demonstrated by the injection test. The cured polymers had mechanical properties comparable to those of certain soft tissues, such as skin. An in vitro cell-polyurethane cytotoxicity study was carried out with mesenchymal stem cells from rat tibias and femurs. The proliferation/viability of the cells in the presence of the synthesized material was assessed by the MTT assay, collagen synthesis analysis and the expression of alkaline phosphatase. The results that were obtained through the in vitro tests indicated that PUAs are cytocompatible. The in vivo experiments were correlated with the in vitro tests and showed low levels of toxicity for the obtained biomaterials. Histology cross-sections showed that the biomaterials induced no significant inflammatory reaction. Our study demonstrates the potential for using synthesized photocurable polyurethanes in biomedical applications. Furthermore, the obtained injectable polymer systems employ minimally invasive procedures and can be molded in situ before photopolymerization with visible light.
为了获得有关其作为可注射生物医学材料的用途的信息,合成并表征了两种基于聚(丙二醇)或聚(己内酯二醇)和羟乙基甲基丙烯酸酯的光聚合性可注射型聚氨酯丙烯酸酯(PUA)。通过傅立叶变换红外光谱评估了生物材料的结构特征,包括相分离程度。通过注射试验证明,所得到的生物材料的粘度使其适合于注射、模制和可见光光聚合。固化聚合物具有与某些软组织(如皮肤)相当的机械性能。通过大鼠胫骨和股骨间充质干细胞进行了体外细胞-聚氨酯细胞毒性研究。通过 MTT 测定、胶原蛋白合成分析和碱性磷酸酶表达评估了存在合成材料时细胞的增殖/活力。通过体外试验获得的结果表明 PUA 是细胞相容的。体内实验与体外实验相关联,表明所获得的生物材料的毒性较低。组织学横截面显示,生物材料未引起明显的炎症反应。我们的研究表明,合成光固化聚氨酯在生物医学应用中具有潜力。此外,所得到的可注射聚合物体系采用微创程序,并可以在可见光光聚合之前原位模制。