Instituto de Biotecnologia e Bioengenharia, Centro de Engenharia Biológica, Universidade do Minho, Campus de Gualtar, 4710-057 Braga, Portugal.
J Mater Sci Mater Med. 2013 Sep;24(9):2145-55. doi: 10.1007/s10856-013-4971-9. Epub 2013 Jun 12.
A novel hydrogel, based on an alginate/hyaluronate mixture and Ce(III) ions, with effective bioactive and antimicrobial ability was developed to be used as vehicle of a synthetic bone substitute producing an injectable substitute (IBS). Firstly, three different IBSs were prepared using three developed alginate-based hydrogels, the hydrogel Alg composed by alginate, the hydrogel Alg/Ch composed by an alginate/chitosan mixture and the hydrogel Alg/HA composed by an alginate/hyaluronate mixture. MG63 cells viability on the IBSs was evaluated, being observed a significantly higher cell viability on the Alg/HA_IBS at all time points, which indicates a better cell adaptation to the material, increasing their predisposition to produce extracellular matrix and thus allowing a better bone regeneration. Moreover, SEM analysis showed evident filopodia and a spreader shape of MG63 cells when seeded on Alg/HA_IBS. This way, based upon the in vitro results, the hydrogel Alg/HA was chosen to the in vivo study by subcutaneous implantation in an animal model, promoting a slight irritating tissue response and visible tissue repairing. The next step was to grant antimicrobial properties to the hydrogel that showed the best biological behavior by incorporation of Ce(III) ions into the Alg/HA, producing the hydrogel Alg/HA2. The antimicrobial activity of these hyaluronate-based hydrogels was evaluated against Staphylococcus aureus, Staphylococcus epidermidis, Pseudomonas aeruginosa and Candida albicans. Results showed that Ce(III) ions can significantly enhance the hydrogel antimicrobial ability without compromising the osteoconductivity improvement promoted by the vehicle association to the synthetic bone substitute.
一种新型水凝胶,基于藻酸盐/透明质酸盐混合物和 Ce(III)离子,具有有效的生物活性和抗菌能力,被开发用作合成骨替代物的载体,产生可注射替代物(IBS)。首先,使用三种不同的开发的藻酸盐基水凝胶制备了三种不同的 IBS,水凝胶 Alg 由藻酸盐组成,水凝胶 Alg/Ch 由藻酸盐/壳聚糖混合物组成,水凝胶 Alg/HA 由藻酸盐/透明质酸盐混合物组成。评估了 IBS 上 MG63 细胞的活力,在所有时间点上,Alg/HA_IBS 上的细胞活力明显更高,这表明细胞对材料的适应性更好,增加了它们产生细胞外基质的倾向,从而允许更好的骨再生。此外,SEM 分析表明,当在 Alg/HA_IBS 上接种时,MG63 细胞具有明显的丝状伪足和伸展形状。因此,根据体外结果,选择具有最佳生物行为的藻酸盐/透明质酸盐水凝胶 Alg/HA 进行体内研究,通过在动物模型中皮下植入,促进轻微的刺激性组织反应和可见的组织修复。下一步是通过将 Ce(III)离子掺入 Alg/HA 中来赋予水凝胶抗菌性能,从而产生水凝胶 Alg/HA2。评估这些透明质酸盐基水凝胶对金黄色葡萄球菌、表皮葡萄球菌、铜绿假单胞菌和白色念珠菌的抗菌活性。结果表明,Ce(III)离子可以显著增强水凝胶的抗菌能力,而不会损害载体与合成骨替代物结合所促进的骨传导性改善。