Department of Life Sciences, University of Trieste, Via Giorgieri 1, Trieste I-34127, Italy.
Biomacromolecules. 2012 May 14;13(5):1564-72. doi: 10.1021/bm3002683. Epub 2012 Apr 24.
The long-term stability and success of orthopedic implants depend on the osseointegration process, which is strongly influenced by the biomaterial surface. A promising approach to enhance implant integration involves the modification of the surface of the implant by means of polymers that mimic the natural components of the extracellular matrix, for example, polysaccharides. In this study, methacrylate thermosets (bisphenol A glycidylmethacrylate/triethyleneglycol dimethacrylate), a widely used composition for orthopedic and dental applications, have been coated by electrostatic deposition of a bioactive chitosan-derivative. This polysaccharide was shown to induce osteoblasts aggregation in vitro, to stimulate cell proliferation and to enhance alkaline phosphatase activity. The coating deposition was studied by analyzing the effect of pH and ionic strength on the grafting of the polysaccharide. Contact angle studies show that the functionalized material displays a higher hydrophilic character owing to the increase of surface polar groups. The mechanical properties of the coating were evaluated by nanoindentation studies which point to higher values of indentation hardness and modulus (E) of the polysaccharide surface layer, while the influence of cyclic stress on the construct was assessed by fatigue tests. Finally, in vivo tests in minipigs showed that the polysaccharide-based implant showed a good biocompatibility and an ability for osseointegration at least similar to that of the titanium Ti6Al4V alloy with roughened surface.
骨科植入物的长期稳定性和成功取决于骨整合过程,而这一过程受到生物材料表面的强烈影响。一种增强植入物整合的有前途的方法是通过聚合物来修饰植入物的表面,这些聚合物模拟细胞外基质的天然成分,例如多糖。在这项研究中,已通过静电沉积生物活性壳聚糖衍生物对用于骨科和牙科应用的广泛使用的甲基丙烯酸酯热固性材料(双酚 A 缩水甘油甲基丙烯酸酯/三乙二醇二甲基丙烯酸酯)进行了涂层处理。该多糖在体外被证明可诱导成骨细胞聚集,刺激细胞增殖并增强碱性磷酸酶活性。通过分析 pH 值和离子强度对多糖接枝的影响来研究涂层沉积。接触角研究表明,由于表面极性基团的增加,功能化材料显示出更高的亲水性。通过纳米压痕研究评估了涂层的机械性能,该研究表明多糖表面层的压痕硬度和模量(E)值较高,而通过疲劳试验评估了循环应力对构建体的影响。最后,在小型猪体内试验中表明,基于多糖的植入物表现出良好的生物相容性和骨整合能力,至少与表面粗糙化的钛 Ti6Al4V 合金相当。