State Key Laboratory of Oral Diseases, West China Hospital of Stomatology, Sichuan University , Chengdu , China.
Research Center for Nano-Biomaterials, Analytical and Testing Center, Sichuan University , Chengdu , China.
J Biomater Sci Polym Ed. 2019 Nov;30(16):1505-1522. doi: 10.1080/09205063.2019.1646628. Epub 2019 Aug 13.
Membranes play pivotal role in guided bone regeneration (GBR) technique for reconstruction alveolar bone. GBR membrane that is able to stimulate both osteogenic and angiogenic differentiation of cells may be more effective in clinic practice. Herein, we fabricated the Sr-doped calcium phosphate/polycaprolactone/chitosan (Sr-CaP/PCL/CS) nanohybrid fibrous membrane by incorporating 20 wt% bioactive Sr-CaP nanoparticles into PCL/CS matrix via one-step electrospinning method, in order to endow the membrane with stimulation of osteogenesis and angiogenesis. The physicochemical properties, mechanical properties, Sr release behavior, and the membrane stimulate bone mesenchymal stem cell (BMSCs) differentiation were evaluated in comparison with PCL/CS and CaP/PCL/CS membranes. The SEM images revealed that the nanocomposite membrane mimicked the extracellular matrix structure. The release curve presented a 28-day long continuous release of Sr and concentration which was certified in an optimal range for positive biological effects at each timepoint. The in vitro cell culture experiments certified that the Sr-CaP/PCL/CS membrane enjoyed excellent biocompatibility and remarkably promoted rat bone mesenchymal stem cell (BMSCs) adhesion and proliferation. In terms of osteogenic differentiation, BMSCs seeded on the Sr-CaP/PCL/CS membrane showed a higher ALP activity level and a better matrix mineralization. What's more, the synergism of the Sr and CaP from the Sr-CaP/PCL/CS membrane enhanced BMSCs angiogenic differentiation, herein resulting in the largest VEGF secretion amount. Consequently, the Sr-CaP/PCL/CS nanohybrid electrospun membrane has promising applications in GBR.
在引导骨再生(GBR)技术中,膜在牙槽骨重建中起着关键作用。能够刺激细胞成骨和血管生成分化的 GBR 膜在临床实践中可能更有效。在此,我们通过将 20wt%的生物活性 Sr-CaP 纳米粒子掺入 PCL/CS 基质中,通过一步静电纺丝法制备了 Sr 掺杂的磷酸钙/聚己内酯/壳聚糖(Sr-CaP/PCL/CS)纳米杂化纤维膜,以使膜具有刺激成骨和血管生成的作用。与 PCL/CS 和 CaP/PCL/CS 膜相比,评估了膜的物理化学性质、力学性能、Sr 释放行为以及膜对骨髓间充质干细胞(BMSCs)分化的刺激作用。SEM 图像显示纳米复合膜模拟了细胞外基质的结构。释放曲线呈现出 28 天的 Sr 持续释放,并且在每个时间点的浓度都在促进积极生物学效应的最佳范围内。体外细胞培养实验证明,Sr-CaP/PCL/CS 膜具有良好的生物相容性,并显著促进大鼠骨髓间充质干细胞(BMSCs)的黏附和增殖。在成骨分化方面,接种在 Sr-CaP/PCL/CS 膜上的 BMSCs 表现出更高的 ALP 活性水平和更好的基质矿化。更重要的是,Sr-CaP/PCL/CS 膜中的 Sr 和 CaP 的协同作用增强了 BMSCs 的血管生成分化,从而导致最大的 VEGF 分泌量。因此,Sr-CaP/PCL/CS 纳米杂化静电纺丝膜在 GBR 中有很好的应用前景。