Liu Laijun, Li Chaojing, Liu Xingxing, Jiao Yongjie, Wang Fujun, Jiang Guansen, Wang Lu
Key Laboratory of Textile Science and Technology of Ministry of Education and College of Textiles, Donghua University, 2999 North Renmin Road, Shanghai 201620, China.
Engineering Research Center of Technical Textiles, Ministry of Education, Donghua University, Shanghai 201620, China.
ACS Biomater Sci Eng. 2020 Aug 10;6(8):4631-4643. doi: 10.1021/acsbiomaterials.0c00511. Epub 2020 Jul 10.
The periosteum plays a very important role in bone remodeling and regeneration due to its excellent osteogenic ability. However, in bone defects, the periosteum is inevitably damaged, has poor self-repair ability, and requires artificial materials as a substitute. This study is aimed to fabricate a highly bioactive poly(ε-caprolactone)/tricalcium phosphate sol (PCL/TCP sol) hybrid membrane as an artificial periosteum covering the surface of the bone defect to enhance bone regeneration. Three kinds of PCL membranes with different TCP contents were prepared and marked as P20T1 (4.8 wt %), P10T1 (9.1 wt %), and P5T1 (16.7 wt %). The physicochemical properties' evaluation confirmed that TCP sol was homogeneously dispersed in the PCL nanofibers. Compared with P5T1, samples P10T1 and P20T1 had enhanced the mechanical properties and a moderately hydrophilic surface (67.3 ± 2.4° for P20T1 and 48.9 ± 4.1° for P10T1). The biomineralization of hybrid membranes was significantly improved compared to the PCL membrane. Moreover, hybrid membranes significantly upregulated the rat bone marrow mesenchymal stem cells' (rBMSCs) response (proliferation and osteogenic differentiation) to them, and P10T1 showed better surface properties (hydrophilicity, bioactivity, and biomineralization) than P20T1. Thus, sample P10T1 with the best properties in this study has great potential as an artificial periosteum to accelerate bone regeneration.
由于骨膜具有出色的成骨能力,其在骨重塑和再生过程中发挥着非常重要的作用。然而,在骨缺损情况下,骨膜不可避免地会受到损伤,自我修复能力较差,需要人工材料作为替代。本研究旨在制备一种具有高生物活性的聚(ε-己内酯)/磷酸三钙溶胶(PCL/TCP溶胶)复合膜作为人工骨膜,覆盖在骨缺损表面以促进骨再生。制备了三种不同TCP含量的PCL膜,分别标记为P20T1(4.8 wt%)、P10T1(9.1 wt%)和P5T1(16.7 wt%)。对其理化性质的评估证实,TCP溶胶均匀分散在PCL纳米纤维中。与P5T1相比,P10T1和P20T1样品的机械性能有所增强,且表面具有适度的亲水性(P20T1为67.3±2.4°,P10T1为48.9±4.1°)。与PCL膜相比,复合膜的生物矿化性能得到显著改善。此外,复合膜显著上调了大鼠骨髓间充质干细胞(rBMSCs)对其的反应(增殖和成骨分化),且P10T1的表面性能(亲水性、生物活性和生物矿化)优于P20T1。因此,本研究中性能最佳的P10T1样品作为人工骨膜具有加速骨再生的巨大潜力。