College of Medical, Henan University of Science and Technology, Luoyang, 471023, China.
The Second Affiliated Hospital of Chinese Medicine, Guangzhou University of Chinese Medicine, 510006, Guangzhou, China.
Colloids Surf B Biointerfaces. 2021 Aug;204:111808. doi: 10.1016/j.colsurfb.2021.111808. Epub 2021 Apr 30.
Biocompatible polymers and drug delivery vehicles have been driving development in bone regeneration. However, most bone scaffolds show poor degradation and proliferation. In this study, a composite microsphere scaffold was prepared using vancomycin hydrochloride(VH)-loaded polytrimethylene carbonate(PTMC) microsphere (PTMC-VH). Adopting a thermal technique, a three-dimensional oleic acid-modified tricalcium phosphate (PTMC-OA-TCP)/PTMC-VH microsphere scaffold was prepared. It had a porosity of 41-47 % and pore size of 129-154 μm. The highest drug loading and release efficiency were obtained with the scaffold produced using 2.4 % polymer concentration and 0.5 %polyvinyl alcohol. The scaffold with PTMC-VH microsphereshad enhancedmechanical properties, water absorption capacity, and degradation. In addition, the PTMC-OA-TCP scaffold had comparable performance with bone cement control in terms of bone regeneration in vivo. In summary, the prepared bioactive scaffolds, which had favorable mechanical properties and facilitated osteogenesis, could be a promising alternative for bone cement in bone tissue engineering.
生物相容性聚合物和药物输送载体一直是骨再生领域的发展动力。然而,大多数骨支架的降解和增殖性能较差。在本研究中,采用盐酸万古霉素(VH)负载的聚三亚甲基碳酸酯(PTMC)微球(PTMC-VH)制备了复合微球支架。采用热技术,制备了三维油酸修饰的磷酸三钙(PTMC-OA-TCP)/PTMC-VH 微球支架。其孔隙率为 41-47%,孔径为 129-154μm。当使用 2.4%的聚合物浓度和 0.5%的聚乙烯醇制备支架时,可获得最高的载药量和释放效率。具有 PTMC-VH 微球的支架具有增强的机械性能、吸水性和降解性。此外,PTMC-OA-TCP 支架在体内骨再生方面的性能与骨水泥对照相当。总之,所制备的具有良好机械性能和促进成骨作用的生物活性支架可能成为骨组织工程中骨水泥的一种有前途的替代品。