The combination of mesoporous bioactive glass with fibrin and antibiotic for bone regeneration

Lei-Yen Chen, Wei-Chuan Chen, Hsia-Wei Liu, Hsiao-Mei Lin, Hsien-Tao Liu, Chih‐Hwa Chen
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Abstract

Background: A mesoporous bioactive glass (MBG) with a highly specific surface area and well-ordered pores is a suitable material to carry antibiotics. Fibrin and mesenchymal stem cells are used in promoting tissue repair and osteogenesis, respectively. Purposes: Tobramycin-loaded mesoporous bioactive glass (TMBG), fibrin and mesenchymal stem cells are used in this study to promote osteogenesis and against bacterial contamination in vitro. Methods: MBG was synthesized in a two-step acid-catalyzed self-assembly process with hydrothermal treatment. Tobramycin was loaded with MBG and fibrin to make a TMBG fibrin complex. The cell proliferation, osteogenic differentiation, Live/Dead staining and antibiotics inhibition zone test were evaluated for TMBG fibrin complex. Results: The experimental results showed a well-ordered hexagonally structured bioactive glass was synthesized. The TMBG fibrin complex cultivated with rabbit bone marrow mesenchymal stem cells (RBMSCs) showed good biocompatibility and increased expression of collagen type I, OPN, OCN and RUNX2 in cultivation period. The inhibition zone of TMBG fibrin complex increased while the concentration of tobramycin increased against Staphylococcus aureus and Pseudomonas aeruginosa. In addition, the TMBG fibrin complex (with 0.5% tobramycin) had the same antibacterial effect as 10 mg tobramycin. Conclusions: Based on the results mentioned above, the TMBG fibrin complex showed antibacterial effect and exhibited great biocompatibility a potential biomaterial for bone tissue engineering.
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介孔生物活性玻璃与纤维蛋白和抗生素的结合用于骨再生
背景:具有高比表面积和有序孔的介孔生物活性玻璃(MBG)是一种适合携带抗生素的材料。纤维蛋白和间充质干细胞分别用于促进组织修复和骨生成。目的:本研究利用妥布霉素负载的介孔生物活性玻璃(TMBG)、纤维蛋白和间充质干细胞促进体外成骨和抗细菌污染。方法:采用两步酸催化水热自组装法合成MBG。妥布霉素装载MBG和纤维蛋白,形成TMBG纤维蛋白复合物。对TMBG纤维蛋白复合物进行细胞增殖、成骨分化、活/死染色和抗生素抑制带试验。结果:实验结果表明,合成了有序的六边形生物活性玻璃。兔骨髓间充质干细胞(RBMSCs)培养的TMBG纤维蛋白复合物具有良好的生物相容性,培养期间I型胶原、OPN、OCN和RUNX2表达增加。随着妥布霉素浓度的增加,TMBG纤维蛋白复合物对金黄色葡萄球菌和铜绿假单胞菌的抑制区增加。此外,添加0.5%妥布霉素的TMBG纤维蛋白复合物与10 mg妥布霉素具有相同的抗菌效果。结论:基于上述结果,TMBG纤维蛋白复合物具有抗菌作用和良好的生物相容性,是一种潜在的骨组织工程生物材料。
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