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Berberine/Ag nanoparticle embedded biomimetic calcium phosphate scaffolds for enhancing antibacterial function

机译:Berberine / Ag纳米粒子嵌入磷酸钙支架,用于增强抗菌功能

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摘要

In the past decade, biomimetic calcium phosphate (CaP) ceramics have been considered as practicable grafts and biomaterial substitutes in repairing jaw bone defect after tumor resection or traffic accident. Nowadays, increasing incidence of biomedical material-associated infection has raised a concern when applying these materials. In this work, a new porous CaP scaffold with antibacterial coating was proposed. This biomimetic scaffold was composited with berberine (BBR), Ag nanoparticles (nAg), and silk fibroin (SF). The micro-structures and phase composition of the scaffolds were analyzed. The cytocompatibility and osteogenic potential of the prepared samples were evaluated in vitro. The scaffolds held hierarchical structure: the first-level porous CaP ceramic with micron pores ranged from 250 to 600 mu m; the second-level spongy-like structure with abundant capillary pores ranged from 500 nm to 10 mu m; and the third-level structure was achieved by filling BBR, nAg, and SF gel coatings into the above porous structures. The experimental results showed that the antimicrobial capability of single BBR coating is inconspicuous. However, the introduction of nAg could significantly promote the antibacterial effect of scaffolds. At the same time, such scaffolds showed improved osteoinductivity. This new biomimetic CaP scaffold with antibacterial and osteoinductive properties may be a promising candidate for bone tissue engineering.
机译:在过去十年中,磷酸磷酸钙(帽)陶瓷已被认为是可行的移植物和生物材料替代品在肿瘤切除或交通事故后修复下巴骨缺损。如今,在施加这些材料时,越来越多的生物医学相关感染发生率提高了担忧。在这项工作中,提出了一种具有抗菌涂层的新的多孔帽支架。将该仿真支架与小檗碱(BBR),Ag纳米颗粒(NAG)和丝素蛋白(SF)进行了组合。分析了支架的微结构和相组成。在体外评价制备样品的细胞偶联和成骨潜力。支架持有等级结构:第一级多孔帽陶瓷,微米孔的毛细管范围为250至600 mu m;具有丰富的毛细血管毛孔的二级海绵状结构,范围为500nm至10 mu m;通过将BBR,NAG和SF凝胶涂层填充到上述多孔结构中实现了第三级结构。实验结果表明,单一BBR涂层的抗微生物能力不成心。然而,NAG的引入可以显着促进支架的抗菌作用。同时,这种支架显示出改善的骨诱导性。这种新的仿生帽支架具有抗菌和骨诱导性能可能是骨组织工程的有希望的候选者。

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