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A novel composite scaffold of Cu-doped nano calcium-deficient hydroxyapatite/multi-(amino acid) copolymer for bone tissue regeneration

机译:一种新型的铜掺杂纳米缺钙羟基磷灰石/多氨基酸复合材料骨支架再生支架

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Background and methods: A Cu-doped composite scaffold of nano calcium-deficient hydroxyapatite (n-CDHA)/multi(amino acid) copolymer (MAC) was prepared. The structure, porosity, morphology and compressive strength of the scaffolds were characterized, the in vitro degradability in phosphate-buffered solution (PBS) and cell responses to the scaffolds were investigated, and in vivo stimulation of bone formation were analyzed. Results: The scaffolds showed the compressive strength of approximately 12 MPa and total porosity of about 81%. Weight loss of the composite scaffolds was 63% after 16-week immersion in PBS. Cu release in scaffolds showed a marked dependence on the initial amount in the scaffolds over time. Cu-doped n-CDHA/MAC scaffolds with the content of Cu 0.5% and 1% in mass ratio showed better cell responses to proliferation and differentiation of rat bone marrow stromal cells (rBMSCs) than that with no Cu. After 12-week implantation in rabbits, 1% Cu-doped n-CDHA/MAC showed better ability of angiogenesis and osteogenesis compared to 0% Cu-doped n-CDHA/MAC. Conclusion: The 1% Cu-doped n-CDHA/MAC composite scaffold showed good capacity of angiogenesis and osteogenesis, and the Cu showed positive effects on cell growth and osteogenesis. And it has potential to be used as bone regeneration scaffolds.
机译:背景与方法:制备了一种铜掺杂的缺钙纳米羟基磷灰石(n-CDHA)/多氨基酸共聚物(MAC)复合支架。表征了支架的结构,孔隙率,形态和抗压强度,研究了磷酸盐缓冲溶液(PBS)的体外降解性和对支架的细胞反应,并分析了体内对骨形成的刺激。结果:脚手架的抗压强度约为12 MPa,总孔隙率约为81%。在PBS中浸泡16周后,复合支架的重量损失为63%。随着时间的推移,支架中的铜释放显示出对支架中初始量的显着依赖性。 Cu含量为0.5%和1%的Cu掺杂n-CDHA / MAC支架比不含Cu的大鼠对骨髓基质细胞(rBMSCs)的增殖和分化具有更好的细胞反应。在兔体内植入12周后,与0%的Cu掺杂n-CDHA / MAC相比,1%的Cu掺杂n-CDHA / MAC显示出更好的血管生成和成骨能力。结论:1%的Cu掺杂n-CDHA / MAC复合支架显示出良好的血管生成和成骨能力,并且Cu对细胞生长和成骨具有积极作用。它具有用作骨再生支架的潜力。

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