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首页> 外文期刊>RSC Advances >Zein regulating apatite mineralization, degradability, in vitro cells responses and in vivo osteogenesis of 3D-printed scaffold of n-MS/ZN/PCL ternary composite
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Zein regulating apatite mineralization, degradability, in vitro cells responses and in vivo osteogenesis of 3D-printed scaffold of n-MS/ZN/PCL ternary composite

机译:ZEIN调节磷灰石矿化,可降解性,体外细胞应答以及N-MS / Zn / PCL三元复合材料的3D印刷支架的体内骨质发生

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摘要

Bioactive and degradable scaffolds of nano magnesium silicate (n-MS)/zein (ZN)/poly(caprolactone) (PCL) ternary composites were prepared by 3D-printing method. The results showed that the 3D-printed scaffolds possessed controllable pore structure, and pore morphology, pore size, porosity and pore interconnectivity of the scaffolds can be efficiently adjusted. In addition, the apatite-mineralization ability of the scaffolds in simulated body fluids was obviously improved with the increase of ZN content, in which the scaffold with 20 w% ZN (C20) possessed excellent apatite-mineralization ability. Moreover, the degradability of the scaffolds was significantly enhanced with the increase of ZN content in the scaffolds. The degradation of ZN produced acidic products that could neutralize the alkaline products from the degradation of n-MS, which avoid the increase of pH value in degradable solution. Furthermore, the MC3T3-E1 cells responses (e.g. proliferation and differentiation, etc.) to the scaffolds were significantly promoted with the increase of ZN content. The in vivo osteogenesis of the scaffolds implanted the femur defects of rabbits was investigated by micro-CT and histological analysis. The results demonstrated that the new bone formation was significantly enhanced with the increase of ZN content, in which the C20 scaffold induced the highest new bone tissues, indicating excellent osteogenesis. The results suggested that the ZN in the ternary composite scaffolds played key roles in assisting bone regeneration in vivo.
机译:通过3D印刷方法制备纳米硅酸镁(N-MS)/ Zein(Zn)/聚(己内酯)(PCL)三元复合材料的生物活性和可降解支架。结果表明,可以有效地调节支架的3D印刷支架具有可控的孔结构,孔径,孔径,孔隙率和孔隙互连性。此外,随着Zn含量的增加,模拟体液中的支架在模拟体液中的磷灰石矿化能力明显改善,其中具有20W%Zn(C20)的支架具有优异的磷酸盐矿化能力。此外,随着支架中的Zn含量的增加,支架的可降解性显着增强。 Zn的降解产生的酸性产物可以从N-MS的降解中和碱性产品中和,这避免了可降解溶液中pH值的增加。此外,随着Zn含量的增加,显着促进了MC3T3-E1细胞应对支架的(例如增殖和分化等)。通过微型CT和组织学分析研究了支架的体内成骨植入兔的股骨缺陷。结果表明,随着Zn含量的增加,新的骨形成显着增强,其中C20支架诱导了最高的新骨组织,表明优异的骨质发生。结果表明,三元复合支架中的Zn在体内辅助骨再生中发挥了关键作用。

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  • 来源
    《RSC Advances》 |2018年第34期|共12页
  • 作者单位

    Yangzhou Univ Affiliated Hosp Dept Orthopaed Yangzhou 225009 Jiangsu Peoples R China;

    Second Mil Med Univ Changhai Hosp Dept Orthopaed Shanghai 200433 Peoples R China;

    Second Mil Med Univ Changhai Hosp Dept Orthopaed Shanghai 200433 Peoples R China;

    East China Univ Sci &

    Technol Minist Educ Key Lab Ultrafine Mat Shanghai 200237 Peoples R China;

    East China Univ Sci &

    Technol Minist Educ Key Lab Ultrafine Mat Shanghai 200237 Peoples R China;

    East China Univ Sci &

    Technol Minist Educ Key Lab Ultrafine Mat Shanghai 200237 Peoples R China;

    Shanghai Eastern Hepatobiliary Surg Hosp Dept Oncol Shanghai 200438 Peoples R China;

    Second Mil Med Univ Changhai Hosp Dept Orthopaed Shanghai 200433 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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