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首页> 外文期刊>Applied Surface Science >In vitro and in vivo studies of three dimensional porous composites of biphasic calcium phosphate/poly ε-caprolactone: Effect of bio-functionalization for bone tissue engineering
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In vitro and in vivo studies of three dimensional porous composites of biphasic calcium phosphate/poly ε-caprolactone: Effect of bio-functionalization for bone tissue engineering

机译:双相磷酸钙/聚ε-己内酯的三维多孔复合材料的体外和体内研究:生物功能化对骨组织工程的影响

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摘要

Biphasic calcium phosphate (BCP) and poly e-caprolactone (PCL) each have many applications as tissue repair materials. In this study, a three dimensional (3D) PCL infiltrated BCP scaffold was prepared. This composite was further modified and bio-functionalized for bone tissue engineering by subsequent amination and immobilization technique using silicon (Si) and fibronectin (FN) on the surfaces (BCP/PCL+Si and BCP/PCL+Si + FN). In this study, such 3D porous scaffolds were evaluated for bone formation applicability. In vitro studies by immunocytochemistry showed cell morphology and adherence on these scaffolds. Interconnected networks like appearance of tubulin and vinculin expression were notably higher in BCP/PCL+Si and BCP/PCL+Si + FN scaffold surfaces than BCP/PCL surfaces. The scaffolds were also investigated detailed and quantitatively using micro-CT tomography for the repair of bone defects (4 mm diameter) in rats. Micro-CT tomography showed the BCP/PCL+Si + FN scaffolds were almost replaced by newly grown bone within 12 weeks after surgery, suggesting that they have an especially strong capacity for osteogenesis, mineralization, and biodegradation for bone replacement.
机译:磷酸二钙(BCP)和聚己内酯(PCL)各自都有许多应用作为组织修复材料。在这项研究中,准备了三维(3D)PCL渗透BCP支架。通过随后的胺化和固定化技术,在表面(BCP / PCL + Si和BCP / PCL + Si + FN)上使用硅(Si)和纤连蛋白(FN),对该复合材料进行了进一步的改性和生物功能化,以用于骨组织工程。在这项研究中,评估了此类3D多孔支架的骨形成适用性。免疫细胞化学的体外研究显示了这些支架的细胞形态和粘附性。 BCP / PCL + Si和BCP / PCL + Si + FN支架表面中的相互连接的网络(如微管蛋白外观和维克林蛋白表达)明显高于BCP / PCL表面。还使用Micro-CT断层扫描技术对支架进行了详细和定量的研究,以修复大鼠的骨缺损(直径4 mm)。 Micro-CT断层扫描显示BCP / PCL + Si + FN支架在手术后12周内几乎被新生长的骨骼所取代,这表明它们具有特别强的成骨,矿化和生物降解能力来替代骨骼。

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  • 来源
    《Applied Surface Science》 |2014年第15期|307-314|共8页
  • 作者单位

    Department of Immunology, School of Medicine, Soonchunhyang University, Cheonan, Chungnum 330-090, South Korea;

    Department of Immunology, School of Medicine, Soonchunhyang University, Cheonan, Chungnum 330-090, South Korea;

    Department of Immunology, School of Medicine, Soonchunhyang University, Cheonan, Chungnum 330-090, South Korea;

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

    BCP; PCL; Immunocytochemistry; μ-CT tomography;

    机译:BCP;PCL;免疫细胞化学;μ-CT断层扫描;

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