• Title of article

    Fabrication and Characterization of Covalently Functionalized poly Caprolactone Scaffold for Bone Tissue Engineering Application

  • Author/Authors

    Sadeghzade ، Negar - University of Guilan , Nouri ، Mahdi - University of Guilan , Shams Nateri ، Ali - University of Guilan , Soleimani ، Masoud - Tarbiat Modares University

  • Pages
    13
  • From page
    101
  • To page
    113
  • Abstract
    Background: Healing bone involves osteoconductive and osteoinductive components as well as a scaffold with adequate porosity to allow good cell infiltration.Materials and Methods: Herein, cytocompatibility and osteogenic induction potential of polycaprolactone (PCL) nanofibrous electrospun scaffold with different electron microscopy, MTT assay, DAPI and alizarin porosities (35%90%) and chemical bonding was assessed through scanning red S staining, calcium content and alkaline phosphatase assay. Moreover, the relative expression of three important osteogenicrelated genes Col I, RUNX 2 and osteocalcin was studied.Results: Covalent bonding played a more significant osteogenic role in scaffolds in scaffolds with lower porosity, namely H35cov. Although low porosity limits cell infiltration, substrate with lower porosities were easier to handle. On the other hand, substrates with higher porosity showed higher levels of cell proliferation, mineralization as well as osteogenic differentiation.Conclusion: Results indicated that PCL scaffold with higher porosity degree up to 90%, covalently functionalized by collagen, and hydroxyapatite nanoparticles was a good candidate for bone tissue engineering applications.
  • Keywords
    Fibrous scaffold , Osteogenic differentiation , Mesenchymal stem cells , Bone tissue engineering
  • Journal title
    Novelty in biomedicine
  • Serial Year
    2019
  • Journal title
    Novelty in biomedicine
  • Record number

    2460928