New Coll-HA/BT composite materials for hard tissue engineering

Mater Sci Eng C Mater Biol Appl. 2016 May:62:795-805. doi: 10.1016/j.msec.2016.02.041. Epub 2016 Feb 15.

Abstract

The integration of ceramic powders in composite materials for bone scaffolds can improve the osseointegration process. This work was aimed to the synthesis and characterization of new collagen-hydroxyapatite/barium titanate (Coll-HA/BT) composite materials starting from barium titanate (BT) nanopowder, hydroxyapatite (HA) nanopowder and collagen (Coll) gel. BT nanopowder was produced by combining two wet-chemical approaches, sol-gel and hydrothermal methods. The resulting materials were characterized in terms of phase composition and microstructure by X-ray diffraction, Raman spectroscopy, scanning electron microscopy and transmission electron microscopy. Moreover, the biocompatibility and bioactivity of the composite materials were assessed by in vitro tests. The synthesized BT particles exhibit an average size of around 35 nm and a spherical morphology, with a pseudo-cubic or tetragonal symmetry. The diffraction spectra of Coll-HA and Coll-HA/BT composite materials indicate a pronounced interaction between Col and the mineral phases, meaning a good mineralization of Col fibres. As well, the in vitro tests highlight excellent osteoinductive properties for all biological samples, especially for Coll-HA/BT composite materials, fact that can be attributed to the ferromagnetic properties of BT.

Keywords: Biomaterials; Collagen mineralization; Composite materials; Hard tissue scaffolds; Wet-chemical synthesis.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Alkaline Phosphatase / genetics
  • Alkaline Phosphatase / metabolism
  • Amnion / cytology
  • Amnion / metabolism
  • Barium Compounds / chemistry*
  • Biocompatible Materials / chemistry
  • Biocompatible Materials / pharmacology
  • Bone Morphogenetic Protein 1 / genetics
  • Bone Morphogenetic Protein 1 / metabolism
  • Cell Survival / drug effects
  • Cells, Cultured
  • Collagen / chemistry*
  • Collagen Type I / genetics
  • Collagen Type I / metabolism
  • Durapatite / chemistry*
  • Humans
  • Hydroxyapatites / chemistry*
  • Microscopy, Electron, Scanning
  • Microscopy, Electron, Transmission
  • Microscopy, Fluorescence
  • Nanostructures / chemistry
  • Osteopontin / genetics
  • Osteopontin / metabolism
  • Real-Time Polymerase Chain Reaction
  • Spectrum Analysis, Raman
  • Tissue Engineering*
  • Water / chemistry
  • X-Ray Diffraction

Substances

  • Barium Compounds
  • Biocompatible Materials
  • Collagen Type I
  • Hydroxyapatites
  • Water
  • Osteopontin
  • barium hydroxyapatite
  • Collagen
  • Durapatite
  • Alkaline Phosphatase
  • BMP1 protein, human
  • Bone Morphogenetic Protein 1