4.6 Article

Degradation and in vitro cell-material interaction studies on hydroxyapatitecoated biodegradable porous iron for hard tissue scaffolds

Journal

JOURNAL OF ORTHOPAEDIC TRANSLATION
Volume 2, Issue 4, Pages 177-184

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jot.2014.07.001

Keywords

Biodegradable metal; Bone scaffold; Fibroblast; Mesenchymal; Porous iron

Categories

Funding

  1. Malaysian Minister of Education [R.J130000.7836.4F123]
  2. Universiti Teknologi Malaysia [R.J130000.7836.4F123]

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This paper describes degradation and cell-material interaction studies on hydroxyapatite (HA)-coated biodegradable porous iron proposed for hard tissue scaffolds. Porous iron scaffolds are expected to serve as an ideal platform for bone regeneration. To couple their inherent mechanical strength, pure HA and HA/poly(e-caprolactone) (HA/PCL) were coated onto porous iron using dip coating technique. The HA/PCL mixture was prepared to provide a more stable and flexible coating than HA alone. Degradation of the samples was evaluated by weight loss and potentiodynamic polarisation. Human skin fibroblast (HSF) and human mesenchymal stem cells (hMSC) were put in contact with the samples and their interaction was observed. Results showed that coated samples degraded similar to 10 times slower (0.002 mm/year for HA/PCL-Fe, 0.003 mm/year for HA-Fe) than the uncoated ones (0.031 mm/year), indicating an inhibition effect of the coating on degradation. Both HSF and hMSC maintained high viability when in contact with the coated samples (100-110% control for hMSC during 2-5 days of incubation), indicating the effect of HA in enhancing cytocompatibility of the surface. This study provided early evidence of the potential translation of biodegradable porous iron scaffolds for clinical use in orthopedic surgery. However, further studies including in vitro and in vivo tests are necessary. Copyright (C) 2014, The Authors. Published by Elsevier (Singapore) Pte Ltd. This is an open access article under the CC BY-NC-ND license

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