Literature DB >> 17049373

Response of human endothelial cells to oxidative stress on Ti6Al4V alloy.

Roman Tsaryk1, Marie Kalbacova, Ute Hempel, Dieter Scharnweber, Ronald E Unger, Peter Dieter, C James Kirkpatrick, Kirsten Peters.   

Abstract

Titanium and its alloys are amongst the most frequently used materials in bone and dental implantology. The good biocompatibility of titanium(-alloys) is attributed to the formation of a titanium oxide layer on the implant surface. However, implant failures do occur and this appears to be due to titanium corrosion. Thus, cells participating in the wound healing processes around an implanted material, among them endothelial cells, might be subjected to reactive oxygen species (ROS) formed by electrochemical processes during titanium corrosion. Therefore, we studied the response of endothelial cells grown on Ti6Al4V alloy to H(2)O(2) and compared this with the response of endothelial cells grown on cell culture polystyrene (PS). We could show that although the cell number was the same on both surfaces, metabolic activity of endothelial cells grown on Ti6Al4V alloy was reduced compared to the cells on PS and further decreased following prototypic oxidative stress (H(2)O(2)-treatment). The analysis of H(2)O(2)-induced oxidative stress showed a higher ROS formation in endothelial cells on Ti6Al4V than on PS. This correlated with the depletion of reduced glutathione (GSH) in endothelial cells grown on Ti6Al4V surfaces and indicated permanent oxidative stress. Thus, endothelial cells in direct contact with Ti6Al4V showed signs of oxidative stress and higher impairment of cell vitality after an additional oxidative stress. However, the exact nature of the agent of oxidative stress generated from Ti6Al4V remains unclear and requires further investigation.

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Year:  2006        PMID: 17049373     DOI: 10.1016/j.biomaterials.2006.09.033

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  20 in total

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6.  Surface Roughness of Titanium Orthopedic Implants Alters the Biological Phenotype of Human Mesenchymal Stromal Cells.

Authors:  Eric A Lewallen; William H Trousdale; Roman Thaler; Jie J Yao; Wei Xu; Janet M Denbeigh; Asha Nair; Jean-Pierre Kocher; Amel Dudakovic; Daniel J Berry; Robert C Cohen; Matthew P Abdel; David G Lewallen; Andre J van Wijnen
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7.  Improved in vitro angiogenic behavior on anodized titanium dioxide nanotubes.

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8.  Comparative Analysis of the Oxygen Supply and Viability of Human Osteoblasts in Three-Dimensional Titanium Scaffolds Produced by Laser-Beam or Electron-Beam Melting.

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9.  In vitro behaviour of endothelial cells on a titanium surface.

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Review 10.  The role of angiogenesis in implant dentistry part I: Review of titanium alloys, surface characteristics and treatments.

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