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Titanium and tantalum as mesenchymal stem cell scaffolds for spinal fusion: an in vitro comparative study

Introduction In the last few years, great interest has been focused on tissue engineering as a potential therapeutic approach for musculoskeletal diseases. The role of metallic implants for spinal fusion has been tested in preclinical and clinical settings. Titanium and tantalum have excellent bioco...

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Published in:European spine journal 2011-08, Vol.20 (Suppl 3), p.353-360
Main Authors: Blanco, Juan F., Sánchez-Guijo, Fermin M., Carrancio, Soraya, Muntion, Sandra, García-Briñon, Jesus, del Cañizo, Maria-Consuelo
Format: Article
Language:English
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Summary:Introduction In the last few years, great interest has been focused on tissue engineering as a potential therapeutic approach for musculoskeletal diseases. The role of metallic implants for spinal fusion has been tested in preclinical and clinical settings. Titanium and tantalum have excellent biocompatibility and mechanical properties and are being used in this situation. On the other hand, the therapeutic role of mesenchymal stem cells (MSC) is extensively explored for their multilineage differentiation into osteoblasts. Objetives In vitro comparision of titanium and tantalum as MSCs scaffolds. Material and methods In the present study, we have compared the in vitro expansion capacity, viability, immunophenotype (both explored by flow cytometry) and multi-differentiation ability of MSC cultured in the presence of either titanium or tantalum fragments. The adherence of MSC to either metal was demonstrated by electron microscopy. Results Both metals were able to carry MSC when transferred to new culture flasks. In addition, our study shows that culture of MSC with titanium or tantalum improves cell viability and maintains all their biological properties, with no significant differences regarding the metal employed. Conclusion This would support the use of these combinations for clinical purposes, especially in the spinal fusion and reconstruction setting.
ISSN:0940-6719
1432-0932
DOI:10.1007/s00586-011-1901-8