Patterned surfaces of marine-derived carbon scaffolds were subjected to a biomimetic approach to be covered with a calcium phosphate thin film. The process was based on Dulbecco’s phosphate-buffered saline solution and investigated in different periods of immersion (from hours to days). A complete physicochemical characterization was performed to demonstrate the optimal calcium/phosphorus ratio, thickness and adherence to the substrate of these biomimetic calcium phosphate coatings, which still retained the naturally derived patterning. A chemical mechanism to explain the coating formation has been proposed and documented, based mainly on the presence of carboxylic groups on the C-scaffold surface, what promoted the anchorage of calcium ions at the first stage and the later binding of phosphate groups to calcium ions. The biological response of MC3T3-E1 preosteoblasts on the calcium phosphate–coated scaffolds was investigated to demonstrate the non-cytotoxicity, adequate morphology and spreading of cells after 7 d of culture, being this proliferation aligned, promoted by the patterning of the scaffold.
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June 2014
Research Article|
June 01 2014
Biomineralization of marine-patterned C-scaffolds
Cosme Rodríguez-Valencia;
Cosme Rodríguez-Valencia
*
PhD student, New Materials Group, Applied Physics Department, School of Industrial Engineering, Campus Lagoas-Marcosende, Institute of Biomedical Research of Vigo, University of Vigo, Vigo, Spain
*Corresponding author e-mail address: cosme@uvigo.es
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Miriam López-Álvarez;
Miriam López-Álvarez
Doctor, New Materials Group, Applied Physics Department, School of Industrial Engineering, Campus Lagoas-Marcosende, Institute of Biomedical Research of Vigo, University of Vigo, Vigo, Spain
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Stefan Stefanov;
Stefan Stefanov
PhD student, New Materials Group, Applied Physics Department, School of Industrial Engineering, Campus Lagoas-Marcosende, Institute of Biomedical Research of Vigo, University of Vigo, Vigo, Spain
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Stefano Chiussi;
Stefano Chiussi
Doctor, New Materials Group, Applied Physics Department, School of Industrial Engineering, Campus Lagoas-Marcosende, Institute of Biomedical Research of Vigo, University of Vigo, Vigo, Spain
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Julia Serra;
Julia Serra
Doctor, New Materials Group, Applied Physics Department, School of Industrial Engineering, Campus Lagoas-Marcosende, Institute of Biomedical Research of Vigo, University of Vigo, Vigo, Spain
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Pío González
Pío González
Professor, New Materials Group, Applied Physics Department, School of Industrial Engineering, Campus Lagoas-Marcosende, Institute of Biomedical Research of Vigo, University of Vigo, Vigo, Spain
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*Corresponding author e-mail address: cosme@uvigo.es
Publisher: Emerald Publishing
Received:
November 25 2013
Accepted:
February 11 2014
Online ISSN: 2045-9866
Print ISSN: 2045-9858
ICE Publishing: All rights reserved
2014
Bioinspired, Biomimetic and Nanobiomaterials (2014) 3 (2): 106–114.
Article history
Received:
November 25 2013
Accepted:
February 11 2014
Citation
Rodríguez-Valencia C, López-Álvarez M, Stefanov S, Chiussi S, Serra J, González P (2014), "Biomineralization of marine-patterned C-scaffolds". Bioinspired, Biomimetic and Nanobiomaterials, Vol. 3 No. 2 pp. 106–114, doi: https://doi.org/10.1680/bbn.13.00029
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