Pulsed electrodeposition for the synthesis of strontium-substituted calcium phosphate coatings with improved dissolution properties
Calcium Phosphates
Time Factors
Spectrometry, X-Ray Emission
Phosphorus
Hydrogen Peroxide
02 engineering and technology
Electroplating
Coated Materials, Biocompatible
Electricity
X-Ray Diffraction
Strontium
Microscopy, Electron, Scanning
Calcium
0210 nano-technology
DOI:
10.1016/j.msec.2013.06.019
Publication Date:
2013-06-26T13:48:24Z
AUTHORS (2)
ABSTRACT
Strontium-substituted calcium phosphate coatings are synthesized by pulsed electrodeposition on titanium alloy (Ti6Al4V) substrates. Experimental conditions of the process are optimized in order to obtain a coating with a 5% atomic substitution of calcium by strontium which corresponds to the best observations on the osteoblast cells activity and on the osteoclast cells proliferation. The physical and chemical characterizations of the obtained coating are carried out by scanning electron microscopy associated to energy dispersive X-ray spectroscopy (EDXS) for X-ray microanalysis and the structural characterization of the coating is carried out by X-ray diffraction. The in vitro dissolution/precipitation properties of the coated substrates are investigated by immersion into Dulbecco's Modified Eagle Medium (DMEM) from 1h to 14 days. The calcium, phosphorus and strontium concentrations variations in the biological liquid are assessed by Induced Coupled Plasma - Atomic Emission Spectroscopy for each immersion time. The results show that under specific experimental conditions, the electrodeposition process is suitable to synthesize strontium-substituted calcium phosphate coatings. Moreover, the addition of hydrogen peroxide (H2O2) into the electrolytic solution used in the process allows us to observe a control of the strontium release during the immersion of the prosthetic materials into DMEM.
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