A new iron calcium phosphate material to improve the osteoconductive properties of a biodegradable ceramic: a study in rabbit calvaria

作者:Manchon Angel*; Hamdan Alkhraisat Mohammad; Rueda Rodriguez Carmen; Carlos Prados Frutos Juan; Torres Jesus; Lucas Aparicio Julia; Ewald Andrea; Gbureck Uwe; Lopez Cabarcos Enrique
来源:Biomedical Materials (Bristol), 2015, 10(5): 055012.
DOI:10.1088/1748-6041/10/5/055012

摘要

beta-tricalcium phosphate (beta-TCP) is an osteoconductive and biodegradable material used in bone regeneration procedures, while iron has been suggested as a tool to improve the biological performance of calcium phosphate-based materials. However, the mechanisms of interaction between these materials and human cells are not fully understood. In order to clarify this relationship, we have studied the iron role in beta-TCP ceramics. Iron-containing beta-TCPs were prepared by replacing CaCO3 with C6H5FeO7 at different molar ratios. X-ray diffraction analysis indicated the occurrence of beta-TCP as the sole phase in the pure beta-TCP and iron-containing ceramics. The incorporation of iron ions in the beta-TCP lattice decreased the specific surface area as the pore size was shifted toward meso-and/or macropores. Furthermore, the human osteoblastlike cell line MG-63 was cultured onto the ceramics to determine cell proliferation and viability, and it was observed that the iron-beta-TCP ceramics have better cytocompatibility than pure beta-TCP. Finally, in vivo assays were performed using rabbit calvaria as a bone model. The scaffolds were implanted for 8 and 12 weeks in the defects created in the skullcap with pure beta-TCP as the control. The in vivo behavior, in terms of new bone formed, degradation, and residual graft material were investigated using sequential histological evaluations and histomorphometric analysis. The in vivo implantation of the ceramics showed enhanced bone tissue formation and scaffold degradation for iron-beta-TCPs. Thus, iron appears to be a useful tool to enhance the osteoconductive properties of calcium phosphate ceramics.

  • 出版日期2015-9