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J Biomed Mater Res B Appl Biomater ; 109(10): 1426-1435, 2021 10.
Article in English | MEDLINE | ID: mdl-33484103

ABSTRACT

Autologous bone grafting remains the gold standard for almost all bone void-filling orthopedic surgery. However, autologous bone grafting has several limitations, thus scientists are trying to identify an ideal synthetic material as an alternative bone graft substitute. Magnesium-doped biphasic calcium phosphate (Mg-BCP) has recently been in the spotlight and is considered to be a potential bone substitute. The Mg-BCP is a mixture of two bioceramics, that is, hydroxyapatite (HA) and ß-tricalcium phosphate (ß-TCP), doped with Mg2+ , and can be synthesized through chemical wet-precipitation, sol-gel, single diffusion gel, and solid state reactions. Regardless of the synthesis routes, it is found that the Mg2+ preferentially accommodates in ß-TCP lattice instead of the HA lattice. The addition of Mg2+ to BCP leads to desirable physicochemical properties and is found to enhance the apatite-forming ability as compared to pristine BCP. In vitro results suggest that the Mg-BCP is bioactive and not toxic to cells. Implantation of Mg-BCP in in vivo models further affirmed its biocompatibility and efficacy as a bone substitute. However, like the other bioceramics, the optimum physicochemical properties of the Mg-BCP scaffold have yet to be determined. Further investigations are required regarding Mg-BCP applications in bone tissue engineering.


Subject(s)
Biocompatible Materials/chemistry , Bone Substitutes/chemistry , Hydroxyapatites/chemistry , Magnesium/chemistry , Animals , Apatites/chemistry , Bone Regeneration , Bone and Bones/chemistry , Cations, Divalent/chemistry , Cell Adhesion , Cell Proliferation , Humans , Macrophages/cytology , Mesenchymal Stem Cells/cytology , Rats, Wistar , Skull/cytology
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