Affiliation:
1. Universidad Autónoma de Coahuila
Abstract
Carbonate hydroxyapatite is the common derivative of hydroxyapatite found in living systems. It is the building block of most hard tissues, including the teeth and bones. A vast majority of the applications of this versatile material focus on its biomedical applications, which is attributable to its closeness to biological apatites. Hydroxyapatite is a strong precursor to carbonate apatite in nature, and many experiments show that both are similar in a few respects. A significant divergence point is carbonate's obvious impact on its physicochemical properties and concomitant applications. The inclusion of carbonate ions into the lattice of hydroxyapatite results in morphological and physicochemical changes that vary with the method of synthesis and extent of substitution. The unique crystal structure, improved surface area, and porous morphology of carbonate hydroxyapatites also make it useful for catalysis and environmental remediation as adsorbents for heavy metals. This review briefly examines carbonate hydroxyapatite, its synthesis, its modification, and its characterization. It also highlights its biomedical applications while drawing attention to its non-medical potential.
Publisher
Trans Tech Publications, Ltd.
Reference197 articles.
1. J. Cohen, Biomaterials in orthopedic surgery, Am. J. Surg. 114 (1967) pp.31-41.
2. Biomaterials and biocompatibility: An historical overview;Marin;Journal of Biomedical Materials Research Part A,2020
3. Carbonate substitution in precipitated hydroxyapatite: An investigation into the effects of reaction temperature and bicarbonate ion concentration;Barralet;Journal of Biomedical Materials Research
4. M.E. Fleet, Carbonated Hydroxyapatite, Boca Raton, Florida, Jenny Stanford Publishing, 2014.
5. L.L. Hench, The story of Bioglass, J. Mater. Sci. Mater. Med. 17 (2006) pp.967-978.