Synthesis of strontium substituted hydroxyapatite by solution combustion route

Journal of the Indian Chemical Society - Tập 98 - Trang 100191 - 2021
M. Samuel Collin1, Akansha Sharma2, Arnabes Bhattacharya3, S. Sasikumar1
1Department of Chemistry, School of Advanced Sciences, Vellore Institute of Technology, Vellore, 632014, Tamil Nadu, India
2Department of Chemistry, Oklahoma State University, Stillwater, United States
3Ekalavya Model Residential School, Nagrakata, Jalpaiguri, 735225, West Bengal, India

Tài liệu tham khảo

Bose, 2003, Synthesis of hydroxyapatite nanopowders via sucrose templated sol–gel method, J. Am. Ceram. Soc., 86, 1055, 10.1111/j.1151-2916.2003.tb03423.x Rawal, 2008, Composition of the bioapatite nanocrystal surface in compact bone, NMR investigations of biological and synthetic phosphate-based nanocomposites, 1001, 64 Robinson, 2017, The deposition of strontium and zinc Co-substituted hydroxyapatite coatings, J. Mater. Sci. Mater. Med., 28, 51, 10.1007/s10856-017-5846-2 Ullah, 2019, Synthesis and characterization of sintered Sr/Fe-modified hydroxyapatite bioceramics for bone tissue engineering applications, ACS Biomater. Sci. Eng., 6, 375, 10.1021/acsbiomaterials.9b01666 Loo, 2010, Biomedical applications of hydroxyapatite nanoparticles, Curr. Pharmaceut. Biotechnol., 11, 333, 10.2174/138920110791233343 Oguchi, 1995, Long-term histological evaluation of hydroxyapatite ceramics in humans, Biomaterials, 16, 33, 10.1016/0142-9612(95)91093-E Sinha, 1995, Synthesis, characterization and fabrication of hydroxyapatite ceramics, J. Indian Chem. Soc., 72, 771 Yuan, 1999, A preliminary study on osteoinduction of two kinds of calcium phosphate ceramics, Biomaterials, 20, 1799, 10.1016/S0142-9612(99)00075-7 Tung, 1999, Dental applications of amorphous calcium phosphates, The J Clin Exp Dent, 10 Elliott, 2013 Kay, 1964, Crystal structure of hydroxyapatite, Nature, 204, 1050, 10.1038/2041050a0 Vurat, 2018, Osteogenic composite nanocoating based on nanohydroxyapatite, strontium ranelate and polycaprolactone for titanium implants, Trans. Nonferrous Metals Soc. China, 28, 1763, 10.1016/S1003-6326(18)64820-4 Sanosh, 2009, Preparation and characterization of nano-hydroxyapatite powder using sol-gel technique, Bull. Mater. Sci., 32, 465, 10.1007/s12034-009-0069-x Faria, 2010, Histological analysis of surgically injured rabbit mandibles treated topically with strontium chloride, RGO. Revista Gaúcha de Odontologia (Online), 58, 487 Marie, 2001, Mechanisms of action and therapeutic potential of strontium in bone, Calcif. Tissue Int., 69, 3, 10.1007/s002230010055 Oste, 2007, Strontium incorporates at sites critical for bone mineralization in rats with renal failure, X Ray Spectrom.: Int. J., 36, 42, 10.1002/xrs.929 Collin, 2021, Effect of fuel on biomineralization of merwinite, Mater. Lett., 304, 10.1016/j.matlet.2021.130660 Nayak, 2010, Hydroxyapatite synthesis methodologies: an overview, Int. J. Chem. Res., 2, 903 Murugan, 2006, Production of ultra-fine bioresorbable carbonated hydroxyapatite, Acta Biomater., 2, 201, 10.1016/j.actbio.2005.09.005 Gan, 2010, Biomimetic synthesis of calcium-strontium apatite hollow nanospheres, Sci. China Chem., 53, 1723, 10.1007/s11426-010-3171-4 Ishikawa, 2020, Sol–gel synthesis of calcium phosphate-based biomaterials—A review of environmentally benign, simple, and effective synthesis routes, J. Sol. Gel Sci. Technol., 94, 551, 10.1007/s10971-020-05245-8 Anee, 2003, A novel technique to synthesize hydroxyapatite at low temperature, Mater. Chem. Phys., 80, 725, 10.1016/S0254-0584(03)00116-0 Garskaite, 2014, Effect of processing conditions on the crystallinity and structure of carbonated calcium hydroxyapatite (CHAp), CrystEngComm, 16, 3950, 10.1039/c4ce00119b Liu, 2001, Water-based sol–gel synthesis of hydroxyapatite: process development, Biomaterials, 22, 1721, 10.1016/S0142-9612(00)00332-X Zhong, 2004, Crystal surface structure and its growth units of anionic coordination polyhedra, J. Synth. Cryst. no., 4, 471 Xu, 2018, Controlled hydrothermal synthesis of strontium-substituted hydroxyapatite nanorods and their application as a drug carrier for proteins, Adv. Powder Technol., 29, 1042, 10.1016/j.apt.2018.01.008 Sasikumar, 2013, Effect of particle size of calcium phosphate based bioceramic drug delivery carrier on the release kinetics of ciprofloxacin hydrochloride: An in vitro study, Front. Mater. Sci., 7, 261, 10.1007/s11706-013-0216-6 Liu, 2001, Water-based sol–gel synthesis of hydroxyapatite: process development, Biomaterials, 22, 1721, 10.1016/S0142-9612(00)00332-X Han, 2004, Synthesis and sintering of nanocrystalline hydroxyapatite powders by citric acid sol–gel combustion method, Mater. Res. Bull., 39, 25, 10.1016/j.materresbull.2003.09.022