Hydroxyapatite Nano-Particles Extracted from Miscellaneous Bestial Resources: Study of Crystal Structure and Microstructure
Subject Areas : Bio MaterialsSeyed Mehdi Rafiaei 1 , Mohammad Khodaei 2 , Fateme Eslami 3
1 - Department of Materials Science and Engineering, Golpayegan College of Engineering, Isfahan University of Technology, Golpayegan 87717-67498, Iran
2 - Department of Materials Science and Engineering, Golpayegan College of Engineering, Isfahan University of Technology, Golpayegan 87717-67498, Iran
3 - Department of Materials Science and Engineering, Golpayegan College of Engineering, Isfahan University of Technology, Golpayegan 87717-67498, Iran
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Abstract :
[1] A. Märten, P. Fratzl, O. Paris, P. Zaslansky, On the mineral in collagen of human crown dentine, Biomaterials 31 (2010) 5479-90.
[2] M. Itokazu, W. Yang, T. Aoki, A. Ohara, N. Kato, Synthesis of antibiotic-loaded interporous hydroxyapatite blocks by vacuum method and in vitro drug release testing, Biomaterials 19 (1998) 817-819.
[3] Q. Lv, L. Nair, C.T. Laurencin, Fabrication, characterization, and in vitro evaluation of poly(lactic acid glycolic acid)/nano-hydroxyapatite composite microsphere-based scaffolds for bone tissue engineering in rotating bioreactors, Journal of Biomedical Materials Research 91 (2009) 679-691.
[4] A. Alyahya, G. R. J. Swennen, Bone grafting in orthognathic surgery: a systematic review, International Journal of Oral and Maxillofacial Surgery 48 (2019) 322-331.
[5] T. Mokabber, Q. Zhou, A. I. Vakis, P. van Rijn, Y. T. Pei, Mechanical and biological properties of electrodeposited calcium phosphate coatings, Materials Science and Engineering: C 100 (2019) 475-484.
[6] M. Sadat-Shojai, M. T. Khorasani, E. Dinpanah-Khoshdargi, A. Jamshidi, Synthesis methods for nanosized hydroxyapatite with diverse structures, Acta Biomaterialia 9 (2013) 7591-7621.
[7] T. M. Coelho, E. S. Nogueira, A. Steimacher, A. N. Medina, W. R. Weinand, W. M. Lima, M. L. Baesso, and A. C. Bento, Characterization of natural nanostructured hydroxyapatite obtained from the bones of Brazilian river fish, Journal of Applied Physics 100 (2006) 094312-1 094312-6.
[8] A. Ruksudjarit, K. Pengpat, G. Rujijanagul, T. Tunkasiri, Synthesis and characterization of nanocrystalline hydroxyapatite from natural bovine bone, Current Appllied Physics 8 (2008) 270-272.
[9] M. Boutinguiza, J. Pou, R. Comesaña, F. Lusquiños, A. de Carlos, B. León, Biological hydroxyapatite obtained from fish bones Materials Science and Engineering: C 32 (2012) 478-486.
[10] G. Gergely, F. Wéber, I. Lukács, A. L. Tóth, Z. E.Horváth, J. Mihály, C. Balázsi, Preparation and characterization of hydroxyapatite from eggshell, Ceramics International 36 (2010) 803-806.
[11] R. Nicula, F. Luthen, M. Stir, B. Nebe, E. Burkel, Spark plasma sintering synthesis of porous nanocrystalline titanium alloys for biomedical applications, Biomolecular Engineering 24 (2007) 564-567.
[12] S. Jinawath, D.Pongkao, M. Yoshimura, Hydrothermal synthesis of hydroxyapatite from natural bone, Journal of Materials Science 13 (2002) 491-494.
[13] M. E. Bahrololooma, M. Javidia, S. Javadpoura, Characterisation of natural hydroxyapatite extracted from bovine cortical bone ash”, Journal of Ceramic Processing Research 10 (2009) 129 -138.
[14]C.Y. Ooi, M. Hamdi, S. Ramesh, Properties of hydroxyapatite produced by annealing of bovine bone, Ceramics International 33 (2007) 1171-1177.
[15] A. Monshi, M. Foroughi, M. Monshi, Modified Scherrer Equation to Estimate More Accurately Nano- Crystallite Size Using XRD, Scientific Research 2 (2012) 154-160.
[16] S.M. Rafiaei, Synthesis of YVO4:Eu3+ nanophosphors through the use of urea and aniline fuels and study of their microstructures and optical properties, Transactions of the Indian Institute of Metals, 70 (2017), No. 6, 1543–1547.
[17] S.M. Rafiaei, A. Bahrami, The effects of boric acid on crystal structure, nano/microstructure and photoluminescence characteristics of rare earth doped Y2O3/YBO3 composite compounds, Journal of Nanostructure in Chemistry, 7 (2017), 367-373.
[18] S.I. Roohani-Esfahani, S. Nouri-Khorasani, Z. Lu, R. Appleyard, H. Zreiqat, The influence hydroxyapatite nanoparticle shape and size on the properties of biphasic calcium phosphate scaffolds coated with hydroxyapatite-PCL composites, Biomaterials. 2010 (21) 5498-509.
[19] L. Lutterotti, Total pattern fitting for the combined, size-strain-stress-texture determination in thin film diffraction, Nuclear Inst. and Methods in Physics Research, B 268 (2010) 334-340.
[20] L. Lutterotti, M. Bortolotti, G. Ischia, I. Lonardelli and H.-R. Wenk, Rietveld texture analysis from diffraction images", Z. Kristallogr., Suppl. 26 (2007) 125-130.
[21] L. Lutterotti, D. Chateigner, S. Ferrari and J. Ricote, Texture, Residual Stress and Structural Analysis of Thin Films using a Combined X-Ray Analysis, Thin Solid Films, 450 (2004) 34-41.
[22] S.V. Dorozhkin, Nanosized and nanocrystalline calcium orthophosphates, Acta Biomaterialia 6 (2010) 715-734.
[23] J. Reyes-Gasga, E.L. Martínez-Piñeiro, G. Rodríguez Álvarez, G.E. Tiznado-Orozco, R. García-García, E.F. Brès, XRD and FTIR crystallinity indices in sound human tooth enamel and synthetic hydroxyapatite, Materials Science and Engineering C 33 (2013) 4568–4574.
[24] M. Du, J. Chen, K. Liu, H. Xing, C. Song, Recent advances in biomedical engineering of nano-hydroxyapatite including dentistry, cancer treatment and bone repair, Composites Part B: Engineering 215 (2021) 108790.
[25] L. A. Hasan, Evaluation the properties of orthodontic adhesive incorporated with nano-hydroxyapatite particles, The Saudi Dental Journal, in press (2021), DOI: https://doi.org/10.1016/j.sdentj.2021.01.001.
[26] M. Fahami, M. Abdellahi, Estimation of the Mean Grain Size of Mechanically Induced Hydroxyapatite Based Bioceramics via Artificial Neural Network, Journal of Advanced Materials and Processing 5(2) (2017) 52-60.
[27] A. Ruksudjarit, K. Pengpat, G. Rujijanagul, T.Tunkasiri, Synthesis and characterization of nanocrystalline hydroxyapatite from natural bovine bone, Current Applied Physics 8 (3-4) (2008) 270-272.