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Marei, Yasser El Kamary, Rania M.

Tanner, Materials & Surface Science Institute, Department of Design & Manufacturing Technology, University of Limerick, Ireland, and others)

Polymer Matrix Mediated Synthesis of Nano Hydroxyapatite Crystals
(Junjie Li, Yuxi Liu, Fanglian Yao, Department of Polymer Science and Key Laboratory of Systems Bioengineering of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin, China, and others)

Mild Wet Synthesis of Hydroxyapatite Nanoparticles and Architecture of Hierachical Structure at Micro- and Nano-Scale
(Yanjie Zhang, Jinjun Lu, State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, P.R.

 / ; Ignjatović, N.; Petranović, N.

Moussa, Polymers and Composites, Materials Science and Manufacturing, Council for Scientific and Industrial Research, Pretoria, South Africa, and others)

The Dissolution Mechanism of Calcium Apatites in Acids
(Sergey V.

KW - Hydroxyapatite-collagen composite

T1 - Synthesis and characterization of hydroxyapatite-collagen biocomposite materials

It has all the characteristic features of biomaterials, such as, biocompatible, bioactive, osteoconductive, non-toxic, non-inflammatory and non-immunogenic properties.

Topics discussed include nanodimensional and nanocrystalline hydroxyapatite and other calcium orthophosphates; application of biomimetic nanocrystalline apatites in drug delivery and tissue engineering; polymer matrix mediated synthesis of nano hydroxyapatite crystals; osteointegration of titanium porous implants with carbon nanocoating and hydroxyapatite particles into the pores; hydroxyapatite thin film prepared by sputtering technique for medical applications; and hydroxyapatite application in dentistry and maxillofacial surgery.

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Dorozhkin, Moscow, Russia)

Synthesis, Properties and Applications of Hydroxyapatite
(Shou-Cang Shen, Wai Kiong Ng, Leonard Chia, Yuan-Cai Dong, Reginald Beng Hee Tan, Institute of Chemical and Engineering Sciences, A*STAR (Agency for Science, Technology and Research), Jurong Island, Singapore, and others)

Applications of Biomimetic Nanocrystalline Apatites in Drug Delivery and Tissue Engineering
(Michele Iafisco, Simone Sprio, Teresa D’Alessandro, Anna Tampieri, Istituto di Scienza e Tecnologia dei Materiali Ceramici (ISTEC), Consiglio Nazionale delle Ricerche (CNR), Faenza (RA), Italy)

Morphology Control of Hydroxyapatite Crystal and its Aggregates
(Wei Xia, Kaili Lin, Zhongru Gou, Håkan Engqvist, Applied Material Sciences, Department of Engineering Sciences, Uppsala University, Sweden, and others)

Hydroxyapatite Sol-Gel Coatings
(H.C.

Vasconcelos, Department of Technological Sciences and Development, Azores University, Portugal, and others)

Hydrothermally-Synthesized Mg-Substituted Hydroxyapatite Composite Powders (Mg-HAP) and Surface Coatings (Mg-HACs) on AZ91D Magnesium Alloy
(Chung-Wei Yang, Department of Materials Science and Engineering, National Formosa University, Huwei, Yunlin, Taiwan)

Hydroxyapatite Thin Film Prepared by Sputtering Technique for Medical Applications
(Kazuhide Ozeki, Department of Mechanical Engineering, Ibaraki University, Nakanarusawa, Hitachi, Ibaraki, Japan)

Hydroxyapatite Formation on Metallurgical Grade Porous Silicon Nanosponge Particles
(E.G.

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Hydroxyapatite - Synthesis of Hydroxyapatite Powders

Chaklin Ural Scientific & Research Institute of Traumatology and Orthopaedics, Ekateriburg, Russia, and others)

Hydroxyapatite Application in Dentistry and Maxillofacial Surgery
(Matheus Piardy Claudy, Sergio Augusto Quevedo Miguens Jr., Vania Fontanella, Undergraduate Programme, Dental School, Lutheran University, Canoas, RS, Brazil, and others)

Index

The methods used to produce hydroxyapatite are outlined

Hydroxyapatite-collagen composite is a prosperous biomaterial in reconstructive surgery for the reparation of defects in human hard tissue. Within this research, three-dimensional blocks of HAp/collagen composite biomaterial were synthesized by homogenizing a HAp/collagen mixture and its subsequent cold and hot (T=60°C) pressing (P=49 MPa). The changes in the system were registered by thermal analysis (DSC & TGA), FT-IR spectroscopy, and scanning electron microscopy (SEM). Identification and the kinetic analysis of phase transitions were made. FT-IR spectrum of the biocomposite shows that neither cold nor hot pressing had significant influence on the individual components of the composite. SEM of the fracture surfaces showed that more intimate contact between the phases took place during the hot consolidation. The obtained results suggest destruction of the native but not of the primary structure of collagen molecules. Such a slight modification of collagen molecules can possibly lead to the elimination of antigenicity effects after implantation of this kind of biomaterial into a human body.

Synthesis Method of Hydroxyapatite | Sintering | Nature

N2 - Hydroxyapatite-collagen composite is a prosperous biomaterial in reconstructive surgery for the reparation of defects in human hard tissue. Within this research, three-dimensional blocks of HAp/collagen composite biomaterial were synthesized by homogenizing a HAp/collagen mixture and its subsequent cold and hot (T=60°C) pressing (P=49 MPa). The changes in the system were registered by thermal analysis (DSC & TGA), FT-IR spectroscopy, and scanning electron microscopy (SEM). Identification and the kinetic analysis of phase transitions were made. FT-IR spectrum of the biocomposite shows that neither cold nor hot pressing had significant influence on the individual components of the composite. SEM of the fracture surfaces showed that more intimate contact between the phases took place during the hot consolidation. The obtained results suggest destruction of the native but not of the primary structure of collagen molecules. Such a slight modification of collagen molecules can possibly lead to the elimination of antigenicity effects after implantation of this kind of biomaterial into a human body.

Chemical synthesis of hydroxyapatite

AB - Hydroxyapatite-collagen composite is a prosperous biomaterial in reconstructive surgery for the reparation of defects in human hard tissue. Within this research, three-dimensional blocks of HAp/collagen composite biomaterial were synthesized by homogenizing a HAp/collagen mixture and its subsequent cold and hot (T=60°C) pressing (P=49 MPa). The changes in the system were registered by thermal analysis (DSC & TGA), FT-IR spectroscopy, and scanning electron microscopy (SEM). Identification and the kinetic analysis of phase transitions were made. FT-IR spectrum of the biocomposite shows that neither cold nor hot pressing had significant influence on the individual components of the composite. SEM of the fracture surfaces showed that more intimate contact between the phases took place during the hot consolidation. The obtained results suggest destruction of the native but not of the primary structure of collagen molecules. Such a slight modification of collagen molecules can possibly lead to the elimination of antigenicity effects after implantation of this kind of biomaterial into a human body.

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