Porous biomorphic silicon carbide ceramics coated with hydroxyapatite as prospective materials for bone implants

被引:62
作者
Gryshkov, Oleksandr [1 ]
Klyui, Nickolai I. [2 ,3 ]
Temchenko, Volodymyr P. [3 ]
Kyselov, Vitalii S. [3 ]
Chatterjee, Anamika [1 ]
Belyaev, Alexander E. [3 ]
Lauterboeck, Lothar [1 ]
Iarmolenko, Dmytro [3 ]
Glasmacher, Birgit [1 ]
机构
[1] Leibniz Univ Hannover, Inst Multiphase Proc, Callinstr 36, D-30167 Hannover, Germany
[2] Jilin Univ, Coll Phys, Changchun 130012, Peoples R China
[3] Natl Acad Sci Ukraine, V Lashkaryov Inst Semicond Phys, UA-03028 Kiev, Ukraine
来源
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS | 2016年 / 68卷
关键词
Gas detonation deposition; Ceramic coating; Biomorphic SiC ceramics; Cytocompatibility; Porosity; Hydroxyapatite; Morphology; Bone implant; Structure; Phase composition; GAS-DETONATION DEPOSITION; THERMAL-STABILITY; TI; STRENGTH; BEHAVIOR; ALLOYS; GLASS;
D O I
10.1016/j.msec.2016.05.113
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Porous and cytocompatible silicon carbide (SiC) ceramics derived from wood precursors and coated with bioactive hydroxyapatite (HA) and HA-zirconium dioxide (HA/ZrO2) composite are materials with promising application in engineering of bone implants due to their excellent mechanical and structural properties. Biomorphic SiC ceramics have been synthesized from wood (Hornbeam, Sapele, Tilia and Pear) using a forced impregnation method. The SiC ceramics have been coated with bioactive HA and HA/ZrO2 using effective gas detonation deposition approach (GDD). The surface morphology and cytotoxicity of SiC ceramics as well as phase composition and crystallinity of deposited coatings were analyzed. It has been shown that the porosity and pore size of SiC ceramics depend on initial wood source. The XRD and FOR studies revealed the preservation of crystal structure and phase composition of in the HA coating, while addition of ZrO2 to the initial HA powder resulted in significant decomposition of the final HA/ZrO2 coating and formation of other calcium phosphate phases. In turn, NIH 3T3 cells cultured in medium exposed to coated and uncoated SiC ceramics showed high re-cultivation efficiency as well as metabolic activity. The recultivation efficiency of cells was the highest for HA-coated ceramics, whereas HA/ZrO2 coating improved the recultivation efficiency of cells as compared to uncoated SiC ceramics. The GDD method allowed generating homogeneous HA coatings with no change in calcium to phosphorus ratio. In summary, porous and cytocompatible bio-SiC ceramics with bioactive coatings show a great promise in construction of light, robust, inexpensive and patient-specific bone implants for clinical application. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:143 / 152
页数:10
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