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The Influence of Surface Morphology of Dense Ca-P Ceramics on Apatite Formation in Dynamic SBF

The Influence of Surface Morphology of Dense Ca-P Ceramics on Apatite Formation in Dynamic SBF
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摘要 This study aimed at exploring the effect of surface morphology of dense phosphate calcium (Ca-P) ceramics upon the formation of bone-like apatite in static or dynamic simulated body fluid (SBF). Dense and sandblasted calcium phosphate ceramics were immersed into dynamic SBF flowing at normal physiological speed of body fluid of skeletal muscle.The changes were characterized using SEM, XPS, IR and XRD. Changes can be observed after the sandblasted surface of dense calcium phosphate ceramics had been immersed in SBF for 14 days. XPS analysis results showed that the flake-like structure was composed of Ca, P, C, O; IR analysis result of surface structure of samples showed that there were specific peaks for CO 2- <sub>3; XRD results indicated the decrease in crystallinity and the increase in amorphous structure. The rough surface was advantageous for the formation of bone-like apatite. Increasing the Ca 2+ , HPO 2- <sub>4 concentration of SBF could also enhance the bone-like apatite formation. All the results demonstrated that local concentration is a key factor affecting nucleation. This study aimed at exploring the effect of surface morphology of dense phosphate calcimn (Ca-P) ceramics upon the formation of bone-like apatite in static or dynamic simulated body fluid (SBF). Dense and sandblasted calcium phosphate ceramics were immersed into dynamic SBF flowing at normal physiological speed of body fluid of skeletal muscle. The changes were characterized using SEM, XPS, IR and XRD. Changes can be observed after the sandblasted surface of dense calcium phosphate ceramics had been immersed in SBF for 14 days. XPS analysis results showed that the flake-like structure was composed of Ca, P, C, O; IR analysis result of surface structure of samples showed that there were specific peaks for CO3^2-; XRD results indicated the decrease in crystallinity and the increase in amorphous structure. The rough surface was advantageous for the formation of bone-like apatite. Increasing the Ca^2+, HPO4^2- concentration of SBF could also enhance the bonelike apatite formation. All the results demonstrated that local concentration is a key factor affecting nucleation.
出处 《Journal of Donghua University(English Edition)》 EI CAS 2005年第4期63-66,共4页 东华大学学报(英文版)
基金 ThisworkissupportedbytheShanghaiNaturalScienceFoundation(No.04zr14008)
关键词 致密磷酸钙陶瓷 表面形态 喷沙 磷灰石构造 SBF Dense calcium phosphate ceramics, sandblasted surface, dynamic SBF , bone-like a patite
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  • 1Duan Yourong,Wang Chaoyuan,Cheng Jiyong,Zhang Xingdong.Bone-like apatite formation in intramuscularly implanted calcium phosphate ceramics in different kinds of animals[J].Journal of Materials Science Letters.2002(10)

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