详细信息
Nano-apatite/polymer biocomposite for tissue engineering ( EI收录)
文献类型:期刊文献
中文题名:Nano-apatite/Polymer Biocomposite for Tissue Engineering
英文题名:Nano-apatite/polymer biocomposite for tissue engineering
作者:Wei, Jie; Liu, Changsheng; Wu, Lan; He, Yi; Li, Yubao
机构:[1] Institute of Biomaterials, East China University of Science and Technology, Shanghai 200237, China; [2] Analytical and Testing Center, Sichuan University, Chengdu 610064, China
年份:2005
卷号:20
期号:B12
起止页码:126
中文期刊名:Journal of Wuhan University of Technology(Materials Science)
外文期刊名:Journal Wuhan University of Technology, Materials Science Edition
收录:CSTPCD;;EI(收录号:2006199869092);Scopus
基金:Fundedbythe"863"HitechResearchFoundationofChina(2002AADF3201)
语种:英文
中文关键词:biocomposite ; nano apatite ; tissue engineering; scaffold material
摘要:A new kind of tissue engineering scaffold materials of nano-apatite ( NA ) and polyamide6 ( PA6 ) biocomposite was prepared by means of the co-solution method. The NA crystals uniforndy distribute in the composite with a size of 10-30 nm in diameter by 50-90 nm in length. The NA/ PA6 composite has good homogeneity and high NA content, and excellent mechanical properties close to those of natural bone. The porous 3-D scaffold has not only macropores, but also micropores on the walls of macropores with porosity of about 80% and the size of pore diameter of about 300μm made by injection foam. The biocomposite can be used for bone repair and as scaffolds in tissue engineering.
A new kind of tissue engineering scaffold materials of nano-apatite(NA) and polyamide6 (PA6) biocomposite was prepared by means of the co-solution method. The NA crystals uniformly distribute in the composite with a size of 10-30 nm in diameter by 50-90 nm in length. The NA/PA6 composite has good homogeneity and high NA content, and excellent mechanical properties close to those of natural bone. The porous 3-D scaffold has not only macropores, but also micropores on the walls of macropores with porosity of about 80% and the size of pore diameter of about 300 μm made by injection foam. The biocomposite can be used for bone repair and as scaffolds in tissue engineering.
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