Jie Wei, Hua Hong, Lan Wu, Yi He, Yubao Li
Institute of biomaterials, East China University of Science and Technology, Shanghai, PR China.
J Mater Sci Mater Med. 2007 Mar;18(3):529-33. doi: 10.1007/s10856-007-2014-0.
Bioactive biomaterials can form a bone-like apatite layer on their surfaces in the body, which is critical to establishing bone bonding between bioactive materials and living tissue. At present study, the bone-like apatite formation in vitro and vivo on the surface of the nano apatite/polyamide composite was studied, and the bioactive composites implanted into the femora of rabbits were also investigated. The results revealed that the bone-like apatite containing carbonate can form on the surface of the biocomposite both in SBF and dorsal muscle of rabbits, and the composite would form directly combination with the natural bone without fibrous capsule tissue between implant and host bone tissue. All of these indicated that the nano biocomposites have excellent bioactivity and can be used for bone replacement.
生物活性生物材料在体内其表面可形成类骨磷灰石层,这对于在生物活性材料与活组织之间建立骨结合至关重要。在当前研究中,对纳米磷灰石/聚酰胺复合材料表面在体外和体内的类骨磷灰石形成进行了研究,并且还对植入兔股骨的生物活性复合材料进行了研究。结果表明,含碳酸盐的类骨磷灰石可在模拟体液(SBF)和兔背部肌肉中的生物复合材料表面形成,并且该复合材料可与天然骨直接形成结合,在植入物与宿主骨组织之间无纤维囊组织。所有这些表明纳米生物复合材料具有优异的生物活性,可用于骨替代。