Deng Zhennan, Han Hongjuan, Yang Jingyuan, Li Yuanyuan, Du Shengnan, Ma Jianfeng
School and Hospital of Stomatology, Wenzhou Medical University, Wenzhou, Zhejiang, China (mainland).
Oral Department, Sichuan Academy of Medical Sciences and Sichuan Provincial People's Hospital, Chengdu, Sichuan, China (mainland).
Med Sci Monit. 2017 May 24;23:2479-2487. doi: 10.12659/msm.903768.
BACKGROUND Ideal bone repair material should be of good biocompatibility and high bioactivity. Besides, their mechanical properties should be equivalent to those of natural bone. The objective of this study was to fabricate a novel biocomposite suitable for load-bearing bone defect repair. MATERIAL AND METHODS A novel biocomposite composed of carbon fiber, hydroxyapatite and polyamide46 (CF/HA/PA46) was fabricated, and its mechanical performances and preliminary cell responses were evaluated to explore its feasibility for load-bearing bone defect repair. RESULTS The resultant CF/HA/PA46 biocomposite showed a bending strength of 159-223 MPa, a tensile strength of 127-199 MPa and a tensile modulus of 7.7-10.8 GPa, when the CF content was 5-20% (mass fraction) in biocomposite. The MG63 cells, showing an osteogenic phenotype, were well adhered and spread on the surface of the CF/HA/PA46 biocomposite. Moreover, the cells vitality and differentiation on the CF/HA/PA46 biocomposite surface were obviously increased during the culture time and there was no significant difference between the CF/HA/PA46 biocomposite and HA/PA (as control) at all the experimental time (P>0.05). CONCLUSIONS The addition of CF into HA/PA46 composite manifest improved the mechanical performances and showed favorable effects on biocompatibility of MG63 cells. The obtained biocomposite has high potential for bone repair in load-bearing sites.
背景 理想的骨修复材料应具有良好的生物相容性和高生物活性。此外,其力学性能应与天然骨相当。本研究的目的是制备一种适用于承重骨缺损修复的新型生物复合材料。
材料与方法 制备了一种由碳纤维、羟基磷灰石和聚酰胺46(CF/HA/PA46)组成的新型生物复合材料,并对其力学性能和初步细胞反应进行了评估,以探讨其用于承重骨缺损修复的可行性。
结果 当生物复合材料中CF含量为5-20%(质量分数)时,所得CF/HA/PA46生物复合材料的弯曲强度为159-223MPa,拉伸强度为127-199MPa,拉伸模量为7.7-10.8GPa。表现出成骨表型的MG63细胞在CF/HA/PA46生物复合材料表面良好粘附并铺展。此外,在培养期间,CF/HA/PA46生物复合材料表面的细胞活力和分化明显增加,并且在所有实验时间点,CF/HA/PA46生物复合材料与HA/PA(作为对照)之间无显著差异(P>0.05)。
结论 在HA/PA46复合材料中添加CF可提高力学性能,并对MG63细胞的生物相容性显示出良好效果。所获得的生物复合材料在承重部位的骨修复方面具有很高的潜力。