...
首页> 外文期刊>Biomaterials >Relationship between osseointegration and superelastic biomechanics in porous NiTi scaffolds.
【24h】

Relationship between osseointegration and superelastic biomechanics in porous NiTi scaffolds.

机译:多孔NiTi支架中骨整合与超弹性生物力学之间的关系。

获取原文
获取原文并翻译 | 示例
           

摘要

The superelastic nature of bones requires matching biomechanical properties from the ideal artificial biomedical implants in order to provide smooth load transfer and foster the growth of new bone tissues. In this work, we determine the biomechanical characteristics of porous NiTi implants and investigate bone ingrowth under actual load-bearing conditions in vivo. In this systematic and comparative study, porous NiTi, porous Ti, dense NiTi, and dense Ti are implanted into 5 mm diameter holes in the distal part of the femur/tibia of rabbits for 15 weeks. The bone ingrowth and interfacial bonding strength are evaluated by histological analysis and push-out test. The porous NiTi materials bond very well to newly formed bone tissues and the highest average strength of 357 N and best ductility are achieved from the porous NiTi materials. The bonding curve obtained from the NiTi scaffold shows similar superelasticity as natural bones with a deflection of 0.30-0.85 mm thus shielding new bone tissues from large load stress. This is believed to be the reason why new bone tissues can penetrate deeply into the porous NiTi scaffold compared to the one made of porous Ti. Histological analysis reveals that new bone tissues adhere and grow well on the external surfaces as well as exposed areas on the inner pores of the NiTi scaffold. The in vitro study indicates that the surface chemical composition and topography of the porous structure leads to good cytocompatibility. Consequently, osteoblasts proliferate smoothly on the entire implant including the flat surface, embossed region, exposed area of the pores, and interconnected channels. In conjunction with the good cytocompatibility, the superelastic biomechanical properties of the porous NiTi scaffold bodes well for fast formation and ingrowth of new bones, and porous NiTi scaffolds are thus suitable for clinical applications under load-bearing conditions.
机译:骨骼的超弹性本质要求与理想的人工生物医学植入物相匹配的生物力学特性,以提供平稳的载荷传递并促进新的骨组织的生长。在这项工作中,我们确定了多孔NiTi植入物的生物力学特征,并研究了体内实际承重条件下的骨向内生长。在这项系统的对比研究中,将多孔镍钛,多孔钛,致密镍钛和致密钛植入兔股骨/胫骨远端5 mm直径的孔中15周。通过组织学分析和推出试验评估骨的向内生长和界面结合强度。多孔镍钛材料与新形成的骨组织结合得很好,并且多孔镍钛材料具有357 N的最高平均强度和最佳延展性。从NiTi支架获得的结合曲线显示出与天然骨骼相似的超弹性,挠度为0.30-0.85 mm,因此可以保护新的骨骼组织免于承受较大的负荷应力。认为这是与由多孔钛制成的组织相比,新的骨组织可以深入渗透到多孔NiTi支架中的原因。组织学分析表明,新的骨组织在NiTi支架的外表面以及内孔的裸露区域粘附并良好生长。体外研究表明,多孔结构的表面化学组成和形貌导致良好的细胞相容性。因此,成骨细胞在包括平坦表面,压纹区域,孔的暴露区域和互连通道的整个植入物上平滑地增殖。结合良好的细胞相容性,多孔NiTi支架的超弹性生物力学特性预示着其快速形成和向新骨生长,因此多孔NiTi支架适合在承重条件下用于临床。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号