Vahabzadeh Sahar, Bandyopadhyay Amit, Bose Susmita, Mandal Rakesh, Nandi Samit Kumar
W. M. Keck Biomedical Materials Research Laboratory, Department of Chemistry, School of Mechanical and Materials Engineering, Washington State University, Pullman, WA 99164-2920, USA.
Integr Biol (Camb). 2015 Dec;7(12):1561-73. doi: 10.1039/c5ib00114e. Epub 2015 Nov 4.
Dopants play critical roles in controlling the physical, mechanical, degradation kinetics, and in vivo properties of calcium phosphates. The aim of the present study was to evaluate the effects of silicon (Si) and zinc (Zn) dopants on the physico-mechanical and in vivo osteogenesis properties of brushite cements (BrCs) alone and in combination with insulin like growth factor 1 (IGF-1). Addition of 0.5 wt% Si did not alter the setting time, β-TCP content, and compressive strength of BrCs significantly; however, 0.25 wt% Zn incorporation was accompanied by a significant decrease in mechanical strength from 4.78 ± 0.21 MPa for pure BrC to 3.78 ± 0.59 MPa and 3.28 ± 0.22 MPa for Zn-BrC and Si/Zn-BrC, respectively. The in vivo bone regeneration properties of doped BrCs alone and in combination with IGF-1 were assessed and compared using chronological radiography, histology, scanning electron microscopy and fluorochrome labeling at 2 and 4 months post implantation in a rabbit femoral defect model. Based on in vivo characterization focusing on osteogenesis and vasculogenesis, Si-BrC and Si/Zn-BrC showed the best performance followed by Zn-BrC and pure BrCs. Addition of IGF-1 further improved bone regeneration. Our findings confirm that addition of Si and/or Zn alters the physico-mechanical properties of BrCs and promotes the early stage in vivo osseointegration and bone remodeling properties.
掺杂剂在控制磷酸钙的物理、机械、降解动力学及体内性质方面发挥着关键作用。本研究的目的是评估硅(Si)和锌(Zn)掺杂剂对透钙磷石水泥(BrCs)单独以及与胰岛素样生长因子1(IGF-1)联合使用时的物理机械性能和体内成骨性能的影响。添加0.5 wt%的Si对BrCs的凝结时间、β-TCP含量和抗压强度没有显著改变;然而,掺入0.25 wt%的Zn会导致机械强度显著下降,纯BrC的机械强度为4.78±0.21 MPa,而Zn-BrC和Si/Zn-BrC的机械强度分别降至3.78±0.59 MPa和3.28±0.22 MPa。在兔股骨缺损模型中植入后2个月和4个月,使用时序放射摄影、组织学、扫描电子显微镜和荧光染料标记法评估并比较了单独掺杂BrCs以及与IGF-1联合使用时的体内骨再生性能。基于聚焦于成骨和血管生成的体内表征,Si-BrC和Si/Zn-BrC表现最佳,其次是Zn-BrC和纯BrCs。添加IGF-1进一步改善了骨再生。我们的研究结果证实,添加Si和/或Zn会改变BrCs 的物理机械性能,并促进早期体内骨整合和骨重塑性能。