Cao Liehu, Weng Weizong, Chen Xiao, Zhang Jun, Zhou Qirong, Cui Jin, Zhao Yuechao, Shin Jung-Woog, Su Jiacan
Department of Orthopaedics Trauma, Changhai Hospital, Second Military Medical University, Shanghai, People's Republic of China.
Department of Biomedical Engineering, Inje University, Gimhae, Republic of Korea.
Int J Nanomedicine. 2017 Feb 17;12:1341-1352. doi: 10.2147/IJN.S124965. eCollection 2017.
Nanoporous lithium doping magnesium silicate (nl-MS) was introduced into calcium sulfate hemihydrate to prepare calcium sulfate composite (nl-MSC) bone cements. The introduction of nl-MS improved the in vitro degradability of nl-MSC cements, which could neutralize acidic degradable products of calcium sulfate and prevented the pH from dropping. The cements were implanted into the bone defects of femur bone of rabbits, and the results of histological and immunohistochemical analysis revealed that massive new bone tissue formed in the defects while the cements were degradable, indicating that the osteogenesis and degradability of the nl-MSC cements were much better than the control calcium sulfate dihydrate (CSD) cements. Furthermore, the positive expression of vascular endothelial growth factor and collagen type I for nl-MSC cements was higher than CSD, indicating that addition of nl-MS into the cements enhanced vascularization and osteogenic differentiation. The results suggested that the nl-MSC cements with good biocompatibility and degradability could promote vascularization and osteogenesis, and had great potential to treat bone defects.
将纳米多孔锂掺杂硅酸镁(nl-MS)引入半水硫酸钙中,制备硫酸钙复合材料(nl-MSC)骨水泥。nl-MS的引入改善了nl-MSC骨水泥的体外降解性,其可以中和硫酸钙的酸性降解产物并防止pH值下降。将该骨水泥植入兔股骨骨缺损处,组织学和免疫组织化学分析结果显示,在骨水泥可降解的同时,缺损处形成了大量新骨组织,表明nl-MSC骨水泥的成骨能力和降解性远优于对照的二水硫酸钙(CSD)骨水泥。此外,nl-MSC骨水泥中血管内皮生长因子和I型胶原的阳性表达高于CSD,表明在骨水泥中添加nl-MS可增强血管生成和成骨分化。结果表明,具有良好生物相容性和降解性的nl-MSC骨水泥可促进血管生成和成骨,在治疗骨缺损方面具有巨大潜力。