首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Magnesium phosphate based cement with improved setting, strength and cytocompatibility properties by adding Ca(H2PO4)(2)center dot H2O and citric acid
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Magnesium phosphate based cement with improved setting, strength and cytocompatibility properties by adding Ca(H2PO4)(2)center dot H2O and citric acid

机译:通过添加Ca(H2PO4)(2)中心点H2O和柠檬酸,基于磷酸镁水泥,具有改善的设定,强度和细胞粘合性特性

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摘要

Inorganic phosphate cements have become prevalent as bone filling materials in clinical applications, owing to beneficial properties such as self-setting, biodegradability and osteoconductivity. However, the further development of phosphate cements with higher strength and improved cytocompatibility is expected. In this paper, we reported the preparation of a novel magnesium phosphate based cement (MPBC), which has similar compositions with magnesium phosphate cement (MPC) but Ca(H2PO4)(2)center dot H(2)Oand citric acid were additionally added to modulate the performance. The physicochemical and biological properties of MPBC were investigated, the influences of the added Ca(H2PO4)(2)center dot H2O and citric acid on the performances of MPBC were analyzed, and the differences of performance between MPBC and MPC were discussed. Experimental results show that the setting time and compressive strength of MPBC were effectively enhanced by the addition of citric acid. In vitro biological degradation indicates that about 15 wt% of MPBC was reduced in 4 weeks. Compared with MPC, MPBC has weaker alkalinity and less dissolution of phosphate, leading to better suitability for cell proliferation and adhesion. These results suggest that as a bone filling material, MPBC shows better performance than MPC in many key indicators and has promising application prospects.
机译:无机磷酸盐水泥在临床应用中作为骨填充材料普遍存在,由于诸如自定义,生物降解性和骨导电性等有益性质。然而,预期具有更高强度和改善的细胞相容性的磷酸盐水泥的进一步发展。在本文中,我们报道了制备新型磷酸镁的水泥(MPBC),其具有与磷酸镁水泥(MPC)相似的组合物,但另外加入Ca(H2PO4)(2)中心点H(2)Oand柠檬酸调制性能。研究了MPBC的物理化学和生物学特性,分析了添加的Ca(H2PO4)(2)中心点H2O和柠檬酸对MPBC性能的影响,讨论了MPBC与MPC之间的性能差异。实验结果表明,通过加入柠檬酸有效地增强了MPBC的设定时间和抗压强度。体外生物降解表明,在4周内减少了约15wt%的MPBC。与MPC相比,MPBC具有较弱的碱性和磷酸盐溶解较少,导致细胞增殖和粘附性更好地适合。这些结果表明,作为骨骼填充材料,MPBC在许多关键指标中显示比MPC更好的性能,并且具有前景的前景。

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