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磷酸二氢钙对用于骨再生的生物活性磷酸镁骨水泥性能的影响。

Influence of Monocalcium Phosphate on the Properties of Bioactive Magnesium Phosphate Bone Cement for Bone Regeneration.

作者信息

Lv Shaochun, Qu Tianyu, Al-Ward Hisham, Mu Liting, Qiu Hongbin, Zhang Yunlong

机构信息

Key Laboratory of Microecology-Immune Regulatory Network and Related Diseases, School of Basic Medicine, Jiamusi University, Jiamusi 154007, China.

Department of Chemical Engineering & Material Science, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

出版信息

Materials (Basel). 2022 Mar 20;15(6):2293. doi: 10.3390/ma15062293.

Abstract

Bone defects occurring for various reasons can lead to deformities and dysfunctions of the human body. Considering the need for clinical applications, it is essential for bone regeneration to exploit a scaffold with bioactive bone cement. In this study, we fabricated bioactive magnesium phosphate bone cement (BMPC) at room temperature; then, it was set at to °C and 100% humidity for 2 h. The process was as follows: Simulating a clinical environment, magnesium oxide (MgO) was formed by calcining basic magnesium carbonate (Mg(OH)CO). MgO, potassium dihydrogen phosphate (KHPO) and carboxymethyl chitosan (CHNO, CMC) were mixed to form magnesium phosphate bone cement (MPC); then, monocalcium phosphate (Ca(HPO)) was added to neutralize the alkaline product after MPC hydration to fabricate bioactive magnesium phosphate bone cement (BMPC). The influence of the doped content of Ca(HPO) on the properties of bone cement was discussed. The results showed that Ca(HPO) and CMC can adjust the setting time of bone cement to between 8 and 25 min. The compressive strength increased first and then decreased. After 48 h without additional pressure, the compressive strength reached the maximum value, which was about 38.6 MPa. Ca(HPO) and CMC can play a synergistic role in regulating the properties of BMPC. The BMPC was degradable in the simulated body fluid (SBF). The results of the cytotoxicity experiment and laser confocal microscopy experiment indicated that BMPC fabricated at room temperature had better biocompatibility and degradability, which was more consistent with clinical operation requirements. BMPC is a promising orthopedic material and is suitable for repairing bone defects.

摘要

各种原因导致的骨缺损会引起人体畸形和功能障碍。考虑到临床应用的需求,利用具有生物活性的骨水泥支架进行骨再生至关重要。在本研究中,我们在室温下制备了生物活性磷酸镁骨水泥(BMPC);然后,将其在37°C和100%湿度下放置2小时。过程如下:模拟临床环境,通过煅烧碱式碳酸镁(Mg(OH)CO)生成氧化镁(MgO)。将MgO、磷酸二氢钾(KH₂PO₄)和羧甲基壳聚糖(C₆H₁₁NO₅,CMC)混合形成磷酸镁骨水泥(MPC);然后,添加磷酸二氢钙(Ca(H₂PO₄)₂)以中和MPC水化后的碱性产物,制备生物活性磷酸镁骨水泥(BMPC)。讨论了Ca(H₂PO₄)₂掺杂量对骨水泥性能的影响。结果表明,Ca(H₂PO₄)₂和CMC可将骨水泥的凝固时间调节至8至25分钟之间。抗压强度先增加后降低。在无额外压力的情况下48小时后,抗压强度达到最大值,约为38.6MPa。Ca(H₂PO₄)₂和CMC在调节BMPC性能方面可发挥协同作用。BMPC在模拟体液(SBF)中可降解。细胞毒性实验和激光共聚焦显微镜实验结果表明,室温制备的BMPC具有更好的生物相容性和降解性,更符合临床操作要求。BMPC是一种有前景的骨科材料,适用于修复骨缺损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab48/8953577/fc57a213ffac/materials-15-02293-g001.jpg

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